metalstech targets high grade gold zone - asx...2020/04/21  · the routine fire assay (50g charge)...

43
MetalsTech Targets High Grade Gold Zone o o STOR 3.11 For personal use only

Upload: others

Post on 07-Jul-2020

4 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

MetalsTech Targets High Grade Gold Zone

o

o

STOR 3.11

For

per

sona

l use

onl

y

Page 2: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Drill Hole

Easting (m)

Northing (m)

RL (m)

Datum Azi

(°TN) Dip (°)

End of

hole (m)

Mineralisation details

From (m)

To (m)

Down hole

Length (m)

Estimated true

thickness (m)

Au (g/t)

Ag (g/t)

Au g/t cut-off

STOR 3.11

-435728 -1229983 686.7 S-JTSK/ Krovak

240 53 266

67.7 205 137.3 ~110 4.6 16.5 0.3

including

114 203 89 ~71 6.9 23.6 3

Drill Target Zone

For

per

sona

l use

onl

y

Page 3: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Re-commencement of Mining at Andrej Adit

For

per

sona

l use

onl

y

Page 4: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

For

per

sona

l use

onl

y

Page 6: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

APPENDIX A: JORC CODE, 2012 EDITION – TABLE 1

Section 1 - Sampling Techniques and Data

(Criteria in this section apply to all succeeding sections) Criteria JORC Code Explanation Details Sampling techniques

• Nature and quality of sampling (e.g. cut channels, random chips, or specific specialised industry standard measurement tools appropriate to the minerals under investigation, such as down hole gamma sondes, or handheld XRF instruments, etc). These examples should not be taken as limiting the broad meaning of sampling.

• Include reference to measures taken to ensure sample representivity and the appropriate calibration of any measurement tools or systems used.

• Aspects of the determination of mineralisation that are Material to the Public Report. In cases where ‘industry standard’ work has been done this would be relatively simple (e.g. ‘reverse circulation drilling was used to obtain 1 m samples from which 3 kg was pulverised to produce a 30 g charge for fire assay’). In other cases, more explanation may be required, such as where there is coarse gold that has inherent sampling problems. Unusual commodities or mineralisation types (e.g. submarine nodules) may warrant disclosure of detailed information.

• Geochemical sampling data for the Sturec Gold Project includes sampling from adits, diamond drilling (from surface and underground), reverse circulation (“RC”) surface drilling and trenches.

• Diamond drill core was used to obtain samples which were sawn in half longitudinally, then one half of the core was submitted for assaying and the remainder was stored on site. The half core was crushed and pulverised prior to assay.

• RC holes were drilled using a 130mm (5.1 inch) diameter face-sampling bit with 1m samples collected through a cyclone. 1m samples were then riffle split to provide 2-3 kg samples for

analysis.

• Core and RC samples were pulverised down to 90% passing -150 mesh (106µm). Then 100-120g of the pulp was weighed and bagged with the sample ticket inside.

• Geochemical samples were mainly fire assayed (either 30g or 50g charge) and gold grades were read using AAS or gravity. Some check assays for gold were completed using Aqua Regia digestion and grades were read using AAS. For silver geochemical samples were completed using Aqua Regia digestion and grades were read using AAS or a four-acid digest followed by ICP-AES analysis.

• The geological database contains 229 drill holes for a total of 54,000m.

Drilling techniques

• Drill type (e.g. core, reverse circulation, open-hole hammer, rotary air blast, auger, Bangka, sonic, etc) and details (e.g. core diameter, triple or standard tube, depth of diamond tails, face-sampling bit or other type, whether core is oriented and if so, by what method, etc).

• Samples came from a combination of diamond drilling, RC drilling and bench channel sample surveys within existing mining voids.

• None of the diamond core was oriented.

• The most recent diamond drill holes (2011) were drilled with a combination of PQ (85mm core diameter), HQ (63.5 mm core diameter) and NQ (47.6 mm core diameter) size in order to be able to obtain larger sample volumes from the mineralised zones and to reach the targeted depths. All recent drill holes started at PQ and were then only reduced if ground conditions prevented further drilling. In this case, the hole was then cased-off and a smaller diameter drill string (HQ and then NQ) was placed within the casing and drilling continued.

• Previously (1996-2008) diamond drill holes were drilled with a combination of HQ (63.5 mm core diameter) and NQ (47.6 mm core diameter) size. These drill holes started at HQ and were then only reduced if ground conditions prevented further drilling and then the hole needed to be cased off.

Drill sample recovery

• Method of recording and assessing core and chip sample recoveries and results assessed.

• Measures taken to maximise sample recovery and ensure representative nature of the samples.

• A sampling of drill logs did not reveal that core loss was a problem during diamond drilling. The reliability of core recovery was confirmed in reports and was estimated to average over 90%.

For

per

sona

l use

onl

y

Page 7: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details • Whether a relationship exists between sample recovery and grade

and whether sample bias may have occurred due to preferential loss/gain of fine/coarse material.

• RC sample recovery of holes used for the resource estimate was estimated at approximately 75%.

• It has been reported that core recovery at the Sturec Project was consistently good.

Logging • Whether core and chip samples have been geologically and geotechnically logged to a level of detail to support appropriate Mineral Resource estimation, mining studies and metallurgical studies.

• Whether logging is qualitative or quantitative in nature. Core (or costean, channel, etc) photography.

• The total length and percentage of the relevant intersections logged.

• A review of the drill logs indicated that the logs contained adequate locational, sampling and assay data.

• All drilling has been qualitatively logged with appropriate detail by previous companies, to support the current resource estimate.

• Core photography is available for most of the drill holes (especially the significantly mineralised zones) that support the current resource estimate.

Sub-sampling techniques and sample preparation

• If core, whether cut or sawn and whether quarter, half or all core taken.

• If non-core, whether riffled, tube sampled, rotary split, etc and whether sampled wet or dry.

• For all sample types, the nature, quality and appropriateness of the sample preparation technique.

• Quality control procedures adopted for all sub-sampling stages to maximise representivity of samples.

• Measures taken to ensure that the sampling is representative of the in situ material collected, including for instance results for field duplicate/second-half sampling.

• Whether sample sizes are appropriate to the grain size of the material being sampled.

• Drill core was sawn in half longitudinally, then dried, crushed and pulverised.

• RC samples were riffle split and are assumed to have been dry because the water table is well below the level the RC holes reached.

• QA/QC procedures for the most recent drilling by Ortac (Arc Minerals Limited) in 2011 followed industry norms. Commercial Standards of suitable grade ranges, blanks and duplicates were inserted as blind samples into all batches of pulps sent to the laboratory. Standards were submitted at an approximate rate of 1 in 25 with blanks, and duplicates, inserted at a rate of approximately 1 in 30. SRK concluded in their 2013 Pre-Feasibility Study (PFS) that the QA/QC protocols were in line with international standards, and the reported data quality and quantity appears to be sufficiently robust to support a Mineral Resource Estimate under the guidelines of the JORC Code (2004). The Competent Person has reviewed the QA/QC protocols and data, and agrees with the assessment of SRK (2013) that the reported data is of a sufficient quantity and quality to support a Mineral Resource Estimate under the guidelines of the JORC Code (2012).

• The reliability of sub-sampling techniques and sample preparation has been confirmed by re-sampling and re-assaying of existing drill core and pulps and the use of alternative laboratory assay checks.

• Sample sizes were appropriate to the grain size of the material being sampled.

Quality of assay data and laboratory tests

• The nature, quality and appropriateness of the assaying and laboratory procedures used and whether the technique is considered partial or total.

• For geophysical tools, spectrometers, handheld XRF instruments, etc, the parameters used in determining the analysis including instrument make and model, reading times, calibrations factors applied and their derivation, etc.

• Nature of quality control procedures adopted (e.g. standards, blanks, duplicates, external laboratory checks) and whether acceptable levels of accuracy (i.e. lack of bias) and precision have been established.

• Ortac (now known as Arc Minerals Limited) 2008-2011 geochemical samples were fire assayed (50g charge) with an Atomic Absorption (AAS) finish, which is still industry standard. Any samples with grades of over 10g/t Au were then fire assayed again and finished by gravity.

The silver samples were assayed using conventional ICP-AES analysis and any grades of silver above 100g/t were re-assayed by aqua regia digestion with an AAS finish. Laboratory standards, blanks and duplicates were also routinely inserted into the sample analysis sequence to monitor accuracy and possible contamination.

• Tournigan 2005-2008 geochemical samples were fire assayed (50g charge) with an Atomic Absorption finish. Laboratory standards and blanks were routinely inserted into the analysis sequence for the laboratory to monitor accuracy and any traces of contamination respectively. A small percentage of samples were also re-assayed as laboratory duplicates using an aqua

For

per

sona

l use

onl

y

Page 8: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details regia (4 parts hydrochloric and 1 nitric acid) digestion with an Atomic Absorption finish. Results of the laboratory duplicates were within an acceptable range when compared against the routine fire assay (50g charge) with an Atomic Absorption finish assay result.

• Argosy 1996-1997 geochemical samples sent to SGS and Chemex were fire assayed (30g charge) with an atomic adsorption finish to obtain gold assay results. The silver assay results from SGS were derived from an aqua regia digestion with an atomic adsorption finish. Assays for 34 elements including silver, determined by the ICP analytical method, were also completed for multiple mineralised intervals at the Chemex laboratory.

• There are few records of sample preparation and analysis methods for the early work done by Rudne Bane and the Slovak Geological Survey. However, re-analysis of the Rudne Bane channel sampling pulps and Slovak Geological Survey drilling by Argosy between 1996-1997 confirms their validity.

• Fire Assay is totally destructive and is considered the most accurate precious metal assay method for this style of mineralisation.

• QA/QC procedures for the most recent drilling by Ortac in 2011 followed industry norms. Commercial Standards of suitable grade ranges, blanks and duplicates were inserted as blind samples into all batches of pulps sent to the laboratory. Standards were submitted at an approximate rate of 1 in 25 with blanks, and duplicates, inserted at a rate of approximately 1 in 30.

• QA/QC procedures for the Tournigan 2005-2008 drilling data included standards being inserted at an approximate rate of 1 in 50, and blanks and duplicates being inserted at an approximate rate of 1 in 30. While this insertion rate of standards is considered low by today’s industry standards it is not considered unacceptable.

• The Tournigan 2005-2008 drilling data was also subjected to a second laboratory check assay study. A total of 96 pulp samples from the 2005 Tournigan RC holes were re-assayed for gold and silver by the OMAC laboratory in Ireland. They had been originally analysed by Chemex in Canada. The duplicate check assay samples represent 3.04% of the total number of samples (3,156) collected from the RC drilling and included in the database. An additional 79 pulp samples from Tournigan’s diamond drill holes completed from 2006-08 were re-assayed as blind duplicates by ALS Chemex in Romania. The check assay samples represent 2.82% of the total number of samples (2,806) collected from the core drilling. Comparison of the original and check assay results showed a very slight negative bias for the gold assays. The correlation coefficient between the two sets of results was 1, which adds to the confidence that the Tournigan drilling assay results are reliable.

• As little to no QA/QC data was available on the Argosy 1996-1997 drilling data a second laboratory check assay study was completed to help validate the historic assay data. A total of 366 coarse split samples from Argosy diamond drill holes were re-assayed in 2005 for gold and silver by the OMAC laboratory in Ireland. 268 (or 73%) of these had been originally analysed by Chemex in Canada, the remainder had been analysed by the Slovakian Geological Survey. The check assay samples represent 3.8% of the total number of samples (9,647) collected from the Argosy 1996-97 drilling campaign. No details were available about blanks and standards determinations in the original Argosy analyses. A comparison of the assay results suggested the original assays were slightly conservative.

For

per

sona

l use

onl

y

Page 9: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details • No QA/QC data was available on the early work done by Rudne Bane and the Slovak Geological

Survey. However, re-analysis of the Rudne Bane channel sampling pulps and Slovak Geological Survey drilling by Argosy confirms their validity and therefore these assay results were also considered to be sufficiently reliable for resource estimation purposes.

Verification of sampling

• The verification of significant intersections by either independent or alternative company personnel.

• The use of twinned holes. • Documentation of primary data, data entry procedures, data verification, data storage (physical and electronic) protocols.

• Discuss any adjustment to assay data.

• A site visit to the Sturec Gold Project in Slovakia was completed in December 2019 as part of MetalsTech Limited’s due diligence investigation into the project before the acquisition. During the site visit, the existence and location of a subset of the historic drill hole collars was verified in the field and the historical drill core was inspected. As part of this historical drill core inspection several significant intersections were verified as having been sampled and the remaining material was identified as visibly mineralised (identification of quartz veining and alteration associated with sulphides).

• As core photography exists, a significant amount of the mineralised intersections have also been verified as sampled and visibly mineralisation (identification of quartz veining and alteration associated with sulphides) through core photography.

• Tournigan carried out two twin drilling programmes at Kremnica. In 2005, five RC holes were drilled to twin Argosy diamond drill holes completed in 1996-97. The results showed that on average the RC holes have higher gold and silver grades with a positive bias of 16% in the Au grade and 14% in the Ag grade than the corresponding cored holes. In 2008, Tournigan twinned six of its earlier 2005 RC holes with six diamond drill holes. This comparison again

showed that on average the RC holes returned higher gold grades than the corresponding cored holes, with a slight positive bias of 6% in the Au grade. The silver grades were lower in the RC holes, with a negative bias of 12%.

• Laboratory assay reports are filed with the hard copy drill logs.

• No adjustments to assay data have occurred.

Location of data points

• Accuracy and quality of surveys used to locate drill holes (collar and down-hole surveys), trenches, mine workings and other locations used in Mineral Resource estimation.

• Specification of the grid system used.

• Quality and adequacy of topographic control.

• Locations of diamond drill hole collars, channel samples and mine workings were recorded using S-JTSK/Krovak Datum.

• Locations of diamond drill hole collars, channel samples and mine workings were partially confirmed on the site visit in December 2019.

• This estimate for this report used the Slovakian WGS94 grid.

• High-resolution topography over the project was acquired using LiDAR. This topography was used during the preparation of these estimates for this report.

• This provides sufficient accuracy for the current estimates.

Data spacing and distribution

• Data spacing for reporting of Exploration Results.

• Whether the data spacing and distribution is sufficient to establish the degree of geological and grade continuity appropriate for the Mineral Resource and Ore Reserve estimation procedure(s) and classifications applied.

• Whether sample compositing has been applied.

• Drill holes are typically oriented east-west and were generally drilled inclined to the west. The drill spacing is inconsistent over many areas of the deposit. Drill spacing over the central part of the deposit ranges from 25 m to 50 m north-south. Surface trenches follow open-pit contours, and underground adit sampling followed underground workings, typically running north-east to south-west and north to south.

• Data spacing was sufficient for estimation of Au and Ag grades by ordinary kriging and by indicator kriging for classification as Measured, Indicated or Inferred Mineral Resources according to the JORC Code.

For

per

sona

l use

onl

y

Page 10: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details • No compositing of sample intervals was undertaken in the field. Samples were composited to

1m lengths within the mineralisation envelopes for resource modelling.

Orientation of data in relation to geological structure

• Whether the orientation of sampling achieves unbiased sampling of possible structures and the extent to which this is known, considering the deposit type.

• If the relationship between the drilling orientation and the orientation of key mineralised structures is considered to have introduced a sampling bias, this should be assessed and reported if material.

• Holes were generally drilled at high angles to the strike and dip of the mineralised domains which, given the style of mineralisation, was appropriate for minimising sampling bias.

Sample security • The measures taken to ensure sample security. • There are few records of sample preparation and analysis methods for the early work done by Rudne Bane and the Slovak Geological Survey. However, re-analysis of the Rudne Bane channel pulps by Argosy confirms their validity.

• During the Argosy 1996 drilling programs, all sample intervals were securely shipped for sample preparation and analyses to either SGS France (internationally certified laboratory) or the Slovak Geological Survey (uncertified national laboratory).

• During Argosy’s 1997 programme, Chemex set up a certified sample preparation facility and trained staff on the Kremnica site. Then all samples were securely freighted to Chemex in Canada for assay. Mr Ken Bright (Chief Geochemist) of Chemex’s Vancouver office inspected the sample preparation facility and confirmed that the facility and defined sample preparation procedures were acceptable.

• During its 2005 programme, Tournigan utilised the onsite sample preparation facility to process all the reverse circulation drill samples. These were shipped for analysis to Chemex in Canada.

• Subsequently (2006-2008), Tournigan has also used the Chemex laboratory in Romania for chemical analysis and the OMAC Laboratory in Loughrea, Ireland, a subsidiary of Alec Stewart Laboratories for check analyses.

• During the Tournigan 2005-2008 programmes, samples were sent for analysis (Chemex in Canada or Romania and OMAC in Ireland) by courier. Samples were put into plastic bags and placed into a cardboard box. The plastic bag was then sealed with a signed security tag. The list of samples with the required analyses was then placed in the box and a copy retained in the sample book.

• All remaining pulps from the Rudne Bane underground sampling programme, all remaining core splits and sample pulps from the Argosy programmes and all coarse rejects and pulps

from Tournigan’s 2005-2008 programmes are stored in secure buildings on the Kremnica mine site. Many drill core pulps have been removed during a series of re-sampling programmes. Several mineralised intervals in the core have been completely removed and sampled for metallurgical testing or re-sampling purposes.

Audits or reviews

• The results of any audits or reviews of sampling techniques and data.

• A significant amount of exploration and feasibility studies have been completed on this project. This work has produced a significant body of technical data that has been critically examined and validated multiple times by various independent mining consultant groups. Audits/reviews of this technical data where completed in: 1) 1997 Mineral Resource estimate calculated by Western Services Engineering Inc; 2) 2004 Mineral Resource estimate by Smith

For

per

sona

l use

onl

y

Page 11: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details and Kirkham; 3) 2006 Mineral Resource estimate by Beacon Hill; 4) was completed in 2009 as part of the Saint Barbara NI 43-101 compliant resource estimate; 5) 2012 as a part of the Sturec Deposit Resource Estimate by Snowden Mining Consultants, and then again most recently in the 2013 PFS by SRK. No significant issues with the data or sampling techniques were identified during any of these studies.

For

per

sona

l use

onl

y

Page 12: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Section 2 - Reporting of Exploration Results

(Criteria listed in the preceding section also apply to this section) Criteria JORC Code Explanation Details Mineral tenement and land tenure status

• Type, reference name/number, location and ownership including agreements or material issues with third parties such as joint ventures, partnerships, overriding royalties, native title interests, historical sites, wilderness or national park and environmental settings.

• The security of the tenure held at the time of reporting along with any known impediments to obtaining a licence to operate in the area.

• Sturec Gold Project consists of the Kremnica Mining Territory (9.47 km2) owned by Slovakian limited liability company Ortac SK, which is a wholly-owned subsidiary of Ortac UK (a private limited company registered in England and Wales).

• Kremnica Mining Territory’ and Mining Licence details:

‘Kremnica Mining Territory’

Name: Mining Territory Kremnica Au-Ag

Mining area No: MHD-D.P.- 12 Date of Issuance: 21 January 1961 Metals • Gold and Silver

Duration: Indefinite Holder of the: Ortac, s.r.o Amendments: • No. 1037-1639/2009

ORTAC,s.r.o. Mining Licence details

Name: Ortac,s.r.o. Mining License No: 1830-3359/2008 Date of Issuance: 13 November 2008 Subject: • Opening, preparation and exploitation of reserved mineral resource

• Installation, conservation and decommissioning of mining work • Processing and refinement of mineral resources • Installation and operation of unloading areas and dumps • Opening the mining works to the public for museum purposes and related safety

maintenance works

Duration: Indefinite Responsible Person: Ing. Peter Čorej Amendments: • No. 773-1398/2015 dated 11 May 2015 extending the subject of the Mining License

• No. 979-1401/2019 dated 11 June 2019 updating the information on statutory body

For

per

sona

l use

onl

y

Page 13: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details • The Kremnica Mining Licence is located in central Slovakia between the town of Kremnica and the village of Lučky,

17km west of central Slovakia's largest city, Banska Bystrica, and 150km northeast of the capital, Bratislava.

• Metals Tech owns 100% of the Sturec Gold Project by completing the acquisition of Ortac UK on 14 February 2020.

• As a part of the acquisition, MetalsTech Limited must also pay Arc Minerals Limited another $300,000 cash within 6 months of the acquisition; as well as grant Arc Minerals Limited a royalty equal to A$2 per ounce of resource that is delineated at the project above an open cut JORC (2012) Indicated and Measured Resources that exceeds 1.5million ounces at a grade greater than 2.5g/t AuEq after 2 years from the date of execution of the Terms Sheet but before the date that is 5 years after the date of execution of the Terms Sheet capped at 7 million ounces.

• Also, subject to MTC shareholder approval, Courchevel 1850 Pty Ltd (a related party of MTC chairman Russell Moran) is to be assigned a 2% net smelter royalty on all production from the project.

• In 2013, Arc Minerals (named Ortac Resources Limited at this time) submitted a small-scale underground mining application, which was awarded by the Central Mining Bureau in 2014. Trial underground mining commenced in June 2014 and a 40t bulk sample was extracted from Sturec for metallurgical test work.

• In 2016, the Regional Court in Banská Bystrica ruled against the Central Mining Bureau concerning the underground mining permit issued to Arc Minerals Limited in 2014 and revoked the decision to issue the mining permit.

• In May 2017, the Central Mining Bureau issued Ortac SK with an amended underground mining permit that allowed for small-scale mining activities to recommence.

• In July 2017, Ortac SK (Arc Minerals Limited) re-commenced the trial underground mining activities at Sturec, fulfilling the condition required by Slovak regulations to preserve its right to exploit the ore deposit in the Kremnica Mining Licence Area for a minimum period of at least three years. 500t of ore was extracted and used for metallurgical test work relating to alternative processing technologies to the conventional cyanide leaching.

• Since 2017 (before selling the project to MetalsTech), Arc Minerals Limited has continued working with the local community and stakeholders to facilitate the development of the project.

• In October 2019, the Central Mining Bureau issued Ortac SK with an underground mining permit that allowed for small-scale mining activities to recommence: Decision No. 827-2373 / 2019. This decision was appealed soon after being received.

• In February 2020, the appeals against Decision No. 827-2373 / 2019 were rejected by the State Mining Administration and the underground mining authorisation was upheld.

• In April 2020, MetalsTech Limited re-commenced the underground mining activities at Sturec, in order to fulfill the condition required by Slovak regulations to preserve its right to exploit the ore deposit in the Kremnica Mining Licence Area for a minimum period of at least three years.

• Although Ortac SK is officially registered as the holder of the Kremnica Mining Territory, the validity of the allocation of the Kremnica Mining Territory has been repeatedly disputed. Arguments challenging the validity of the allocation of the Kremnica Mining Territory have been raised by third parties in licensing proceedings in respect of particular mining activities within the Kremnica Mining Territory. So far, the merits of such arguments have not been assessed by the court, as the respective court decisions were issued on procedural grounds in the past. Despite the existence of reasonable legal arguments defending the validity of the allocation of the Kremnica Mining Territory, it cannot be ruled out that the challenges to its validity will eventually prevail before the court. Even if the validity of the allocation of the Kremnica Mining Territory is successfully defended in principle, there is a risk that Ortac SK’s entitlement to the Kremnica Mining Territory could be held to be limited to underground operations only.

• There are no environmental protected areas in the vicinity of the project resource area, except a protected lime tree situated close to the Leopold Shaft, adjacent to the monument commemorating the visit by Emperor Joseph II

For

per

sona

l use

onl

y

Page 14: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details to Kremnica. Permission can be obtained to fell the tree if necessary, from the Provincial Environmental Office in Banska Bystrica.

• It appears that a significant part of the Kremnica Mining Licence is covered by a heritage conservation area. This is not surprising given the extensive mining history throughout this area. The previous owners Arc Minerals Ltd used this fact to their advantage by establishing the Andrej Kremnica Mining Museum, whose two main attractions are the Ludavika Shaft Building and the Andrej Adit, which was established in 1982 by the State to access the main quartz vein mineralisation. As a result, various requirements under the applicable regulations in the area of heritage protection must be complied with. Further investigation needs to be completed to understand the effect this Heritage Protection will have on any proposed mining activities.

• There is one registered environmental burden located in the Kremnica Mining Territory with registration number SK/EZ/ZH/2129. This environmental burden relates to the processing facilities including the historic waste dumps that are situated immediately next to the Arc Minerals operation office/Andrej Kremnica Mining Museum. It is categorized “only” as a potential (probable) environmental burden as no significant contamination/acid rock drainage (ARD) effects have been reported concerning these historic mining remnants.

• There is risk concerning the further development of the Sturec Gold Project due to the historic social and environmental opposition to the development of a mining operation in this area. The opposition is believed to be the result of two main factors: previous development plans utilised cyanide ore processing; and previous development plans involved digging a large open pit in relatively proximity to the township of Kremnica.

o To minimise the first risk, MetalsTech is investigating alternative gold processing methods, especially Thiosulphate Leaching, which has previously been used quite successfully on Sturec ore samples during metallurgical test work in 2014. Also, in 2014 the CSIRO successfully collaborated with Barrick Gold Corp. to implement Thiosulphate ore processing technology on the Goldstrike Mine in Nevada, USA, which now produces approximately 350,000 ounces of gold per annum for Barrick and Newmont Goldcorp Corp; proving

that this technology can be utilised economically and at significant scale.

o To minimise the second risk, MetalsTech intends to put in place a comprehensive project stakeholder engagement programme to attempt to understand and mitigate their concerns about the development of a mining operation on the Sturec Gold Project. Also, the full suite of benefits to the country and local communities that will arise from the Sturec Gold Project (such as job creation, training, capital investment, revenue generation, procurement of goods and services locally, and community development initiatives) need to be properly communicated to project stakeholders, so that that they can use this to motivate/ justify the project in project-approval processes.

Exploration done by other parties

• Acknowledgment and appraisal of exploration by other parties.

• Many exploration companies have previously explored the Sturec Gold Project and the surrounding areas. The details of the exploration history are outlined below:

o The Slovak Geological Survey carried out extensive exploration in the Sturec area from 1981 to 1987, including extensive adit and cross-cut development within the Sturec zone.

o Rudne Bane operated the open-pit mine at Sturec from 1987 to 1992 and produced 50,028t of ore averaging 1.54g/t Au. During this time, Rudne Bane conducted underground sampling of the larger mineralised portions of the Sturec deposit (40 channels for 3,149 individual samples) and 12 underground fan drill holes (for 425.3m) into the northern-most known limits of the deposit. A total of 266 sample intervals were assayed for gold and silver.

For

per

sona

l use

onl

y

Page 15: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details o Kremnica Banská Spolocnost (KBS), an investment company composed of former mine managers, obtained

the title to the Kremnica Mining Lease (MHD-D.P. 12) from the Slovak government on 1 April 1995. In 1995, Argosy Mining Corporation (Argosy) of Vancouver formed a 100% owned Slovak Subsidiary, Argosy Slovakia s.r.o., which entered into a joint venture with KBS on 6 October 1995. Argosy Slovakia purchased KBS’s share of the joint venture on 24 April 1997 to control 100% of the mining licence through its subsidiary, Kremnica Gold a.s. Argosy completed a core drilling programme in 1996 and a combined core and reverse-circulation (RC) drilling programme in 1997. This core/RC program totalled 79 holes for 12,306m; 9,382.4m of which was into the Sturec Deposit area.

o In July 2003, Tournigan Gold Corporation (Tournigan) acquired the rights to the Sturec Project by purchasing Kremnica Gold a.s. from Argosy. Tournigan then completed 104 diamond core and RC drill holes for ~14,000m over the period 2004 to 2008. The majority of these holes were into the Sturec Deposit, but adjacent areas were also explored. In the summer and autumn of 2005, Tournigan executed a 36-hole program of RC drilling as infill of Argosy’s and Tournigan’s earlier core drilling programs into the Sturec Deposit. Tournigan also drilled five additional holes as twins of Argosy’s previous core holes. This drilling resulted in the deposit being drilled off on approximate 50-metre centres (earlier drilling had been on approximately 100 x 50 metre centres). The RC program results confirmed the geology and ore outlines that were previously established by core drilling (e.g., rock types and alteration, location of zones of oxidation, location of ore-bearing veins and stockworks, hanging walls, footwalls, thicknesses, strikes, dips, and grades). The holes and assay results were displayed on cross-sections and recorded on logs. Samples were collected at 1-meter intervals under the immediate supervision of a geologist, sealed in plastic bags, and submitted for analysis and check analyses according to the required formal protocols. The holes were logged on site by the drill geologists and again in the laboratory where qualitative samples were taken and inventoried as geological reference samples. The bulk rejects from these RC samples are stored at the

operational offices at the Andrej Mining Museum. Tournigan also completed nine bench channel surveys incorporating a total of 317 sample intervals. In 2004, Tournigan also conducted 4 drill core holes at the Vratislav Prospect, immediately to the north of the Sturec Mineral Resource area and 3 drill core holes at the Wolf Prospect, immediately north of the Vratislav Prospect.

o Ortac Resources (now Arc Mineral Limited) acquired the project in 2009. Since 2009 till MetalsTech acquired the project from them in February 2020, Ortac has drilled 13 core holes for 2,771.7m within the Sturec Deposit area.

Geology • Deposit type, geological setting and style of mineralisation.

• The Sturec Gold Project is located in the Central Slovakia Volcanic Area in the Kremnica Mountains of the Western Carpathians. The Central Slovakia Volcanic Field hosts several Ag–Au epithermal vein-type deposits including Banská Štiavnica, Kremnica, Hodruša-Hámre, and Nová Bana, which were important sources of precious and base metals in the past. The area is characterised by Tertiary pyroxene-amphibole andesite flows and tuffs of the Zlata Studna Formation. The andesites are underlain by Mesozoic limestone. Deep-seated structures and faults within the pre-Tertiary basement interpreted to be extensional Horst and Graben in style, focussed sub-volcanic intrusions of gabbrodiorite, diorite, diorite porphyry, and minor quartz-diorite porphyry at depth and associated mesothermal mineralising events, which were then overprinted by the epithermal precious metal mineralisation. In the Kremnica area, the structure is controlled by a 6-7km long, N-S trending horst, known as the Kremnica Horst Structure, which is interpreted to be the result of the sub-volcanic intrusions of gabbrodiorite, diorite, diorite porphyry, and minor quartz-diorite porphyry at depth causing this zone to be uplifted relative to the two graben structures to either side.

For

per

sona

l use

onl

y

Page 16: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details • The Sturec Gold Project mineralisation is classified as a low-sulphidation epithermal Ag-Au deposit type and is

interpreted to have formed from low-salinity fluids composed of a mixture of meteoric and magmatic waters at temperatures mostly between ~270 to 190 °C. The mineralisation is hosted by quartz–dolomite veins also containing adularia, sericite, illite and chalcedony that cut through Neogene propyllitised (low pressure/low to medium temperature hydrothermal alteration) andesites of the Kremnica stratovolcano. The hydrothermal alteration from the veins outwards consists of silicification and potassic-metasomatism (adularia), propylitization and argillisation. Vein styles include large banded to massive quartz veins, smaller quartz veins and sheeted veins, quartz stockwork veining and silicified hydrothermal breccias.

Drill hole Information

• A summary of all information material to the understanding of the exploration results including a tabulation of the following information for all Material drill holes:

• easting and northing of the drill hole collar

• elevation or RL (Reduced Level – elevation above sea level in metres) of the drill hole collar

• dip and azimuth of the hole

• down hole length and interception depth

• hole length.

• If the exclusion of this information is justified on the basis that the information is not Material and this exclusion does not detract from the understanding of the report, the Competent Person should clearly explain why this is the case.

• The details of STOR 3.11 are give in the body of this announcement (Table 1).

• A summary of drill hole assay information for STOR 3.11 is appended to this announcement. See Appendix B.

Data aggregation methods

• In reporting Exploration Results, weighting averaging techniques, maximum and/or minimum grade truncations (e.g. cutting of high grades) and cut-off grades are usually Material and should be stated.

• Where aggregate intercepts incorporate short lengths of high-grade results and longer lengths of low-grade results, the procedure used for such aggregation should be stated and some typical examples of

• Low grade intervals were calculated by weighted means with a 0.3g/t Au cut-off.

• High grade intervals were calculated by weighted means with a 3g/t Au cut-off.

• No top cut was used.

• Gold equivalent has been calculated to using gold and silver grades as well as metallurgical recovery percentages from the 2014 Thiosulphate Metallurgical test work study.

• AuEq g/t = ((Au g/t grade*Met. Rec.*Au price/g) + (Ag g/t grade*Met. Rec.*Ag price/g)) / (Met. Rec.*Au price/g)

• Long term Forecast Gold and Silver Price used was: $1,500 USD/oz and $20 USD/oz respectively (source: JP Morgan, World Bank).

• Gold And silver recovery from the 2014 Thiosulphate Metallurgical test work: 90.5% and 48.9% respectively.

• It is the company’s opinion that both gold and silver have a reasonable potential to be recovered and sold from the Sturec ore using Thiosulphate Leaching/Electrowinning as per the recoveries indicated.

For

per

sona

l use

onl

y

Page 17: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details such aggregations should be shown in detail.

• The assumptions used for any reporting of metal equivalent values should be clearly stated.

Relationship between mineralisation widths and intercept length

• These relationships are particularly important in the reporting of Exploration Results.

• If the geometry of the mineralisation with respect to the drill hole angle is known, its nature should be reported.

• If it is not known and only the downhole lengths are reported, there should be a clear statement to this effect (e.g. ‘down hole length, true width not known’).

• Holes were generally drilled at high angles to the strike and dip of the mineralised domains which, given the style of mineralisation, was appropriate.

• STOR 3.11 was drilled at a high angle to the interpreted dip of the mineralisation, which indicates that the down hole thickness is approximately 80% of the true thickness of mineralisation in this part of the Sturec ore deposit.

Diagrams • Appropriate maps and sections (with scales) and tabulations of intercepts should be included for any significant discovery being reported. These should include, but not be limited to a plan view of drill hole collar locations and appropriate sectional views.

• All relevant diagrams are reported in the body of this announcement.

Balanced reporting

• Where comprehensive reporting of all Exploration Results is not practicable, representative reporting of both low and high grades and/or widths should be practiced to avoid misleading reporting of Exploration Results.

• All assay results from STOR 3.11 have been reported and are shown in Appendix 2.

Other substantive exploration data

• Other exploration data, if meaningful and material, should be reported including (but not limited to): geological observations; geophysical survey results;

• Groundwater and geotechnical investigations were completed in 2013. The groundwater monitoring results and geotechnical data were found to be adequate to interpret reasonable open pit slope angles for the various host rock types for the purposes of an open pit optimisation that was used as justification for a ‘reasonable prospects of economic extraction’ interpretation.

For

per

sona

l use

onl

y

Page 18: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Criteria JORC Code Explanation Details geochemical survey results; bulk samples – size and method of treatment; metallurgical test results; bulk density, groundwater, geotechnical and rock characteristics; potential deleterious or contaminating substances.

• Concerning the groundwater, it has been interpreted that the most likely current situation is that the water table around the open pit area was drawn down due the dewatering through the ‘Heritage Adits’; with the Main Heritage Adit being situated some 300m below and transporting the groundwater 15km away to where it eventually reaches the surface. It was interpreted that the dewatering had occurred to the level with or below the maximum depth of the proposed pit (~300m). However, the possibility that the dewatering was not as efficient as interpreted has also considered and it has been recommended that up to 6 permanent monitoring wells be installed on the western and eastern sides of the pit to the full depth of the proposed pit. The primary purpose of these wells is to determine if there is any spatial and temporal variation in groundwater levels around the pit.

• Geotechnical investigations found that the stability of an open pit in this area would be significantly controlled by the degree of argillic alteration of the predominantly andesite rock mass found at Sturec (host rock of the quartz veining). The modelling suggested that the pit slope needed to be as low as 43° in the highly argillic altered/clay rock type but that a 50° pit slope was adequate in the other rock types.

• The groundwater and geotechnical investigation results have been used to model a recommended open pit design that achieved an adequate Factor of Safety (FoS) of greater than 2.0.

Further work • The nature and scale of planned further work (e.g. tests for lateral extensions or depth extensions or large-scale step-out drilling).

• Diagrams clearly highlighting the areas of possible extensions, including the main geological interpretations and future drilling areas, provided this information is not commercially sensitive.

• There is good potential for the delineation of further gold mineralisation within the Sturec Gold Project area through future exploration.

• Prospects such as Wolf, Vratislav, Vollie Henne and South Ridge are interpreted to be extension areas to the Mineral Resource area at Sturec. Significant gold-silver bearing quartz vein mineralisation has been identified and variably explored/mined at each of these prospects.

• The most exciting and potentially valuable exploration potential though appears to be down plunge. When the Mineral Resource model is investigated, it is very apparent that the ore body has a high-grade core that appears to be plunging towards the south. Further exploration drilling to confirm that the high-grade mineralisation continues down plunge to the south is classified as a high priority target.

For

per

sona

l use

onl

y

Page 19: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

Appendix B: Drill Hole Assay Data for STOR 3.11

For

per

sona

l use

onl

y

Page 20: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %0.0 1.0 1.0 75230 0.565 6.8 0.81 149 <10 160 0.7 <2 0.39 <0.5 7 19 25 3.561.0 2.0 1.0 75231 0.211 2.1 1.1 64 <10 170 1.1 <2 1.24 <0.5 16 25 44 6.692.0 3.0 1.0 75232 0.078 1.3 1.07 41 <10 110 1.1 <2 0.09 <0.5 6 24 45 6.533.0 4.0 1.0 75233 0.072 0.8 0.91 30 <10 70 1.3 <2 0.07 <0.5 8 19 64 10.854.0 5.0 1.0 75234 0.025 0.4 0.52 47 <10 100 <0.5 <2 0.06 <0.5 1 9 19 3.515.0 6.0 1.0 75235 0.172 0.7 0.78 54 <10 110 0.5 <2 0.05 <0.5 2 17 43 3.216.0 7.0 1.0 75236 0.043 0.9 1.43 28 <10 100 1.3 <2 0.07 0.9 11 17 93 4.387.0 8.0 1.0 75237 0.097 0.8 1.14 33 <10 70 2.4 <2 0.2 <0.5 19 12 73 4.558.0 9.0 1.0 75238 0.083 1.7 1.22 53 <10 70 1.4 <2 0.16 <0.5 18 16 76 5.79.0 10.0 1.0 75239 0.078 1.6 1.22 96 <10 90 1.2 <2 0.2 0.8 23 19 82 3.84

10.0 11.0 1.0 75240 0.059 1.1 0.8 28 <10 80 0.6 <2 0.15 <0.5 15 12 95 2.6411.0 12.0 1.0 75241 0.031 0.7 1.25 26 <10 80 1 <2 0.21 0.8 26 11 64 3.712.0 13.0 1.0 75242 0.021 <0.2 0.68 13 <10 40 1.5 <2 1.34 <0.5 32 19 42 5.1713.0 14.0 1.0 75243 0.023 0.6 0.58 16 <10 30 1 <2 0.4 <0.5 35 13 42 4.3814.0 15.0 1.0 75244 0.024 0.4 0.62 14 <10 70 1.1 <2 1.97 <0.5 31 14 36 5.5715.0 16.0 1.0 75245 0.021 0.2 0.49 23 <10 30 0.7 <2 3.67 <0.5 19 7 31 4.4516.0 16.5 0.5 75246 0.019 0.2 0.58 19 <10 60 0.8 <2 7.2 <0.5 23 6 22 5.616.5 17.0 0.5 75247 0.018 0.3 0.68 7 <10 30 1 <2 4.77 <0.5 26 12 35 4.9917.0 18.0 1.0 75248 0.031 0.6 0.56 15 <10 30 0.9 <2 2.13 <0.5 31 12 37 4.2518.0 19.0 1.0 75249 0.026 0.5 0.6 18 <10 30 0.9 <2 2.62 <0.5 30 10 40 5.2719.0 20.0 1.0 75251 0.03 0.9 0.71 34 <10 30 0.8 <2 4.54 <0.5 16 4 34 4.420.0 21.0 1.0 75252 0.023 0.5 0.56 30 <10 70 0.6 <2 1.27 <0.5 12 5 25 3.5221.0 22.0 1.0 75253 0.015 0.7 0.34 29 <10 30 0.5 <2 0.91 <0.5 9 4 16 3.4922.0 23.0 1.0 75254 0.02 1.1 0.79 36 <10 30 0.8 <2 3.49 <0.5 18 5 34 5.323.0 24.0 1.0 75255 0.026 1.2 0.54 61 <10 50 1 2 2.17 <0.5 19 3 42 5.8624.0 25.0 1.0 75256 0.03 1.4 0.55 58 <10 30 0.7 <2 2.71 <0.5 19 4 43 5.6225.0 25.5 0.5 75257 0.034 2.1 0.68 41 <10 20 0.5 <2 1.78 <0.5 20 6 37 6.0425.5 26.0 0.5 75258 0.023 0.9 0.57 39 <10 40 0.6 <2 1.98 <0.5 22 5 36 6.4526.0 27.0 1.0 75259 0.019 0.8 0.51 39 <10 40 0.7 <2 3.66 <0.5 20 3 36 5.0927.0 27.3 0.3 75260 0.022 1 0.63 79 <10 60 0.6 <2 2.25 <0.5 15 4 31 5.6927.3 28.0 0.7 75263 0.026 0.9 0.41 124 <10 40 0.5 <2 4.5 <0.5 13 4 22 7.0328.0 28.5 0.5 75264 0.034 1.5 0.42 129 <10 40 0.6 <2 4.44 <0.5 14 5 26 7.7728.5 29.0 0.5 75265 0.065 2.2 0.41 67 <10 30 <0.5 <2 1.97 <0.5 15 3 27 6.1729.0 29.5 0.5 75266 0.023 1.4 0.25 37 <10 50 <0.5 <2 2.12 <0.5 10 5 24 4.0129.5 30.0 0.5 75267 0.023 0.9 0.55 93 <10 30 0.5 <2 1.67 <0.5 18 3 42 6.4630.0 31.0 1.0 75268 0.022 0.6 0.53 41 <10 20 0.5 <2 2.51 <0.5 18 7 45 4.7331.0 32.0 1.0 75269 0.017 0.3 0.53 33 <10 70 0.8 <2 3.68 <0.5 23 14 46 4.432.0 32.7 0.7 75270 0.026 <0.2 0.75 34 <10 50 0.6 <2 2.93 <0.5 20 13 54 5.1132.7 33.0 0.3 75271 0.021 0.4 0.56 50 <10 60 0.6 <2 4.11 <0.5 17 8 44 4.6433.0 34.0 1.0 75272 0.02 0.3 0.59 56 <10 40 0.6 <2 5.04 <0.5 16 6 27 5.5334.0 35.0 1.0 75274 0.034 0.8 0.51 50 <10 70 0.9 <2 1.99 <0.5 21 9 39 4.2635.0 36.0 1.0 75275 0.504 3.7 0.55 72 <10 50 0.7 <2 1.24 <0.5 23 12 45 5

STOR- 3.11 Assay Data

1/24

For

per

sona

l use

onl

y

Page 21: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

0.0 1.0 1.0 752301.0 2.0 1.0 752312.0 3.0 1.0 752323.0 4.0 1.0 752334.0 5.0 1.0 752345.0 6.0 1.0 752356.0 7.0 1.0 752367.0 8.0 1.0 752378.0 9.0 1.0 752389.0 10.0 1.0 75239

10.0 11.0 1.0 7524011.0 12.0 1.0 7524112.0 13.0 1.0 7524213.0 14.0 1.0 7524314.0 15.0 1.0 7524415.0 16.0 1.0 7524516.0 16.5 0.5 7524616.5 17.0 0.5 7524717.0 18.0 1.0 7524818.0 19.0 1.0 7524919.0 20.0 1.0 7525120.0 21.0 1.0 7525221.0 22.0 1.0 7525322.0 23.0 1.0 7525423.0 24.0 1.0 7525524.0 25.0 1.0 7525625.0 25.5 0.5 7525725.5 26.0 0.5 7525826.0 27.0 1.0 7525927.0 27.3 0.3 7526027.3 28.0 0.7 7526328.0 28.5 0.5 7526428.5 29.0 0.5 7526529.0 29.5 0.5 7526629.5 30.0 0.5 7526730.0 31.0 1.0 7526831.0 32.0 1.0 7526932.0 32.7 0.7 7527032.7 33.0 0.3 7527133.0 34.0 1.0 7527234.0 35.0 1.0 7527435.0 36.0 1.0 75275

STOR- 3.11 Assay DataME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41

Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Scppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm<10 2 0.12 10 0.27 583 2 <0.01 6 690 23 0.27 23 4<10 1 0.21 20 0.6 794 2 0.01 11 1210 12 1.23 13 7<10 1 0.21 30 0.09 209 2 <0.01 8 1270 12 0.08 6 8<10 <1 0.19 20 0.06 209 1 <0.01 7 1280 12 0.12 5 7<10 <1 0.22 20 0.05 58 1 <0.01 2 900 15 0.14 3 5<10 <1 0.22 30 0.05 42 1 <0.01 5 1520 15 0.33 2 8<10 <1 0.21 40 0.05 90 1 <0.01 26 1110 12 1.48 3 9<10 1 0.25 80 0.07 63 2 <0.01 16 1330 12 3.36 <2 6<10 1 0.22 30 0.07 91 2 <0.01 17 1410 13 3.84 4 8<10 <1 0.19 60 0.06 64 2 <0.01 23 1140 13 2.54 3 9<10 <1 0.16 20 0.05 234 1 <0.01 13 910 9 1.58 2 6<10 <1 0.16 50 0.08 426 1 <0.01 29 1250 15 3.26 3 6<10 1 0.18 30 0.77 2260 1 0.01 13 1170 9 1.55 2 8<10 <1 0.17 30 0.26 1810 1 <0.01 12 1170 10 1.89 2 7<10 1 0.18 20 0.74 1920 1 0.01 12 1160 10 4.17 2 6<10 <1 0.2 10 1.31 1030 1 0.01 8 1020 10 4.29 4 4<10 <1 0.26 10 2.58 3380 1 0.01 8 820 7 4.3 2 4<10 <1 0.24 20 1.83 1770 1 0.01 9 1120 8 4.32 3 5<10 <1 0.16 20 0.57 1475 1 0.01 11 1180 10 3.27 2 6<10 <1 0.21 20 0.85 1740 1 0.01 13 1150 9 4.54 5 5<10 <1 0.35 10 1.77 1065 1 0.01 8 1100 10 4.64 9 4<10 <1 0.29 10 0.48 366 2 0.01 4 730 11 3.61 5 3<10 <1 0.17 10 0.33 302 2 0.01 4 510 9 3.42 3 2<10 1 0.37 20 1.37 774 1 0.01 10 1140 11 6.13 4 4<10 1 0.29 10 0.76 375 1 0.01 10 1240 12 6.92 7 4<10 1 0.28 10 0.96 531 1 0.01 11 1200 10 6.43 5 4<10 1 0.28 10 0.6 367 4 0.01 9 980 12 6.86 8 4<10 1 0.24 10 0.69 367 2 0.01 11 1090 11 7.63 7 4<10 1 0.23 20 1.38 759 1 0.01 10 1080 13 5.62 9 3<10 <1 0.32 10 0.85 483 2 0.01 7 900 13 6.57 6 3<10 <1 0.17 10 1.83 1120 2 0.01 6 740 12 8.18 10 3<10 1 0.22 10 1.86 1050 2 0.01 6 600 11 8.69 13 2<10 1 0.19 10 0.77 432 1 0.01 6 720 13 7.17 13 2<10 1 0.11 10 0.82 726 1 <0.01 5 430 6 3.64 11 2<10 1 0.26 10 0.59 483 1 <0.01 10 1080 12 7.47 15 4<10 1 0.23 20 0.92 667 2 0.01 10 1360 11 4.66 15 4<10 1 0.2 20 1.35 1000 1 0.01 11 1300 11 4.32 12 6<10 1 0.26 10 1.04 1030 2 0.01 10 1170 13 4.5 12 6<10 1 0.22 10 1.59 1200 1 0.01 9 1210 11 4.56 12 5<10 1 0.27 10 2.05 1535 1 0.01 8 950 10 5.12 7 4<10 <1 0.22 20 0.69 486 2 0.01 11 1230 13 4.37 7 5<10 2 0.19 20 0.4 429 1 0.01 12 1240 13 5.01 18 7

2/24

For

per

sona

l use

onl

y

Page 22: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

0.0 1.0 1.0 752301.0 2.0 1.0 752312.0 3.0 1.0 752323.0 4.0 1.0 752334.0 5.0 1.0 752345.0 6.0 1.0 752356.0 7.0 1.0 752367.0 8.0 1.0 752378.0 9.0 1.0 752389.0 10.0 1.0 75239

10.0 11.0 1.0 7524011.0 12.0 1.0 7524112.0 13.0 1.0 7524213.0 14.0 1.0 7524314.0 15.0 1.0 7524415.0 16.0 1.0 7524516.0 16.5 0.5 7524616.5 17.0 0.5 7524717.0 18.0 1.0 7524818.0 19.0 1.0 7524919.0 20.0 1.0 7525120.0 21.0 1.0 7525221.0 22.0 1.0 7525322.0 23.0 1.0 7525423.0 24.0 1.0 7525524.0 25.0 1.0 7525625.0 25.5 0.5 7525725.5 26.0 0.5 7525826.0 27.0 1.0 7525927.0 27.3 0.3 7526027.3 28.0 0.7 7526328.0 28.5 0.5 7526428.5 29.0 0.5 7526529.0 29.5 0.5 7526629.5 30.0 0.5 7526730.0 31.0 1.0 7526831.0 32.0 1.0 7526932.0 32.7 0.7 7527032.7 33.0 0.3 7527133.0 34.0 1.0 7527234.0 35.0 1.0 7527435.0 36.0 1.0 75275

STOR- 3.11 Assay DataME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45

Sr Th Ti Tl U V W Zn Agppm ppm % ppm ppm ppm ppm ppm ppm15 <20 <0.01 <10 <10 42 <10 51 6.425 <20 <0.01 <10 <10 68 <10 78 2.110 <20 <0.01 <10 <10 79 <10 62 1.19 <20 <0.01 <10 <10 68 <10 83 0.9

15 <20 <0.01 <10 <10 26 <10 18 0.48 <20 <0.01 <10 <10 34 <10 22 0.87 <20 <0.01 <10 <10 48 <10 114 0.8

10 <20 <0.01 <10 <10 38 <10 126 0.89 <20 <0.01 <10 <10 41 <10 96 1.4

10 <20 <0.01 <10 <10 67 <10 97 1.610 <20 <0.01 <10 <10 43 <10 67 113 <20 <0.01 <10 <10 44 <10 109 0.835 <20 <0.01 <10 <10 75 <10 173 0.410 <20 <0.01 <10 <10 58 <10 142 0.652 <20 <0.01 <10 <10 44 <10 144 0.581 <20 <0.01 <10 <10 21 <10 60 0.3179 <20 <0.01 <10 <10 17 <10 48 0.3132 <20 <0.01 <10 <10 33 <10 84 0.535 <20 <0.01 <10 <10 38 <10 95 0.645 <20 <0.01 <10 <10 31 <10 99 0.6115 <20 <0.01 <10 <10 14 <10 41 1.126 <20 <0.01 <10 <10 12 <10 13 0.517 <20 <0.01 <10 <10 8 <10 18 0.882 <20 <0.01 <10 <10 18 <10 73 1.256 <20 <0.01 <10 <10 12 <10 56 1.264 <20 <0.01 <10 <10 15 <10 49 1.537 <20 <0.01 <10 <10 22 <10 56 2.242 <20 <0.01 <10 <10 15 <10 79 184 <20 <0.01 <10 <10 12 <10 84 0.945 <20 <0.01 <10 <10 14 <10 31 177 <20 <0.01 <10 <10 8 <10 36 187 <20 <0.01 <10 <10 10 <10 21 1.630 <20 <0.01 <10 <10 8 <10 36 2.217 <20 <0.01 <10 <10 7 <10 40 1.320 <20 <0.01 <10 <10 12 <10 49 0.938 <20 <0.01 <10 <10 18 <10 89 0.756 <20 <0.01 <10 <10 45 <10 106 0.441 <20 <0.01 <10 <10 41 <10 90 0.356 <20 <0.01 <10 <10 29 <10 89 0.570 <20 <0.01 <10 <10 20 <10 58 0.529 <20 <0.01 <10 <10 31 <10 94 0.915 <20 <0.01 <10 <10 42 <10 112 3.2

3/24

For

per

sona

l use

onl

y

Page 23: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %

STOR- 3.11 Assay Data

36.0 37.0 1.0 75276 0.024 0.4 0.66 34 <10 50 0.8 <2 1.45 <0.5 23 14 36 5.5537.0 38.0 1.0 75277 0.023 0.8 0.61 35 <10 60 0.7 <2 1.78 <0.5 20 11 39 4.6138.0 39.0 1.0 75278 0.034 1.4 0.47 120 <10 40 0.8 <2 0.36 <0.5 18 7 29 4.6939.0 39.5 0.5 75279 0.041 1.7 0.37 183 <10 20 0.6 <2 0.37 <0.5 18 5 27 7.5339.5 40.0 0.5 75280 0.017 0.4 0.48 51 <10 80 0.8 <2 0.54 <0.5 21 12 34 4.1340.0 40.3 0.3 75281 0.033 0.7 0.64 70 <10 60 0.8 <2 0.46 <0.5 24 16 34 4.9740.3 41.3 1.0 75282 0.107 0.9 0.76 68 <10 90 0.9 <2 0.47 <0.5 22 15 36 3.5941.3 41.6 0.3 75283 0.09 0.4 0.73 63 <10 100 0.9 <2 1.1 <0.5 19 18 30 2.6541.6 42.6 1.0 75284 0.046 0.4 0.79 55 <10 120 0.9 <2 1.35 <0.5 24 17 42 3.4342.6 43.2 0.6 75285 0.041 0.4 1.24 65 <10 30 1.2 <2 0.48 <0.5 23 23 38 4.8843.2 43.8 0.6 75286 0.05 0.7 0.79 145 <10 30 0.8 <2 0.28 <0.5 21 13 33 7.4343.8 44.2 0.4 75287 0.016 0.3 1.06 54 <10 30 0.9 <2 0.51 <0.5 27 17 38 4.0644.2 44.6 0.4 75288 0.015 0.4 0.79 92 <10 20 0.7 <2 0.37 <0.5 23 11 36 7.1944.6 45.5 0.9 75289 0.01 0.3 1.26 46 <10 20 1 <2 0.5 <0.5 26 26 34 6.3445.5 46.0 0.5 75292 0.008 0.3 2.34 24 <10 20 1.1 <2 0.58 <0.5 24 39 36 6.8146.0 47.0 1.0 75293 0.008 <0.2 1.76 15 <10 30 0.8 <2 0.66 <0.5 30 35 38 6.9747.0 48.0 1.0 75294 0.02 0.3 0.8 47 <10 100 0.8 <2 0.47 <0.5 22 23 40 3.9348.0 49.0 1.0 75295 0.011 0.4 0.66 39 <10 30 0.7 <2 0.47 <0.5 23 19 34 4.3349.0 50.0 1.0 75297 0.01 0.2 1.7 26 <10 10 1.1 2 0.76 <0.5 23 29 33 5.6150.0 51.0 1.0 75298 0.019 0.5 2.44 19 <10 20 1.1 <2 0.78 <0.5 25 36 45 6.3451.0 52.0 1.0 75299 0.104 0.5 1.05 21 <10 130 1.3 <2 0.61 <0.5 24 23 39 4.8652.0 52.6 0.6 75300 0.023 0.3 1.54 29 <10 50 1.2 <2 1.46 <0.5 32 23 34 7.3952.6 53.0 0.4 75301 0.011 0.3 0.57 25 <10 20 0.8 2 3.24 <0.5 19 14 39 4.3653.0 54.0 1.0 75302 0.016 0.6 0.62 25 <10 20 0.9 <2 3.76 <0.5 18 9 29 4.4754.0 55.0 1.0 75303 0.016 0.6 0.52 27 <10 60 0.7 <2 3.26 <0.5 20 11 42 4.9955.0 56.0 1.0 75304 0.016 0.4 0.65 26 <10 80 0.8 3 2.7 <0.5 22 14 38 5.3256.0 57.0 1.0 75305 0.018 0.8 0.47 28 <10 70 0.7 <2 3.15 <0.5 21 9 33 5.4857.0 57.3 0.3 75306 0.017 0.6 0.35 33 <10 70 0.6 2 5.28 <0.5 20 7 24 5.5157.3 58.0 0.7 75307 0.031 1.3 0.53 49 <10 60 0.8 <2 2.02 <0.5 18 8 34 5.1158.0 59.0 1.0 75308 0.044 1.9 0.56 93 <10 40 1 <2 0.31 <0.5 21 8 43 5.6659.0 60.0 1.0 75309 0.064 2.6 0.53 433 <10 10 1.4 <2 0.37 <0.5 18 7 33 8.160.0 61.0 1.0 75310 0.084 2.9 0.59 498 <10 30 1.1 <2 0.37 <0.5 20 6 32 7.9461.0 62.0 1.0 75311 0.392 2.6 0.56 149 <10 50 0.9 <2 0.35 <0.5 18 7 40 5.0562.0 63.0 1.0 75312 0.073 2 0.75 157 <10 50 1 2 0.33 <0.5 19 12 42 6.0863.0 64.0 1.0 75313 0.028 2 0.3 79 <10 40 0.6 2 2.42 <0.5 15 9 27 4.6864.0 65.0 1.0 75314 0.043 2.3 0.33 54 <10 50 0.5 <2 2.53 <0.5 15 10 32 4.465.0 66.0 1.0 75315 0.043 2.1 0.34 52 <10 40 0.7 <2 2.74 <0.5 16 12 31 4.2466.0 67.0 1.0 75316 0.072 2.1 0.36 53 <10 40 <0.5 <2 0.28 <0.5 19 10 39 3.7767.0 67.7 0.7 75318 0.024 0.7 0.73 47 <10 100 1 <2 0.51 <0.5 20 22 37 5.0167.7 68.6 0.9 75319 1.74 6.2 1.54 54 <10 60 1 <2 0.58 <0.5 22 34 43 6.0368.6 69.0 0.4 75320 3.34 5.6 2.09 51 <10 80 0.7 <2 0.46 <0.5 26 44 40 6.0469.0 70.0 1.0 75321 0.253 0.6 2.81 39 <10 20 0.9 2 0.51 <0.5 30 47 43 6.64

4/24

For

per

sona

l use

onl

y

Page 24: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

36.0 37.0 1.0 7527637.0 38.0 1.0 7527738.0 39.0 1.0 7527839.0 39.5 0.5 7527939.5 40.0 0.5 7528040.0 40.3 0.3 7528140.3 41.3 1.0 7528241.3 41.6 0.3 7528341.6 42.6 1.0 7528442.6 43.2 0.6 7528543.2 43.8 0.6 7528643.8 44.2 0.4 7528744.2 44.6 0.4 7528844.6 45.5 0.9 7528945.5 46.0 0.5 7529246.0 47.0 1.0 7529347.0 48.0 1.0 7529448.0 49.0 1.0 7529549.0 50.0 1.0 7529750.0 51.0 1.0 7529851.0 52.0 1.0 7529952.0 52.6 0.6 7530052.6 53.0 0.4 7530153.0 54.0 1.0 7530254.0 55.0 1.0 7530355.0 56.0 1.0 7530456.0 57.0 1.0 7530557.0 57.3 0.3 7530657.3 58.0 0.7 7530758.0 59.0 1.0 7530859.0 60.0 1.0 7530960.0 61.0 1.0 7531061.0 62.0 1.0 7531162.0 63.0 1.0 7531263.0 64.0 1.0 7531364.0 65.0 1.0 7531465.0 66.0 1.0 7531566.0 67.0 1.0 7531667.0 67.7 0.7 7531867.7 68.6 0.9 7531968.6 69.0 0.4 7532069.0 70.0 1.0 75321

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Sc

ppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm

<10 1 0.25 20 0.45 682 2 0.01 11 1170 14 5.92 8 7<10 1 0.22 20 0.58 796 1 0.01 10 1120 12 4.11 6 6<10 2 0.2 20 0.07 76 2 <0.01 10 1120 12 4.92 11 4<10 3 0.18 10 0.1 96 2 0.01 12 880 12 8.34 15 3<10 1 0.2 30 0.15 378 2 0.01 12 1260 12 3.88 7 6<10 1 0.23 20 0.17 465 2 <0.01 11 1230 11 4.18 5 7<10 2 0.16 30 0.15 672 1 0.01 9 1310 10 2.94 7 11<10 4 0.11 20 0.36 447 1 <0.01 10 1060 7 1.92 12 12<10 4 0.1 30 0.49 973 1 0.01 11 1480 10 2.34 16 17<10 3 0.11 30 0.76 1395 1 0.01 15 1250 8 2.38 9 15<10 5 0.05 20 0.02 54 1 <0.01 17 1040 13 8.01 19 14<10 3 0.08 30 0.1 354 1 <0.01 13 1380 13 3.78 8 18<10 2 0.11 30 0.05 90 1 0.01 13 1170 12 7.76 12 910 1 0.12 30 0.65 1865 1 0.01 13 1200 12 4.09 6 1010 <1 0.11 30 1.97 3260 1 0.02 14 1170 4 1.78 2 1110 <1 0.13 30 1.69 3540 1 0.02 17 1160 4 1.97 3 9

<10 3 0.13 30 0.55 558 1 0.01 14 1300 7 1.91 5 10<10 5 0.14 30 0.36 500 1 0.01 13 1350 7 2.46 5 1110 5 0.15 30 1.33 1660 1 0.01 15 1230 7 1.05 4 1310 1 0.14 20 1.79 2050 1 0.06 17 1170 5 1.26 2 14

<10 2 0.09 30 0.57 1760 1 0.01 12 1300 9 1.36 3 1610 1 0.16 30 1.39 2920 1 0.01 13 1090 13 2.81 3 10

<10 <1 0.21 20 1.32 1200 <1 0.01 8 1180 7 3.35 3 7<10 <1 0.22 20 1.45 1055 1 0.01 8 1070 10 4.04 3 6<10 <1 0.18 20 1.38 1275 <1 0.01 10 1180 10 4.07 3 8<10 <1 0.22 20 1.27 1900 1 0.01 10 1130 9 3.65 3 7<10 <1 0.17 20 1.35 2400 1 0.01 9 1030 8 3.67 3 7<10 <1 0.17 10 2.66 2860 <1 0.01 8 830 9 3.95 2 4<10 <1 0.25 20 0.87 833 1 0.01 12 1090 12 4.67 7 5<10 1 0.2 20 0.07 906 1 0.01 13 1160 13 4.43 23 6<10 10 0.12 10 0.05 66 2 0.01 14 1500 15 6.95 95 5<10 8 0.11 10 0.05 41 1 0.01 13 1430 14 7.27 79 4<10 2 0.13 20 0.05 36 1 0.01 11 1320 12 4.81 32 6<10 2 0.16 20 0.04 152 1 0.01 13 1360 11 5.3 56 7<10 <1 0.14 10 1.07 714 1 0.01 9 1050 9 4.15 23 4<10 <1 0.16 10 1.06 736 1 0.01 9 1010 11 4.08 12 4<10 <1 0.17 20 1.15 754 1 0.01 10 1000 10 3.84 16 5<10 1 0.18 20 0.04 43 1 <0.01 11 1050 13 3.83 8 5<10 <1 0.2 30 0.5 1780 1 0.01 11 1290 8 1.67 6 1110 <1 0.16 30 1.41 2120 1 0.01 13 1140 10 1.52 6 1110 <1 0.15 20 1.93 1570 1 0.04 13 1120 11 2.4 4 1210 <1 0.18 30 2.61 2430 1 0.02 16 1140 6 0.87 3 13

5/24

For

per

sona

l use

onl

y

Page 25: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

36.0 37.0 1.0 7527637.0 38.0 1.0 7527738.0 39.0 1.0 7527839.0 39.5 0.5 7527939.5 40.0 0.5 7528040.0 40.3 0.3 7528140.3 41.3 1.0 7528241.3 41.6 0.3 7528341.6 42.6 1.0 7528442.6 43.2 0.6 7528543.2 43.8 0.6 7528643.8 44.2 0.4 7528744.2 44.6 0.4 7528844.6 45.5 0.9 7528945.5 46.0 0.5 7529246.0 47.0 1.0 7529347.0 48.0 1.0 7529448.0 49.0 1.0 7529549.0 50.0 1.0 7529750.0 51.0 1.0 7529851.0 52.0 1.0 7529952.0 52.6 0.6 7530052.6 53.0 0.4 7530153.0 54.0 1.0 7530254.0 55.0 1.0 7530355.0 56.0 1.0 7530456.0 57.0 1.0 7530557.0 57.3 0.3 7530657.3 58.0 0.7 7530758.0 59.0 1.0 7530859.0 60.0 1.0 7530960.0 61.0 1.0 7531061.0 62.0 1.0 7531162.0 63.0 1.0 7531263.0 64.0 1.0 7531364.0 65.0 1.0 7531465.0 66.0 1.0 7531566.0 67.0 1.0 7531667.0 67.7 0.7 7531867.7 68.6 0.9 7531968.6 69.0 0.4 7532069.0 70.0 1.0 75321

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45Sr Th Ti Tl U V W Zn Ag

ppm ppm % ppm ppm ppm ppm ppm ppm

13 <20 <0.01 <10 <10 53 <10 95 0.721 <20 <0.01 <10 <10 43 <10 90 0.96 <20 <0.01 <10 <10 25 <10 69 1.46 <20 <0.01 10 <10 12 <10 40 1.79 <20 <0.01 <10 <10 47 <10 95 0.78 <20 <0.01 10 <10 58 <10 86 0.79 <20 <0.01 <10 <10 62 <10 101 0.7

15 <20 <0.01 <10 <10 67 <10 101 0.515 <20 <0.01 <10 <10 73 <10 98 0.513 <20 <0.01 <10 <10 92 <10 106 0.66 <20 <0.01 <10 <10 55 <10 48 0.88 <20 <0.01 <10 <10 78 <10 79 0.46 <20 <0.01 <10 <10 45 <10 62 0.59 <20 <0.01 <10 <10 92 <10 110 0.4

12 <20 <0.01 <10 <10 132 <10 143 0.310 <20 <0.01 <10 <10 103 <10 153 0.210 <20 <0.01 <10 <10 90 <10 128 0.48 <20 <0.01 <10 <10 79 <10 102 0.4

15 <20 <0.01 <10 <10 101 <10 127 0.229 <20 0.01 <10 <10 118 <10 122 0.511 <20 <0.01 <10 <10 92 <10 104 0.544 <20 <0.01 <10 <10 92 <10 115 0.499 <20 <0.01 <10 <10 53 <10 72 0.587 <20 <0.01 <10 <10 37 <10 71 0.771 <20 <0.01 <10 <10 43 <10 79 0.666 <20 <0.01 <10 <10 50 <10 99 0.760 <20 <0.01 <10 <10 35 <10 135 0.9133 <20 <0.01 <10 <10 21 <10 121 0.736 <20 <0.01 <10 <10 28 <10 82 1.37 <20 <0.01 <10 <10 30 <10 92 1.87 <20 <0.01 10 <10 25 <10 46 2.66 <20 <0.01 10 <10 22 <10 24 2.86 <20 <0.01 <10 <10 30 <10 65 2.37 <20 <0.01 <10 <10 38 <10 70 1.8

35 <20 <0.01 <10 <10 37 <10 70 1.929 <20 <0.01 <10 <10 37 <10 72 2.332 <20 <0.01 <10 <10 46 <10 56 2.26 <20 <0.01 <10 <10 42 <10 73 2.1

10 <20 <0.01 <10 <10 85 <10 104 0.712 <20 <0.01 <10 <10 107 <10 128 5.615 <20 <0.01 <10 <10 146 <10 99 5.713 <20 <0.01 <10 <10 138 <10 141 0.5

6/24

For

per

sona

l use

onl

y

Page 26: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %

STOR- 3.11 Assay Data

70.0 71.0 1.0 75322 0.172 1.2 1.69 36 <10 10 0.7 <2 1.18 <0.5 30 35 35 6.1871.0 72.0 1.0 75323 0.075 1.1 0.44 41 <10 10 0.7 <2 0.36 <0.5 25 22 36 4.1672.0 73.0 1.0 75326 0.105 5.1 1.42 55 <10 50 0.9 <2 0.53 <0.5 23 33 42 5.4973.0 74.0 1.0 75327 0.325 1 0.66 78 <10 10 <0.5 <2 0.35 <0.5 29 13 56 3.174.0 75.0 1.0 75328 0.064 0.7 0.52 84 <10 10 <0.5 <2 0.32 <0.5 25 14 44 3.2975.0 76.0 1.0 75329 0.016 0.3 0.74 86 <10 10 0.7 <2 0.4 <0.5 26 23 47 3.5876.0 77.0 1.0 75330 0.023 0.5 0.64 86 <10 10 <0.5 <2 0.31 <0.5 25 16 51 2.8777.0 78.0 1.0 75331 0.025 0.8 0.47 82 <10 10 <0.5 <2 0.31 <0.5 24 16 50 3.1178.0 79.0 1.0 75332 0.172 2.1 0.65 97 <10 10 <0.5 <2 0.36 <0.5 27 18 54 3.9979.0 80.0 1.0 75333 0.993 15.4 0.62 490 <10 <10 <0.5 <2 0.42 <0.5 25 7 36 5.0480.0 81.0 1.0 75334 0.223 5.8 0.85 242 <10 <10 0.5 <2 0.43 <0.5 26 11 38 4.4181.0 82.0 1.0 75335 0.06 3.3 0.73 106 <10 <10 0.5 <2 0.42 <0.5 24 8 43 4.1982.0 83.0 1.0 75336 0.198 2.4 0.51 68 <10 10 <0.5 <2 0.28 <0.5 23 13 36 3.2583.0 84.0 1.0 75337 0.854 2.2 0.6 46 <10 10 0.6 <2 0.31 <0.5 21 23 43 4.1184.0 85.0 1.0 75338 1.5 7.9 0.44 56 <10 10 0.7 <2 0.33 <0.5 21 22 45 4.2685.0 86.0 1.0 75339 0.043 1.3 0.59 40 <10 20 0.6 <2 0.51 <0.5 22 25 36 5.0786.0 87.0 1.0 75341 1.36 15.3 0.33 78 <10 10 <0.5 <2 0.28 <0.5 21 16 35 3.4387.0 88.0 1.0 75342 1.235 14.8 0.62 295 <10 10 0.5 <2 0.49 <0.5 28 13 32 3.5488.0 88.3 0.3 75343 0.073 1.4 0.42 97 <10 10 <0.5 <2 0.29 <0.5 23 19 36 2.588.3 88.7 0.4 75344 0.178 1.7 0.55 129 <10 20 <0.5 <2 0.28 <0.5 24 22 42 2.9188.7 89.0 0.3 75345 1.46 12.1 0.38 77 <10 10 <0.5 <2 0.26 <0.5 23 16 42 3.2689.0 89.6 0.6 75346 3.08 9.3 0.29 86 <10 10 <0.5 <2 0.21 <0.5 17 8 24 3.3989.6 90.0 0.4 75347 0.508 18 0.42 85 <10 10 <0.5 <2 0.27 <0.5 20 14 30 3.1890.0 90.6 0.6 75348 0.185 3.6 0.37 64 <10 10 <0.5 <2 0.26 <0.5 20 13 31 3.4890.6 91.0 0.4 75349 0.04 1.5 0.61 70 <10 10 1.2 <2 0.31 <0.5 25 18 35 5.0591.0 92.0 1.0 75350 0.032 1.6 0.6 56 <10 10 0.9 <2 0.32 <0.5 23 18 46 4.392.0 93.0 1.0 75351 0.051 2.3 0.56 60 <10 10 0.9 <2 0.32 <0.5 25 15 31 4.2293.0 94.0 1.0 75352 0.903 3 0.38 109 <10 10 <0.5 <2 0.28 <0.5 21 11 33 3.1894.0 95.0 1.0 75353 0.219 1.8 0.49 354 <10 10 <0.5 <2 0.35 <0.5 28 13 37 3.1295.0 96.0 1.0 75354 0.391 1.3 0.52 72 <10 10 <0.5 <2 0.31 <0.5 23 19 38 2.2296.0 97.0 1.0 75355 0.147 1.4 0.4 52 <10 10 0.6 <2 0.33 <0.5 22 17 35 4.5197.0 98.0 1.0 75356 0.103 2.1 0.44 42 <10 10 0.7 <2 0.35 <0.5 20 17 31 3.8598.0 99.0 1.0 75359 0.197 2.2 0.34 97 <10 10 0.5 <2 0.35 <0.5 21 18 30 4.2599.0 99.3 0.3 75360 0.131 2.3 0.39 89 <10 20 0.5 <2 0.32 <0.5 20 22 30 4.5799.3 100.0 0.7 75361 0.506 3.4 0.43 92 <10 20 0.6 <2 0.41 <0.5 19 22 34 4.46100.0 101.0 1.0 75362 0.958 5 0.39 69 <10 10 0.7 <2 0.4 <0.5 19 19 40 4.8101.0 102.0 1.0 75364 0.321 1.4 0.43 76 <10 20 0.7 <2 0.52 <0.5 19 20 38 5.05102.0 103.0 1.0 75365 0.043 1.3 0.32 48 <10 10 0.5 <2 0.96 <0.5 21 16 34 4.06103.0 103.3 0.3 75366 0.035 1.5 0.34 49 <10 10 0.5 <2 0.29 <0.5 17 9 28 2.99103.3 103.8 0.5 75367 0.281 2.3 0.27 72 <10 10 <0.5 <2 0.23 <0.5 18 11 29 3.65103.8 104.5 0.7 75368 0.272 3 0.16 73 <10 10 <0.5 <2 0.23 <0.5 19 12 29 3.94104.5 105.5 1.0 75369 0.121 3 0.23 87 <10 10 <0.5 <2 0.23 <0.5 19 14 32 4.08

7/24

For

per

sona

l use

onl

y

Page 27: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

70.0 71.0 1.0 7532271.0 72.0 1.0 7532372.0 73.0 1.0 7532673.0 74.0 1.0 7532774.0 75.0 1.0 7532875.0 76.0 1.0 7532976.0 77.0 1.0 7533077.0 78.0 1.0 7533178.0 79.0 1.0 7533279.0 80.0 1.0 7533380.0 81.0 1.0 7533481.0 82.0 1.0 7533582.0 83.0 1.0 7533683.0 84.0 1.0 7533784.0 85.0 1.0 7533885.0 86.0 1.0 7533986.0 87.0 1.0 7534187.0 88.0 1.0 7534288.0 88.3 0.3 7534388.3 88.7 0.4 7534488.7 89.0 0.3 7534589.0 89.6 0.6 7534689.6 90.0 0.4 7534790.0 90.6 0.6 7534890.6 91.0 0.4 7534991.0 92.0 1.0 7535092.0 93.0 1.0 7535193.0 94.0 1.0 7535294.0 95.0 1.0 7535395.0 96.0 1.0 7535496.0 97.0 1.0 7535597.0 98.0 1.0 7535698.0 99.0 1.0 7535999.0 99.3 0.3 7536099.3 100.0 0.7 75361100.0 101.0 1.0 75362101.0 102.0 1.0 75364102.0 103.0 1.0 75365103.0 103.3 0.3 75366103.3 103.8 0.5 75367103.8 104.5 0.7 75368104.5 105.5 1.0 75369

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Sc

ppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm

10 1 0.13 20 1.68 2200 <1 0.01 16 1040 7 2.01 4 9<10 1 0.17 30 0.16 1315 1 0.01 11 1280 8 2.45 5 1010 <1 0.15 30 1.31 1945 <1 0.01 11 1090 10 1.46 5 10

<10 1 0.14 30 0.02 22 1 <0.01 13 1480 12 3.3 6 9<10 1 0.17 30 0.03 101 1 0.01 11 1290 10 3.36 5 9<10 2 0.11 30 0.16 641 1 <0.01 11 1310 8 2.18 4 14<10 1 0.18 30 0.03 24 1 <0.01 9 1260 9 3.01 5 11<10 1 0.16 30 0.02 28 1 <0.01 10 1320 11 3.22 5 8<10 1 0.19 20 0.03 22 1 <0.01 14 1520 15 4.38 9 7<10 13 0.08 20 0.03 36 1 <0.01 14 1740 12 5.46 70 4<10 5 0.15 20 0.03 26 <1 0.01 13 1820 10 4.85 33 5<10 1 0.1 20 0.03 28 1 <0.01 13 1760 10 4.56 19 7<10 1 0.17 20 0.03 30 1 0.01 12 1180 8 3.44 7 8<10 1 0.19 20 0.27 1580 1 0.01 8 1130 6 1.97 4 11<10 1 0.16 20 0.35 1565 <1 0.01 7 1110 6 1.68 5 9<10 1 0.22 20 0.5 1750 <1 0.01 8 1160 5 2.03 3 10<10 1 0.15 20 0.02 46 <1 0.01 11 1200 10 3.62 7 7<10 8 0.14 20 0.03 51 1 0.01 15 2130 10 3.73 32 8<10 1 0.17 20 0.02 28 <1 0.01 10 1240 8 2.58 7 9<10 2 0.22 20 0.03 67 <1 <0.01 9 1190 9 2.87 6 11<10 1 0.15 20 0.02 34 1 0.01 10 1090 10 3.48 8 8<10 <1 0.15 20 0.02 49 <1 0.01 8 890 8 3.36 6 4<10 1 0.18 20 0.08 189 <1 0.01 8 1150 6 3.01 6 7<10 1 0.15 20 0.2 515 <1 0.01 9 1100 8 2.78 5 7<10 1 0.16 20 0.32 1515 <1 0.01 15 1190 10 3.37 4 9<10 1 0.18 20 0.24 977 1 0.01 13 1420 12 3.34 4 9<10 1 0.18 20 0.22 763 1 0.01 13 1390 9 3.38 4 8<10 2 0.16 20 0.05 160 1 0.01 9 1160 10 3.11 7 6<10 9 0.18 20 0.03 52 1 0.01 18 1520 10 3.2 32 7<10 1 0.2 30 0.03 36 1 0.01 8 1370 8 2.29 7 11<10 <1 0.16 20 0.32 1225 1 0.01 8 1220 8 2.35 3 10<10 <1 0.17 20 0.32 1165 1 0.01 8 1240 8 1.74 2 10<10 <1 0.15 20 0.37 911 1 <0.01 8 1100 9 2.28 4 9<10 1 0.18 20 0.37 1300 1 <0.01 9 1100 10 2.33 5 9<10 1 0.17 20 0.38 1140 1 <0.01 9 1260 9 2.24 4 10<10 1 0.17 20 0.51 1375 1 <0.01 8 1100 9 2.13 4 9<10 1 0.18 20 0.52 1645 1 0.01 10 1190 8 2.6 4 9<10 1 0.15 20 0.44 762 1 <0.01 10 1150 12 3.46 5 7<10 <1 0.15 20 0.1 284 1 <0.01 7 1180 6 2.75 4 5<10 <1 0.15 20 0.02 39 1 <0.01 9 970 8 3.8 4 5<10 1 0.1 20 0.02 22 1 <0.01 9 1000 11 4.28 6 4<10 1 0.16 20 0.02 38 2 <0.01 10 1000 10 4.28 10 5

8/24

For

per

sona

l use

onl

y

Page 28: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

70.0 71.0 1.0 7532271.0 72.0 1.0 7532372.0 73.0 1.0 7532673.0 74.0 1.0 7532774.0 75.0 1.0 7532875.0 76.0 1.0 7532976.0 77.0 1.0 7533077.0 78.0 1.0 7533178.0 79.0 1.0 7533279.0 80.0 1.0 7533380.0 81.0 1.0 7533481.0 82.0 1.0 7533582.0 83.0 1.0 7533683.0 84.0 1.0 7533784.0 85.0 1.0 7533885.0 86.0 1.0 7533986.0 87.0 1.0 7534187.0 88.0 1.0 7534288.0 88.3 0.3 7534388.3 88.7 0.4 7534488.7 89.0 0.3 7534589.0 89.6 0.6 7534689.6 90.0 0.4 7534790.0 90.6 0.6 7534890.6 91.0 0.4 7534991.0 92.0 1.0 7535092.0 93.0 1.0 7535193.0 94.0 1.0 7535294.0 95.0 1.0 7535395.0 96.0 1.0 7535496.0 97.0 1.0 7535597.0 98.0 1.0 7535698.0 99.0 1.0 7535999.0 99.3 0.3 7536099.3 100.0 0.7 75361100.0 101.0 1.0 75362101.0 102.0 1.0 75364102.0 103.0 1.0 75365103.0 103.3 0.3 75366103.3 103.8 0.5 75367103.8 104.5 0.7 75368104.5 105.5 1.0 75369

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45Sr Th Ti Tl U V W Zn Ag

ppm ppm % ppm ppm ppm ppm ppm ppm

39 <20 <0.01 <10 <10 110 <10 92 1.49 <20 <0.01 <10 <10 85 <10 94 1.3

13 <20 <0.01 <10 <10 104 <10 121 1.58 <20 <0.01 <10 <10 42 <10 34 18 <20 <0.01 <10 <10 56 <10 38 19 <20 <0.01 <10 <10 97 <10 102 0.48 <20 <0.01 <10 <10 59 <10 80 0.48 <20 <0.01 <10 <10 49 <10 81 0.99 <20 <0.01 <10 <10 54 <10 99 2.37 <20 <0.01 30 <10 22 <10 53 15.88 <20 <0.01 10 <10 39 <10 93 5.67 <20 <0.01 <10 <10 34 <10 90 3.28 <20 <0.01 <10 <10 49 <10 105 2.48 <20 <0.01 <10 <10 81 <10 90 29 <20 <0.01 <10 <10 76 <10 80 5.2

11 <20 <0.01 <10 <10 91 <10 93 1.58 <20 <0.01 <10 <10 48 <10 100 13.99 <20 <0.01 20 <10 45 <10 102 13.88 <20 <0.01 <10 <10 63 <10 62 1.58 <20 <0.01 <10 <10 68 <10 62 1.77 <20 <0.01 <10 <10 57 <10 86 135 <20 <0.01 <10 <10 26 <10 77 10.67 <20 <0.01 <10 <10 62 <10 64 17.27 <20 <0.01 <10 <10 60 <10 66 3.87 <20 <0.01 <10 <10 110 <10 106 1.67 <20 <0.01 <10 <10 98 <10 98 1.78 <20 <0.01 <10 <10 90 <10 103 2.57 <20 <0.01 <10 <10 49 <10 114 2.89 <20 <0.01 20 <10 49 <10 92 29 <20 <0.01 <10 <10 76 <10 83 1.39 <20 <0.01 <10 <10 71 <10 88 1.69 <20 <0.01 <10 <10 75 <10 96 1.6

10 <20 <0.01 <10 <10 73 <10 65 2.610 <20 <0.01 <10 <10 76 <10 76 2.512 <20 <0.01 <10 <10 79 <10 89 3.611 <20 <0.01 <10 <10 71 <10 88 2.712 <20 <0.01 <10 <10 65 <10 153 1.616 <20 <0.01 <10 <10 54 <10 83 1.58 <20 <0.01 <10 <10 38 <10 80 1.68 <20 <0.01 <10 <10 31 <10 53 2.46 <20 <0.01 <10 <10 37 <10 59 3.18 <20 <0.01 <10 <10 35 <10 58 3

9/24

For

per

sona

l use

onl

y

Page 29: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %

STOR- 3.11 Assay Data

105.5 106.0 0.5 75370 0.113 2.2 0.56 345 <10 <10 0.5 <2 0.56 <0.5 28 12 43 4.71106.0 107.0 1.0 75371 0.357 1.5 0.77 484 <10 <10 0.5 <2 0.34 <0.5 26 12 38 6.05107.0 108.0 1.0 75372 0.311 1.8 0.65 431 <10 <10 <0.5 <2 0.32 <0.5 23 12 45 4.8108.0 109.0 1.0 75373 0.713 4.2 0.83 191 <10 10 0.5 <2 0.33 <0.5 20 19 54 1.14109.0 110.0 1.0 75374 0.699 1.9 0.67 118 <10 10 0.5 <2 0.33 <0.5 27 24 47 1.05110.0 111.0 1.0 75375 0.303 0.5 0.75 77 <10 10 0.7 <2 0.36 <0.5 20 23 52 1.31111.0 112.0 1.0 75376 0.038 0.2 2.56 22 <10 30 2 <2 0.46 <0.5 26 46 36 6.49112.0 113.0 1.0 75377 0.182 0.8 1.19 123 <10 10 0.8 <2 0.4 <0.5 16 22 48 0.98113.0 114.0 1.0 75378 0.578 6.3 0.71 240 <10 <10 0.5 <2 0.54 <0.5 28 18 64 2.37114.0 115.0 1.0 75379 22.1 199 0.61 698 <10 <10 <0.5 <2 0.73 1.9 45 8 150 3.77115.0 116.0 1.0 75380 36.8 365 0.44 1510 <10 <10 <0.5 <2 0.31 1.5 48 7 157 4.82116.0 116.5 0.5 75381 33.4 334 0.52 152 <10 <10 <0.5 <2 0.34 1.1 16 8 134 2.51116.5 117.0 0.5 75382 0.474 5.6 0.71 151 <10 <10 0.5 <2 0.57 <0.5 20 7 25 2.38117.0 118.0 1.0 75384 0.829 3.5 0.55 385 <10 <10 <0.5 <2 0.67 <0.5 31 9 25 3.16118.0 119.0 1.0 75385 1.745 7.3 0.64 1185 <10 10 0.5 <2 0.56 <0.5 59 6 28 5.24119.0 120.0 1.0 75386 1.26 7.7 0.69 1315 <10 <10 0.7 <2 0.9 <0.5 52 7 23 5.11120.0 121.0 1.0 75387 0.337 2.3 0.59 391 <10 10 <0.5 <2 0.51 <0.5 28 6 24 3.1121.0 122.0 1.0 75388 0.111 1.7 0.48 106 <10 20 <0.5 <2 0.38 <0.5 18 8 25 2.13122.0 123.0 1.0 75389 0.507 3.1 0.42 337 <10 10 <0.5 <2 0.29 <0.5 24 8 21 2.99123.0 124.0 1.0 75390 0.798 6.6 0.56 277 <10 10 <0.5 <2 0.47 <0.5 23 7 29 3.43124.0 125.0 1.0 75391 0.211 2.3 0.54 207 <10 20 <0.5 <2 0.34 <0.5 22 11 23 3.25125.0 126.0 1.0 75392 0.164 2.6 0.52 230 <10 10 <0.5 <2 0.53 <0.5 21 11 27 3.85126.0 127.0 1.0 75393 0.444 4 0.9 671 <10 <10 <0.5 <2 0.71 <0.5 26 9 27 5.13127.0 128.0 1.0 75394 0.221 3.9 0.62 278 <10 10 <0.5 <2 0.46 <0.5 20 9 25 3.7128.0 129.0 1.0 75395 0.228 3 0.86 213 <10 10 0.6 <2 0.5 <0.5 22 6 39 3.63129.0 130.0 1.0 75396 0.1 1.7 0.73 212 <10 10 0.5 <2 0.4 <0.5 21 6 37 3.95130.0 131.0 1.0 75399 2.16 11.1 0.81 480 <10 10 0.6 <2 0.6 <0.5 30 7 48 5.11131.0 132.0 1.0 75400 8.41 33.5 0.7 233 <10 20 0.5 <2 0.41 0.5 26 16 71 2.01132.0 133.0 1.0 75401 0.262 0.5 0.59 59 <10 20 0.8 <2 0.43 <0.5 19 13 30 3.53133.0 134.0 1.0 75402 0.289 1.9 0.41 28 <10 20 0.5 <2 0.33 <0.5 20 17 36 2.26134.0 134.3 0.3 75403 0.068 0.6 1.18 97 <10 30 0.5 <2 0.31 <0.5 20 25 34 2.56134.3 134.6 0.3 75404 1.035 3.1 0.85 79 <10 30 <0.5 <2 0.3 <0.5 20 17 45 2.24134.6 135.0 0.4 75405 2.53 2.7 0.52 370 <10 20 <0.5 <2 0.28 <0.5 21 10 30 2.15135.0 135.4 0.4 75407 0.391 1.7 1.93 64 <10 20 0.6 <2 0.3 <0.5 18 32 40 3.46135.4 136.0 0.6 75408 1.935 3.1 0.48 263 <10 20 <0.5 <2 0.28 <0.5 18 13 40 2.26136.0 137.0 1.0 75409 0.112 1.5 0.39 57 <10 30 0.8 <2 0.67 <0.5 26 15 34 6.83137.0 137.7 0.7 75410 0.14 1.8 0.34 94 <10 40 0.5 <2 2.36 <0.5 15 11 23 4.29137.7 138.0 0.3 75411 0.335 8.5 0.35 116 <10 70 0.6 <2 1.71 <0.5 13 10 20 4.86138.0 138.5 0.5 75412 0.26 1.6 0.35 59 <10 80 <0.5 <2 1.36 <0.5 15 11 24 3.9138.5 139.0 0.5 75413 0.422 1.8 0.28 62 <10 110 <0.5 <2 1.12 <0.5 13 9 18 3.16139.0 140.0 1.0 75414 0.605 28.8 0.34 84 <10 60 <0.5 <2 2.5 <0.5 12 12 22 4.17140.0 141.0 1.0 75415 0.088 1.5 0.64 76 <10 50 0.6 <2 1.54 <0.5 18 16 26 5.37

10/24

For

per

sona

l use

onl

y

Page 30: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

105.5 106.0 0.5 75370106.0 107.0 1.0 75371107.0 108.0 1.0 75372108.0 109.0 1.0 75373109.0 110.0 1.0 75374110.0 111.0 1.0 75375111.0 112.0 1.0 75376112.0 113.0 1.0 75377113.0 114.0 1.0 75378114.0 115.0 1.0 75379115.0 116.0 1.0 75380116.0 116.5 0.5 75381116.5 117.0 0.5 75382117.0 118.0 1.0 75384118.0 119.0 1.0 75385119.0 120.0 1.0 75386120.0 121.0 1.0 75387121.0 122.0 1.0 75388122.0 123.0 1.0 75389123.0 124.0 1.0 75390124.0 125.0 1.0 75391125.0 126.0 1.0 75392126.0 127.0 1.0 75393127.0 128.0 1.0 75394128.0 129.0 1.0 75395129.0 130.0 1.0 75396130.0 131.0 1.0 75399131.0 132.0 1.0 75400132.0 133.0 1.0 75401133.0 134.0 1.0 75402134.0 134.3 0.3 75403134.3 134.6 0.3 75404134.6 135.0 0.4 75405135.0 135.4 0.4 75407135.4 136.0 0.6 75408136.0 137.0 1.0 75409137.0 137.7 0.7 75410137.7 138.0 0.3 75411138.0 138.5 0.5 75412138.5 139.0 0.5 75413139.0 140.0 1.0 75414140.0 141.0 1.0 75415

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Sc

ppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm

<10 5 0.1 30 0.02 22 1 <0.01 16 2400 14 5.24 49 5<10 7 0.12 30 0.03 31 1 <0.01 17 1390 16 6.94 54 5<10 6 0.08 30 0.03 20 1 <0.01 13 1330 15 5.31 46 9<10 2 0.11 30 0.03 35 <1 <0.01 9 1360 11 1.07 11 14<10 3 0.13 30 0.03 19 <1 <0.01 15 1390 11 1.12 9 13<10 2 0.13 30 0.12 162 <1 <0.01 7 1430 7 0.96 5 1710 <1 0.12 20 1.89 2260 <1 0.01 31 1240 5 1.18 8 14

<10 4 0.14 30 0.06 50 1 <0.01 4 1560 8 0.83 10 18<10 4 0.13 30 0.03 43 2 0.01 15 2400 11 2.47 26 11<10 20 0.07 20 0.02 40 5 <0.01 28 2150 15 4.24 162 4<10 32 0.05 10 0.02 84 3 <0.01 36 900 144 4.87 205 2<10 4 0.09 20 0.04 112 4 <0.01 11 1450 65 2.37 115 5<10 3 0.12 20 0.03 36 1 <0.01 9 2660 9 2.5 19 5<10 12 0.1 20 0.02 46 2 0.01 21 2730 12 3.24 40 4<10 44 0.12 20 0.02 38 5 0.01 54 2500 18 5.9 121 4<10 44 0.13 20 0.03 46 5 0.01 51 4010 14 5.84 132 4<10 12 0.14 20 0.02 26 2 0.01 19 2270 11 3.32 42 4<10 2 0.14 20 0.02 39 1 0.01 9 1660 9 2.09 12 5<10 3 0.17 20 0.03 29 2 <0.01 12 1260 13 3.12 26 5<10 7 0.12 20 0.03 37 2 0.01 14 2040 14 3.64 46 4<10 3 0.16 20 0.09 320 1 0.01 12 1430 11 2.99 16 7<10 3 0.05 20 0.02 35 1 0.01 11 2320 14 4.12 43 6<10 8 0.05 20 0.04 220 3 0.01 13 3070 14 5.65 101 6<10 4 0.03 20 0.02 38 1 <0.01 10 1750 13 3.94 33 7<10 4 0.1 20 0.03 41 2 0.01 15 1780 13 3.92 19 6<10 7 0.12 20 0.03 49 1 0.01 15 1540 14 4.09 23 4<10 12 0.12 30 0.03 34 3 0.01 27 2510 27 5.53 106 5<10 15 0.18 30 0.03 50 3 <0.01 18 1680 25 1.87 56 8<10 2 0.16 30 0.2 927 1 <0.01 10 1390 8 1.64 8 9<10 1 0.16 30 0.08 288 1 <0.01 9 1340 7 1.69 8 10<10 1 0.23 30 0.7 186 1 0.01 12 1320 6 1.42 4 10<10 1 0.18 30 0.38 129 1 0.01 9 1200 9 1.47 8 9<10 1 0.18 30 0.03 33 1 <0.01 10 1180 9 2.15 8 610 1 0.17 30 1.77 348 <1 0.01 12 1260 7 0.96 14 10

<10 1 0.16 20 0.09 107 2 <0.01 12 1150 13 2.03 16 8<10 1 0.18 20 0.5 2670 1 0.01 16 1180 8 2.35 388 9<10 1 0.16 10 1.35 776 1 0.01 8 840 12 2.64 5 5<10 1 0.16 10 1.41 1000 2 0.01 7 700 11 2.32 7 5<10 1 0.15 20 1.13 777 1 0.01 6 860 10 1.93 5 6<10 1 0.13 20 0.9 497 1 0.01 5 690 9 1.89 4 5<10 1 0.14 10 2.01 734 2 0.01 6 840 16 2.46 7 5<10 <1 0.17 20 1.82 1465 1 0.01 11 1090 10 2.39 6 7

11/24

For

per

sona

l use

onl

y

Page 31: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

105.5 106.0 0.5 75370106.0 107.0 1.0 75371107.0 108.0 1.0 75372108.0 109.0 1.0 75373109.0 110.0 1.0 75374110.0 111.0 1.0 75375111.0 112.0 1.0 75376112.0 113.0 1.0 75377113.0 114.0 1.0 75378114.0 115.0 1.0 75379115.0 116.0 1.0 75380116.0 116.5 0.5 75381116.5 117.0 0.5 75382117.0 118.0 1.0 75384118.0 119.0 1.0 75385119.0 120.0 1.0 75386120.0 121.0 1.0 75387121.0 122.0 1.0 75388122.0 123.0 1.0 75389123.0 124.0 1.0 75390124.0 125.0 1.0 75391125.0 126.0 1.0 75392126.0 127.0 1.0 75393127.0 128.0 1.0 75394128.0 129.0 1.0 75395129.0 130.0 1.0 75396130.0 131.0 1.0 75399131.0 132.0 1.0 75400132.0 133.0 1.0 75401133.0 134.0 1.0 75402134.0 134.3 0.3 75403134.3 134.6 0.3 75404134.6 135.0 0.4 75405135.0 135.4 0.4 75407135.4 136.0 0.6 75408136.0 137.0 1.0 75409137.0 137.7 0.7 75410137.7 138.0 0.3 75411138.0 138.5 0.5 75412138.5 139.0 0.5 75413139.0 140.0 1.0 75414140.0 141.0 1.0 75415

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45Sr Th Ti Tl U V W Zn Ag

ppm ppm % ppm ppm ppm ppm ppm ppm

9 <20 <0.01 10 <10 36 <10 79 2.87 <20 <0.01 10 <10 35 <10 31 1.87 <20 <0.01 10 <10 39 <10 18 1.78 <20 <0.01 <10 <10 63 <10 35 4.58 <20 <0.01 <10 <10 80 <10 105 1.99 <20 <0.01 <10 <10 90 <10 49 1

14 <20 0.01 <10 <10 124 <10 148 0.29 <20 <0.01 <10 <10 83 <10 43 0.6

10 <20 <0.01 10 <10 56 <10 93 9.211 <20 <0.01 20 <10 27 <10 293 >1006 <20 <0.01 50 <10 17 <10 286 >1007 <20 <0.01 <10 <10 36 <10 252 >100

10 <20 <0.01 10 <10 41 <10 98 4.111 <20 <0.01 20 <10 29 <10 79 3.810 <20 <0.01 50 <10 24 <10 50 7.613 <20 <0.01 60 <10 27 <10 55 7.59 <20 <0.01 20 <10 27 <10 69 2.38 <20 <0.01 10 <10 34 <10 83 1.47 <20 <0.01 10 <10 32 <10 68 3.39 <20 <0.01 10 <10 30 <10 92 6.57 <20 <0.01 10 <10 52 <10 91 2.4

10 <20 <0.01 10 <10 40 <10 53 2.511 <20 <0.01 30 <10 32 <10 54 46 <20 <0.01 10 <10 40 <10 58 3.87 <20 <0.01 <10 <10 33 10 60 2.87 <20 <0.01 10 <10 28 <10 65 1.5

11 <20 <0.01 20 <10 36 <10 164 9.19 <20 <0.01 20 <10 57 <10 254 31.89 <20 <0.01 <10 <10 64 <10 76 0.58 <20 <0.01 <10 <10 76 <10 77 2.49 <20 <0.01 <10 <10 100 <10 93 0.68 <20 <0.01 <10 <10 75 <10 58 38 <20 <0.01 <10 <10 49 <10 58 3.88 <20 <0.01 <10 <10 115 <10 86 1.58 <20 <0.01 <10 <10 57 <10 44 3.3

13 <20 <0.01 <10 <10 72 <10 89 239 <20 <0.01 <10 <10 48 <10 52 1.933 <20 <0.01 <10 <10 46 <10 66 5.132 <20 <0.01 <10 <10 49 <10 59 1.728 <20 <0.01 <10 <10 36 <10 47 261 <20 <0.01 <10 <10 43 <10 75 29.637 <20 <0.01 <10 <10 64 <10 86 1.5

12/24

For

per

sona

l use

onl

y

Page 32: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %

STOR- 3.11 Assay Data

141.0 142.0 1.0 75416 0.245 1.8 0.57 126 <10 20 0.5 <2 0.38 <0.5 21 15 33 4.59142.0 142.4 0.4 75417 0.858 8.2 0.35 263 <10 30 0.6 <2 0.34 <0.5 17 14 22 5.92142.4 143.0 0.6 75418 1.175 12.2 0.39 148 <10 30 0.6 <2 0.33 <0.5 15 12 20 4.58143.0 143.4 0.4 75419 0.155 2.2 0.52 95 <10 20 0.7 <2 0.41 <0.5 18 16 25 5.63143.4 144.2 0.8 75420 1.545 8.6 0.54 133 <10 20 <0.5 <2 0.41 <0.5 17 9 27 3.66144.2 144.5 0.3 75421 1.37 5.2 0.56 134 <10 20 <0.5 <2 0.47 <0.5 16 7 27 2.65144.5 145.0 0.5 75422 0.302 2.5 0.51 136 <10 <10 <0.5 <2 0.38 <0.5 21 7 43 3.34145.0 146.0 1.0 75423 2.73 9.4 0.34 118 <10 20 <0.5 <2 0.35 <0.5 17 12 34 4.67146.0 147.0 1.0 75424 25.2 71.6 0.33 96 <10 30 <0.5 <2 0.57 <0.5 12 13 39 3.41147.0 148.0 1.0 75425 5.05 89.5 0.6 84 <10 30 <0.5 <2 0.78 <0.5 16 17 56 4.1148.0 149.0 1.0 75427 0.21 2.6 0.81 84 <10 20 0.5 <2 0.88 <0.5 20 22 51 5.08149.0 149.8 0.8 75428 3.85 33.5 0.39 388 <10 20 <0.5 <2 0.55 <0.5 17 14 35 4.96149.8 150.5 0.7 75431 7.83 30.1 0.64 235 <10 30 <0.5 <2 0.59 <0.5 17 17 31 4.98150.5 151.4 0.9 75432 0.714 4 0.45 236 <10 30 <0.5 <2 0.31 <0.5 19 11 30 4.01151.4 151.8 0.4 75433 2.09 10.2 0.38 378 <10 20 <0.5 <2 0.35 <0.5 18 12 29 4.36151.8 152.5 0.7 75434 5.16 17.3 0.37 390 <10 30 0.5 <2 0.38 <0.5 21 18 33 5.07152.5 153.0 0.5 75435 10.4 35.6 0.4 297 <10 30 <0.5 <2 0.31 <0.5 16 12 36 4.33153.0 153.8 0.8 75436 0.587 5.6 0.46 564 <10 20 <0.5 <2 0.48 <0.5 21 9 40 3.96153.8 154.3 0.5 75437 0.279 2.8 0.65 427 <10 20 <0.5 <2 0.49 <0.5 24 10 29 3.08

13/24

For

per

sona

l use

onl

y

Page 33: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

141.0 142.0 1.0 75416142.0 142.4 0.4 75417142.4 143.0 0.6 75418143.0 143.4 0.4 75419143.4 144.2 0.8 75420144.2 144.5 0.3 75421144.5 145.0 0.5 75422145.0 146.0 1.0 75423146.0 147.0 1.0 75424147.0 148.0 1.0 75425148.0 149.0 1.0 75427149.0 149.8 0.8 75428149.8 150.5 0.7 75431150.5 151.4 0.9 75432151.4 151.8 0.4 75433151.8 152.5 0.7 75434152.5 153.0 0.5 75435153.0 153.8 0.8 75436153.8 154.3 0.5 75437

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Sc

ppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm

<10 1 0.16 20 0.54 1100 2 <0.01 12 1200 13 2.67 6 6<10 1 0.18 20 0.26 1855 4 <0.01 11 960 10 2.43 9 5<10 1 0.19 20 0.33 1140 3 <0.01 8 940 12 2.35 10 5<10 <1 0.21 20 0.35 1930 3 <0.01 10 1200 12 2.22 7 6<10 1 0.14 20 0.2 873 3 <0.01 11 1460 12 2.27 38 6<10 3 0.09 20 0.04 302 10 <0.01 15 1760 5 3.5 >10000 2<10 1 0.1 20 0.11 708 5 <0.01 14 1500 14 2.59 71 5<10 1 0.12 20 0.22 1035 3 <0.01 10 1060 13 2.77 69 6<10 1 0.14 10 0.34 614 5 <0.01 7 750 10 1.88 26 4<10 1 0.14 20 0.87 524 4 0.01 10 1130 8 2.31 24 6<10 1 0.16 20 1.33 823 3 0.01 12 1230 8 2.54 10 8<10 1 0.15 20 0.54 351 5 0.01 10 1080 12 4.15 13 4<10 <1 0.18 20 0.92 678 5 0.01 11 1100 11 3.24 11 7<10 1 0.17 20 0.17 484 2 0.01 12 1210 11 2.75 11 7<10 <1 0.18 20 0.18 663 2 0.01 11 1290 10 3.22 9 5<10 1 0.16 30 0.22 1190 3 0.01 12 1320 11 3.08 9 8<10 1 0.18 20 0.18 881 4 0.01 11 1060 9 3.01 14 5<10 4 0.11 20 0.1 410 3 0.01 15 2010 11 3.32 34 4<10 7 0.17 20 0.02 33 8 0.01 14 2420 12 3.1 44 6

14/24

For

per

sona

l use

onl

y

Page 34: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

141.0 142.0 1.0 75416142.0 142.4 0.4 75417142.4 143.0 0.6 75418143.0 143.4 0.4 75419143.4 144.2 0.8 75420144.2 144.5 0.3 75421144.5 145.0 0.5 75422145.0 146.0 1.0 75423146.0 147.0 1.0 75424147.0 148.0 1.0 75425148.0 149.0 1.0 75427149.0 149.8 0.8 75428149.8 150.5 0.7 75431150.5 151.4 0.9 75432151.4 151.8 0.4 75433151.8 152.5 0.7 75434152.5 153.0 0.5 75435153.0 153.8 0.8 75436153.8 154.3 0.5 75437

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45Sr Th Ti Tl U V W Zn Ag

ppm ppm % ppm ppm ppm ppm ppm ppm

9 <20 <0.01 <10 <10 66 <10 94 1.78 <20 <0.01 <10 <10 49 <10 72 8.88 <20 <0.01 <10 <10 43 <10 69 11.8

10 <20 <0.01 <10 <10 59 <10 76 2.38 <20 <0.01 <10 <10 41 <10 73 7.27 <20 <0.01 10 <10 17 <10 120 5.56 <20 <0.01 <10 <10 32 <10 76 2.48 <20 <0.01 <10 <10 47 <10 65 8.9

20 <20 <0.01 <10 <10 38 <10 54 71.616 <20 <0.01 <10 <10 64 <10 74 88.917 <20 <0.01 <10 <10 89 <10 72 2.513 <20 <0.01 <10 <10 44 <10 62 24.815 <20 <0.01 <10 <10 66 <10 69 26.98 <20 <0.01 <10 <10 53 <10 69 3.78 <20 <0.01 <10 <10 44 <10 75 10.99 <20 <0.01 <10 <10 76 <10 77 17.39 <20 <0.01 <10 <10 45 <10 91 35.19 <20 <0.01 10 <10 35 <10 93 5.6

10 <20 <0.01 10 <10 37 <10 85 2.9

15/24

For

per

sona

l use

onl

y

Page 35: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %

STOR- 3.11 Assay Data

154.3 155.0 0.7 75438 0.79 11.3 0.26 467 <10 20 <0.5 <2 0.18 <0.5 17 8 28 5.14155.0 156.0 1.0 75439 10.05 20.6 0.37 368 <10 20 <0.5 <2 0.18 <0.5 17 7 26 3.19156.0 156.6 0.6 75440 45.5 79.9 0.49 >10000 <10 20 <0.5 <2 0.06 <0.5 111 6 49 13.6156.6 157.0 0.4 75441 0.28 2.7 0.45 315 <10 20 <0.5 <2 0.17 <0.5 20 7 26 3.19157.0 158.0 1.0 75442 0.189 2.6 0.36 255 <10 20 <0.5 <2 0.03 <0.5 22 9 30 3.04158.0 159.0 1.0 75443 0.204 2.2 0.43 452 <10 30 1.4 <2 0.16 <0.5 20 13 32 6.58159.0 160.0 1.0 75444 0.832 4.1 0.37 174 <10 20 0.6 <2 0.36 <0.5 17 13 23 5.09160.0 160.3 0.3 75445 11.3 61.5 0.13 53 <10 20 <0.5 <2 0.11 <0.5 5 7 48 1.45160.3 161.0 0.7 75446 0.181 3.2 0.38 150 <10 30 0.5 <2 0.7 <0.5 18 11 24 5.82161.0 162.0 1.0 75447 0.6 2.9 0.46 183 <10 30 <0.5 <2 0.65 <0.5 17 11 26 4.72162.0 163.0 1.0 75448 0.259 2 0.39 135 <10 20 0.5 <2 1.42 <0.5 17 10 32 6.03163.0 164.0 1.0 75449 0.183 1.9 0.48 149 <10 20 0.5 <2 0.94 <0.5 18 14 27 5.04164.0 165.0 1.0 75450 0.243 1.8 0.53 272 <10 20 0.6 <2 0.21 <0.5 15 14 21 3.38165.0 166.0 1.0 75451 0.165 2.9 0.88 259 <10 30 0.8 <2 0.28 <0.5 24 24 39 3.25166.0 167.0 1.0 75453 13.45 32.7 0.37 211 <10 20 <0.5 <2 0.12 <0.5 10 15 25 2.1167.0 168.0 1.0 75454 27.8 41.9 0.23 141 <10 20 <0.5 <2 0.15 <0.5 6 15 35 1.58168.0 169.0 1.0 75455 34.5 40.8 0.33 141 <10 30 <0.5 <2 0.13 <0.5 10 14 42 1.83169.0 169.5 0.5 75456 0.489 6 0.43 274 <10 30 <0.5 <2 0.2 <0.5 21 13 36 2.77169.5 170.0 0.5 75457 12.9 26.4 0.25 152 <10 30 <0.5 <2 0.06 <0.5 10 13 43 1.84170.0 171.0 1.0 75458 1.405 7.1 0.26 788 <10 20 <0.5 <2 0.07 <0.5 17 9 31 5.08171.0 172.0 1.0 75459 5.81 20.4 0.22 999 <10 20 <0.5 <2 0.06 <0.5 15 8 42 5.82172.0 173.0 1.0 75460 0.723 42.2 0.38 291 <10 30 <0.5 <2 0.07 <0.5 19 6 54 3.6173.0 174.0 1.0 75461 0.284 2.9 0.88 201 <10 40 <0.5 <2 0.16 <0.5 19 20 39 3.05174.0 175.0 1.0 75464 0.278 5.7 0.24 438 <10 50 <0.5 <2 0.04 <0.5 13 13 23 4.58175.0 176.0 1.0 75465 0.368 3.2 0.27 348 <10 50 <0.5 <2 0.05 <0.5 17 7 27 4.66176.0 177.0 1.0 75466 0.23 6.9 0.58 257 <10 40 0.6 <2 0.14 <0.5 21 10 39 3.73177.0 177.5 0.5 75467 0.22 3.4 0.66 255 <10 50 <0.5 <2 0.23 <0.5 21 13 33 3177.5 178.2 0.7 75468 0.428 7 0.51 490 <10 40 0.8 <2 0.07 <0.5 18 8 35 4.77179.0 179.5 0.5 75469 2.3 47.4 0.02 69 <10 10 <0.5 <2 0.07 <0.5 2 7 13 0.73180.8 182.0 1.2 75470 2.48 50.7 0.76 161 <10 80 <0.5 <2 0.06 <0.5 8 18 34 2.44182.0 184.0 2.0 75471 1 13 0.21 103 <10 20 <0.5 <2 0.08 <0.5 8 5 18 1.8184.0 185.0 1.0 75472 4 40.2 0.18 249 <10 40 <0.5 <2 0.97 <0.5 7 10 19 2.35185.0 186.0 1.0 75473 3.73 57.6 0.1 197 <10 20 <0.5 <2 0.16 <0.5 3 9 14 1.62186.0 187.0 1.0 75475 3.67 29.9 0.12 270 <10 20 <0.5 <2 0.12 <0.5 3 14 15 2.13187.0 188.0 1.0 75476 13.45 42.9 0.05 91 <10 30 <0.5 <2 0.09 <0.5 2 15 44 1.17188.0 189.0 1.0 75477 3.06 20.2 0.26 160 <10 20 <0.5 <2 0.05 <0.5 249 13 5340 3.98189.0 190.0 1.0 75478 0.656 3.8 0.47 489 <10 30 0.5 <2 0.06 <0.5 6 4 14 1.45190.0 191.0 1.0 75479 0.361 3.7 0.42 317 <10 30 0.6 <2 0.02 <0.5 13 10 67 4.79191.0 192.0 1.0 75480 0.195 1.9 0.5 236 <10 30 <0.5 <2 0.12 <0.5 15 5 37 2.94192.0 192.7 0.7 75481 0.173 1.6 0.42 167 <10 30 <0.5 2 0.09 <0.5 13 7 40 3.07192.7 193.0 0.3 75482 0.288 3.3 0.42 186 <10 30 <0.5 <2 0.03 <0.5 13 4 30 1.58193.0 194.0 1.0 75483 0.741 2 0.5 242 <10 30 0.6 <2 0.12 <0.5 14 11 37 3.82

16/24

For

per

sona

l use

onl

y

Page 36: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

154.3 155.0 0.7 75438155.0 156.0 1.0 75439156.0 156.6 0.6 75440156.6 157.0 0.4 75441157.0 158.0 1.0 75442158.0 159.0 1.0 75443159.0 160.0 1.0 75444160.0 160.3 0.3 75445160.3 161.0 0.7 75446161.0 162.0 1.0 75447162.0 163.0 1.0 75448163.0 164.0 1.0 75449164.0 165.0 1.0 75450165.0 166.0 1.0 75451166.0 167.0 1.0 75453167.0 168.0 1.0 75454168.0 169.0 1.0 75455169.0 169.5 0.5 75456169.5 170.0 0.5 75457170.0 171.0 1.0 75458171.0 172.0 1.0 75459172.0 173.0 1.0 75460173.0 174.0 1.0 75461174.0 175.0 1.0 75464175.0 176.0 1.0 75465176.0 177.0 1.0 75466177.0 177.5 0.5 75467177.5 178.2 0.7 75468179.0 179.5 0.5 75469180.8 182.0 1.2 75470182.0 184.0 2.0 75471184.0 185.0 1.0 75472185.0 186.0 1.0 75473186.0 187.0 1.0 75475187.0 188.0 1.0 75476188.0 189.0 1.0 75477189.0 190.0 1.0 75478190.0 191.0 1.0 75479191.0 192.0 1.0 75480192.0 192.7 0.7 75481192.7 193.0 0.3 75482193.0 194.0 1.0 75483

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Sc

ppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm

<10 2 0.17 10 0.02 79 5 <0.01 11 890 12 4.87 25 2<10 2 0.14 20 0.02 36 9 0.01 9 990 10 3.19 36 4<10 90 0.09 10 0.02 73 19 0.01 86 460 10 >10.0 702 2<10 2 0.18 20 0.02 30 4 0.01 10 940 11 3.29 23 4<10 2 0.17 10 0.02 48 2 0.01 12 580 9 2.74 23 8<10 1 0.19 20 0.03 64 2 0.01 10 1610 16 3.5 63 7<10 1 0.17 20 0.46 1095 3 0.01 9 1210 9 2.75 5 6<10 1 0.06 10 0.11 179 28 0.01 4 290 14 0.71 32 1<10 1 0.19 20 1 978 3 0.01 11 1140 11 3.8 4 5<10 <1 0.21 20 1.22 781 2 0.01 10 1120 8 2.94 5 5<10 1 0.16 20 2.3 1815 2 0.01 12 1070 13 3.24 4 6<10 1 0.15 20 1.63 1100 2 0.01 12 1090 8 3.27 5 6<10 1 0.13 20 0.58 211 1 0.01 11 1010 7 2.9 4 4<10 1 0.15 20 0.52 183 2 0.01 18 1640 10 2.75 6 10<10 <1 0.09 10 0.24 98 110 0.01 7 610 15 1.48 24 4<10 1 0.07 10 0.21 114 68 0.01 4 300 14 0.95 31 2<10 1 0.09 10 0.19 84 6 0.01 6 500 11 1.39 25 4<10 1 0.16 20 0.11 42 3 0.01 13 930 11 2.7 5 7<10 1 0.12 10 0.03 67 5 <0.01 6 320 8 1.18 31 3<10 1 0.13 10 0.02 44 7 <0.01 10 470 13 4.9 11 2<10 1 0.12 10 0.03 46 6 <0.01 9 370 14 6.06 17 2<10 1 0.21 10 0.05 31 6 <0.01 10 540 10 3.73 22 3<10 1 0.19 20 0.6 90 2 <0.01 11 930 10 2.84 5 7<10 2 0.19 10 0.02 62 6 0.01 8 470 13 4.04 13 2<10 1 0.17 10 0.02 36 3 0.01 10 300 11 4.73 5 3<10 2 0.2 20 0.14 44 3 0.01 12 1110 13 3.22 14 5<10 1 0.21 20 0.14 42 1 0.01 13 1110 12 2.98 7 6<10 6 0.21 20 0.05 39 6 0.01 12 920 12 3.52 40 5<10 1 0.01 <10 0.03 60 50 <0.01 1 90 16 0.27 22 <1<10 1 0.12 10 0.44 129 6 0.01 6 360 10 1.12 19 4<10 1 0.09 <10 0.02 47 3 <0.01 4 270 7 1.52 5 2<10 3 0.07 10 0.41 326 6 0.01 4 250 7 1.59 28 1<10 3 0.04 <10 0.06 119 8 <0.01 2 130 10 1.05 33 1<10 2 0.03 <10 0.03 90 7 <0.01 3 470 5 1.06 32 1<10 1 0.01 <10 0.04 126 3 <0.01 20 80 6 0.34 30 <1<10 1 0.13 10 0.03 947 6 0.01 2190 180 66 1.5 735 2<10 1 0.23 10 0.03 39 6 0.01 3 290 13 0.67 98 4<10 2 0.2 10 0.03 232 13 0.01 25 270 11 1.76 76 4<10 2 0.19 10 0.11 846 7 0.01 6 510 11 1.73 33 6<10 1 0.18 10 0.09 708 6 0.01 7 420 10 1.37 21 6<10 1 0.16 10 0.03 40 7 0.01 4 340 10 1.29 39 6<10 2 0.19 10 0.11 927 4 0.01 6 620 9 1.41 48 6

17/24

For

per

sona

l use

onl

y

Page 37: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

154.3 155.0 0.7 75438155.0 156.0 1.0 75439156.0 156.6 0.6 75440156.6 157.0 0.4 75441157.0 158.0 1.0 75442158.0 159.0 1.0 75443159.0 160.0 1.0 75444160.0 160.3 0.3 75445160.3 161.0 0.7 75446161.0 162.0 1.0 75447162.0 163.0 1.0 75448163.0 164.0 1.0 75449164.0 165.0 1.0 75450165.0 166.0 1.0 75451166.0 167.0 1.0 75453167.0 168.0 1.0 75454168.0 169.0 1.0 75455169.0 169.5 0.5 75456169.5 170.0 0.5 75457170.0 171.0 1.0 75458171.0 172.0 1.0 75459172.0 173.0 1.0 75460173.0 174.0 1.0 75461174.0 175.0 1.0 75464175.0 176.0 1.0 75465176.0 177.0 1.0 75466177.0 177.5 0.5 75467177.5 178.2 0.7 75468179.0 179.5 0.5 75469180.8 182.0 1.2 75470182.0 184.0 2.0 75471184.0 185.0 1.0 75472185.0 186.0 1.0 75473186.0 187.0 1.0 75475187.0 188.0 1.0 75476188.0 189.0 1.0 75477189.0 190.0 1.0 75478190.0 191.0 1.0 75479191.0 192.0 1.0 75480192.0 192.7 0.7 75481192.7 193.0 0.3 75482193.0 194.0 1.0 75483

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45Sr Th Ti Tl U V W Zn Ag

ppm ppm % ppm ppm ppm ppm ppm ppm

6 <20 <0.01 <10 <10 16 <10 55 11.26 <20 <0.01 10 <10 21 <10 70 21.62 <20 <0.01 380 <10 12 <10 51 72.98 <20 <0.01 10 <10 20 <10 62 2.64 <20 <0.01 10 <10 21 <10 31 2.36 <20 <0.01 10 <10 55 <10 91 2.1

10 <20 <0.01 <10 <10 60 <10 82 3.56 <20 <0.01 <10 <10 11 <10 51 56.1

18 <20 <0.01 <10 <10 55 <10 77 3.219 <20 <0.01 <10 <10 54 <10 83 3.235 <20 <0.01 <10 <10 55 <10 142 2.323 <20 <0.01 <10 <10 61 <10 111 2.18 <20 <0.01 <10 <10 66 <10 60 2.48 <20 <0.01 <10 <10 104 <10 65 2.96 <20 <0.01 <10 <10 37 <10 41 27.57 <20 <0.01 <10 <10 19 <10 37 44.17 <20 <0.01 <10 <10 25 <10 36 38.68 <20 <0.01 <10 <10 46 <10 63 5.56 <20 <0.01 <10 <10 19 <10 31 26.35 <20 <0.01 <10 <10 16 <10 30 6.74 <20 <0.01 <10 <10 14 <10 25 15.77 <20 <0.01 <10 <10 22 <10 57 43.39 <20 <0.01 <10 <10 56 <10 43 2.98 <20 <0.01 <10 <10 16 <10 30 4.7

11 <20 <0.01 <10 <10 13 <10 22 3.310 <20 <0.01 <10 <10 40 <10 60 6.611 <20 <0.01 <10 <10 44 <10 64 3.510 <20 <0.01 <10 <10 33 <10 59 6.84 <20 <0.01 <10 <10 1 <10 19 46.9

10 <20 <0.01 <10 <10 33 <10 44 44.46 <20 <0.01 <10 <10 10 <10 40 12.815 <20 <0.01 <10 <10 8 <10 20 34.54 <20 <0.01 <10 <10 4 <10 16 55.78 <20 <0.01 <10 <10 8 <10 15 315 <20 <0.01 <10 <10 3 60 15 48.13 <20 <0.01 <10 <10 10 540 205 6.93 <20 <0.01 <10 <10 16 <10 13 3.42 <20 <0.01 10 <10 22 60 21 4.13 <20 <0.01 <10 <10 25 <10 53 2.13 <20 <0.01 <10 <10 20 <10 44 1.82 <20 <0.01 <10 <10 15 <10 20 3.64 <20 <0.01 10 <10 38 <10 40 2.3

18/24

For

per

sona

l use

onl

y

Page 38: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %

STOR- 3.11 Assay Data

194.0 195.0 1.0 75484 0.286 3.5 0.49 214 <10 20 0.6 <2 0.14 <0.5 12 6 20 3.39195.0 196.0 1.0 75485 0.245 3 0.63 115 <10 30 0.5 <2 0.28 <0.5 13 7 25 3.42196.0 197.0 1.0 75486 5.98 10.7 0.66 717 <10 30 0.6 <2 0.1 <0.5 14 5 42 3.45197.0 198.0 1.0 75487 0.48 8.7 0.64 198 <10 30 0.5 <2 0.1 <0.5 13 6 32 1.84198.0 198.6 0.6 75488 2.28 72.7 0.53 3850 <10 20 <0.5 <2 0.02 <0.5 11 4 115 7.71198.6 199.0 0.4 75489 1.39 33.1 0.4 2200 <10 20 <0.5 2 0.1 <0.5 11 5 36 6.02199.0 200.0 1.0 75490 0.375 9.3 0.59 541 <10 30 0.7 <2 0.25 <0.5 15 7 27 4.18200.0 201.0 1.0 75491 1.09 5.5 0.53 581 <10 20 0.5 <2 0.08 <0.5 14 7 41 3.3201.0 202.0 1.0 75492 2.49 8.8 0.43 243 <10 20 <0.5 <2 0.09 <0.5 11 8 41 2.89202.0 203.0 1.0 75495 271 170 0.2 4290 <10 20 <0.5 <2 0.07 <0.5 4 10 59 11203.0 204.0 1.0 75496 0.324 2.9 0.43 587 <10 30 0.6 <2 0.27 <0.5 15 3 35 4.39204.0 205.0 1.0 75498 0.365 0.2 0.61 82 <10 40 1.1 <2 2.71 <0.5 16 1 47 5.81205.0 206.0 1.0 75499 0.047 <0.2 0.58 80 <10 30 1.1 <2 3.69 <0.5 12 <1 66 4.6206.0 207.0 1.0 75500 0.049 <0.2 0.58 58 <10 40 0.9 <2 3.15 <0.5 12 1 45 3.91207.0 208.0 1.0 75501 0.031 <0.2 0.59 70 <10 40 0.9 <2 3.96 <0.5 10 <1 29 3.75208.0 209.0 1.0 75502 0.039 0.2 0.51 79 <10 40 0.9 2 2.6 <0.5 15 2 63 4.06209.0 210.0 1.0 75503 0.023 0.2 0.43 72 <10 <10 0.9 <2 3.98 <0.5 21 5 55 5.45210.0 211.0 1.0 75504 0.052 0.4 0.36 99 <10 <10 0.8 <2 1.26 <0.5 18 2 32 3.43211.0 212.0 1.0 75505 0.071 0.2 0.38 117 <10 10 0.7 <2 3.33 <0.5 11 1 32 4.06212.0 213.0 1.0 75506 0.04 <0.2 0.37 117 <10 10 0.7 <2 1.43 <0.5 12 1 32 4.03213.0 214.0 1.0 75507 0.051 <0.2 0.4 108 <10 10 0.8 <2 1.97 <0.5 12 1 26 3.43214.0 215.0 1.0 75508 0.01 <0.2 0.45 82 <10 10 0.7 <2 4.21 <0.5 9 1 37 3215.0 216.0 1.0 75509 0.012 <0.2 0.51 81 <10 10 0.8 <2 4.65 <0.5 9 <1 31 3.53216.0 217.0 1.0 75510 0.028 <0.2 0.43 82 <10 10 0.7 <2 4.22 <0.5 9 1 38 3.62217.0 218.0 1.0 75511 0.039 0.3 0.48 92 <10 10 0.8 <2 3.47 <0.5 11 <1 36 3.23218.0 219.0 1.0 75512 0.044 0.7 0.41 70 <10 10 0.8 <2 4.77 <0.5 8 1 31 3.98219.0 220.0 1.0 75513 0.059 1 0.55 87 <10 20 1.2 <2 1.98 <0.5 10 1 34 3.92220.0 221.0 1.0 75514 0.07 1.2 0.42 100 <10 10 1 <2 2.47 <0.5 8 1 27 3.49221.0 222.0 1.0 75515 0.088 2.3 0.48 80 <10 10 1.1 <2 3.52 <0.5 7 1 19 3.27222.0 223.0 1.0 75516 0.061 1 0.45 66 <10 10 1.2 <2 3.28 <0.5 8 <1 19 2.66223.0 224.0 1.0 75517 0.046 0.8 0.42 89 <10 10 1 <2 2.92 <0.5 7 1 13 2.71224.0 225.0 1.0 75519 0.629 2.4 0.36 221 <10 10 0.8 <2 1.16 <0.5 5 2 6 2.29225.0 226.0 1.0 75520 0.996 4.9 0.33 465 <10 <10 0.8 <2 0.22 <0.5 6 2 7 3.27226.0 227.0 1.0 75521 0.126 0.8 0.42 134 <10 10 0.9 <2 0.25 <0.5 7 3 8 2.71227.0 228.0 1.0 75522 0.412 2 0.27 219 <10 <10 0.9 <2 0.25 <0.5 8 2 16 3.36228.0 229.0 1.0 75523 0.771 3 0.27 406 <10 <10 0.7 <2 0.45 <0.5 6 2 7 2.19229.0 230.0 1.0 75524 0.417 2.3 0.28 414 <10 <10 0.8 <2 4.47 <0.5 6 2 6 4.37230.0 231.0 1.0 75527 0.159 0.6 0.39 122 <10 10 0.8 <2 5.72 <0.5 7 2 6 3.52231.0 232.0 1.0 75528 0.263 0.9 0.29 113 <10 10 0.7 <2 8.8 <0.5 3 1 4 3.49232.0 233.0 1.0 75529 0.108 0.3 0.54 69 <10 20 0.8 <2 2.71 <0.5 13 2 11 3.52233.0 234.0 1.0 75530 0.14 0.6 0.51 234 <10 20 1 <2 2.58 <0.5 11 1 9 4.2234.0 235.0 1.0 75531 0.221 1.6 0.32 239 <10 10 1 <2 0.21 <0.5 14 <1 12 3.15

19/24

For

per

sona

l use

onl

y

Page 39: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

194.0 195.0 1.0 75484195.0 196.0 1.0 75485196.0 197.0 1.0 75486197.0 198.0 1.0 75487198.0 198.6 0.6 75488198.6 199.0 0.4 75489199.0 200.0 1.0 75490200.0 201.0 1.0 75491201.0 202.0 1.0 75492202.0 203.0 1.0 75495203.0 204.0 1.0 75496204.0 205.0 1.0 75498205.0 206.0 1.0 75499206.0 207.0 1.0 75500207.0 208.0 1.0 75501208.0 209.0 1.0 75502209.0 210.0 1.0 75503210.0 211.0 1.0 75504211.0 212.0 1.0 75505212.0 213.0 1.0 75506213.0 214.0 1.0 75507214.0 215.0 1.0 75508215.0 216.0 1.0 75509216.0 217.0 1.0 75510217.0 218.0 1.0 75511218.0 219.0 1.0 75512219.0 220.0 1.0 75513220.0 221.0 1.0 75514221.0 222.0 1.0 75515222.0 223.0 1.0 75516223.0 224.0 1.0 75517224.0 225.0 1.0 75519225.0 226.0 1.0 75520226.0 227.0 1.0 75521227.0 228.0 1.0 75522228.0 229.0 1.0 75523229.0 230.0 1.0 75524230.0 231.0 1.0 75527231.0 232.0 1.0 75528232.0 233.0 1.0 75529233.0 234.0 1.0 75530234.0 235.0 1.0 75531

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Sc

ppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm

<10 1 0.22 10 0.14 975 4 <0.01 4 610 10 1.66 61 5<10 1 0.26 10 0.18 1330 4 0.01 4 940 10 1.34 20 5<10 3 0.26 10 0.06 316 5 0.01 5 840 12 2.8 145 6<10 1 0.27 10 0.05 93 4 <0.01 5 740 10 1.44 35 4<10 33 0.25 10 0.04 37 13 0.01 3 160 17 8.64 312 4<10 10 0.18 10 0.06 162 7 <0.01 2 480 6 6.23 168 4<10 3 0.28 10 0.19 737 4 0.01 4 840 12 2.35 42 6<10 8 0.23 10 0.06 225 6 <0.01 5 530 11 2.69 53 5<10 3 0.18 10 0.06 529 5 <0.01 5 420 9 2.18 21 4<10 16 0.07 <10 0.01 97 38 0.01 1 390 10 >10.0 359 1<10 3 0.23 10 0.11 559 5 0.01 4 900 11 3.92 41 3<10 1 0.3 10 0.91 3260 <1 0.02 2 810 18 2.89 7 4<10 1 0.31 10 1.25 1305 <1 0.02 <1 880 12 3.7 6 3<10 <1 0.32 10 1.08 969 <1 0.02 <1 930 6 3.21 6 3<10 1 0.32 10 1.48 1030 <1 0.01 1 770 11 3.01 11 3<10 1 0.27 10 0.94 699 1 0.01 10 790 24 3.88 15 5<10 <1 0.23 10 1.46 986 1 0.01 10 690 17 5.14 16 7<10 <1 0.21 10 0.38 281 2 0.01 6 830 18 3.37 11 3<10 <1 0.22 10 1.03 935 1 0.01 2 720 12 2.95 8 3<10 <1 0.24 10 0.54 1090 1 0.01 2 830 10 2.13 7 3<10 <1 0.25 10 0.48 541 1 0.01 2 840 13 2.7 8 3<10 <1 0.33 10 0.29 952 <1 0.01 1 840 9 1.5 5 4<10 <1 0.35 20 0.45 1135 1 0.01 1 790 9 1.67 6 4<10 <1 0.29 10 0.77 857 1 0.01 1 810 7 2.7 5 3<10 <1 0.29 10 0.34 734 1 0.01 1 810 10 2.58 7 2<10 <1 0.25 10 1.53 1140 1 0.01 1 680 12 2.79 13 2<10 1 0.33 10 0.58 1045 2 0.01 <1 790 13 3.02 10 2<10 <1 0.27 10 0.74 1075 4 0.01 1 770 9 2.64 15 2<10 <1 0.28 10 1.41 1425 32 0.01 <1 630 13 2.32 13 2<10 <1 0.26 10 1.29 1255 6 0.01 1 720 10 2.04 9 2<10 <1 0.26 10 1.04 1400 5 0.01 1 670 9 1.85 10 2<10 2 0.21 10 0.4 945 99 0.01 2 440 21 1.73 39 2<10 5 0.19 20 0.1 1490 185 0.01 3 510 33 2.06 80 3<10 2 0.24 10 0.16 2320 17 0.01 2 450 18 0.99 16 3<10 4 0.16 20 0.18 3320 33 0.01 2 380 24 0.97 89 4<10 2 0.16 10 0.15 1320 22 <0.01 3 660 17 1.06 53 3<10 1 0.19 10 1.77 4710 13 0.01 1 540 11 1.03 24 4<10 1 0.24 10 2.23 4440 8 0.01 2 440 7 0.5 12 3<10 1 0.17 10 3.86 3450 10 0.01 <1 300 10 1.05 12 2<10 <1 0.3 10 1.02 1540 1 0.02 1 660 8 0.89 6 4<10 <1 0.3 10 0.89 1355 <1 0.01 <1 720 14 2.49 17 2<10 1 0.21 10 0.05 64 5 0.01 <1 550 17 3.21 22 1

20/24

For

per

sona

l use

onl

y

Page 40: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

194.0 195.0 1.0 75484195.0 196.0 1.0 75485196.0 197.0 1.0 75486197.0 198.0 1.0 75487198.0 198.6 0.6 75488198.6 199.0 0.4 75489199.0 200.0 1.0 75490200.0 201.0 1.0 75491201.0 202.0 1.0 75492202.0 203.0 1.0 75495203.0 204.0 1.0 75496204.0 205.0 1.0 75498205.0 206.0 1.0 75499206.0 207.0 1.0 75500207.0 208.0 1.0 75501208.0 209.0 1.0 75502209.0 210.0 1.0 75503210.0 211.0 1.0 75504211.0 212.0 1.0 75505212.0 213.0 1.0 75506213.0 214.0 1.0 75507214.0 215.0 1.0 75508215.0 216.0 1.0 75509216.0 217.0 1.0 75510217.0 218.0 1.0 75511218.0 219.0 1.0 75512219.0 220.0 1.0 75513220.0 221.0 1.0 75514221.0 222.0 1.0 75515222.0 223.0 1.0 75516223.0 224.0 1.0 75517224.0 225.0 1.0 75519225.0 226.0 1.0 75520226.0 227.0 1.0 75521227.0 228.0 1.0 75522228.0 229.0 1.0 75523229.0 230.0 1.0 75524230.0 231.0 1.0 75527231.0 232.0 1.0 75528232.0 233.0 1.0 75529233.0 234.0 1.0 75530234.0 235.0 1.0 75531

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45Sr Th Ti Tl U V W Zn Ag

ppm ppm % ppm ppm ppm ppm ppm ppm

3 <20 <0.01 <10 <10 31 <10 37 3.85 <20 <0.01 <10 <10 37 <10 41 3.53 <20 <0.01 10 <10 23 <10 60 9.94 <20 <0.01 10 <10 31 <10 44 92 <20 <0.01 90 <10 14 <10 20 70.63 <20 <0.01 40 <10 23 <10 28 31.15 <20 <0.01 10 <10 39 <10 57 9.73 <20 <0.01 20 <10 29 <10 56 6.43 <20 <0.01 10 <10 25 <10 36 9.82 <20 <0.01 70 <10 6 <10 9 >1005 <20 <0.01 10 <10 12 <10 66 2.7

18 <20 <0.01 <10 <10 14 <10 120 0.624 <20 <0.01 <10 <10 9 <10 60 0.322 <20 <0.01 <10 <10 8 <10 44 0.228 <20 <0.01 <10 <10 8 <10 45 0.220 <20 <0.01 <10 <10 15 <10 35 0.232 <20 <0.01 <10 <10 20 <10 50 0.412 <20 <0.01 <10 <10 10 <10 38 0.429 <20 <0.01 <10 <10 16 <10 39 0.412 <20 <0.01 <10 <10 22 <10 54 0.219 <20 <0.01 <10 <10 19 <10 36 <0.256 <20 <0.01 <10 <10 24 <10 43 0.263 <20 <0.01 <10 <10 22 <10 52 <0.242 <20 <0.01 <10 <10 20 <10 29 0.239 <20 <0.01 <10 <10 12 <10 34 0.447 <20 <0.01 <10 <10 14 <10 43 0.812 <20 <0.01 <10 <10 14 <10 48 1.213 <20 <0.01 <10 <10 11 <10 31 1.220 <20 <0.01 <10 <10 9 <10 30 2.320 <20 <0.01 <10 <10 8 <10 28 1.315 <20 <0.01 <10 <10 10 <10 21 0.97 <20 <0.01 10 <10 9 <10 58 2.65 <20 <0.01 20 <10 15 <10 90 4.94 <20 <0.01 <10 <10 18 <10 63 0.94 <20 <0.01 10 <10 20 <10 97 26 <20 <0.01 10 <10 17 <10 63 3.2

31 <20 <0.01 <10 <10 19 <10 54 2.139 <20 <0.01 <10 <10 18 <10 52 0.761 <20 <0.01 <10 <10 11 <10 28 0.919 <20 <0.01 <10 <10 21 <10 63 0.412 <20 <0.01 <10 <10 10 <10 65 0.85 <20 <0.01 <10 <10 3 <10 44 1.5

21/24

For

per

sona

l use

onl

y

Page 41: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

Au-AA24 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41From (m) To (m) Length (m) SAMPLE Au Ag Al As B Ba Be Bi Ca Cd Co Cr Cu Fe

No. ppm ppm % ppm ppm ppm ppm ppm % ppm ppm ppm ppm %

STOR- 3.11 Assay Data

235.0 236.0 1.0 75532 0.154 0.7 0.32 190 <10 10 0.7 <2 0.33 <0.5 11 1 7 2.97236.0 237.0 1.0 75533 0.101 0.4 0.35 233 <10 10 1 <2 0.15 <0.5 10 <1 3 3.15237.0 238.0 1.0 75534 0.131 0.8 0.42 235 <10 10 1.1 <2 0.11 <0.5 10 1 5 3.62238.0 239.0 1.0 75535 0.097 0.5 0.44 194 <10 10 0.9 <2 0.15 <0.5 10 1 4 3.37239.0 240.0 1.0 75536 0.033 0.4 0.45 256 <10 10 0.9 <2 0.25 <0.5 11 1 5 3.79240.0 241.0 1.0 75537 0.087 0.4 0.47 145 <10 20 0.9 <2 0.2 <0.5 9 1 10 3.38241.0 242.0 1.0 75538 0.557 0.2 0.36 94 <10 30 1 <2 0.2 <0.5 9 2 10 2.96242.0 243.0 1.0 75539 0.275 <0.2 0.45 63 <10 30 0.9 <2 0.23 <0.5 10 1 5 3.18243.0 244.0 1.0 75540 0.027 <0.2 0.43 60 <10 30 0.8 <2 0.29 <0.5 10 1 8 3.72

244.00 245.0 1.0 75542 0.108 0.2 0.4 93 <10 20 0.8 <2 0.2 <0.5 8 2 7 2.08245.00 246.0 1.0 75543 0.138 0.4 0.35 114 <10 20 1 <2 0.14 <0.5 8 2 12 1.48246.00 247.0 1.0 75544 0.066 0.4 0.34 103 <10 20 1.1 <2 0.24 <0.5 11 1 8 3.72247.00 248.0 1.0 75545 0.065 0.3 0.42 83 <10 50 1.1 <2 0.25 <0.5 11 2 8 3.71248.00 249.0 1.0 75546 0.048 0.3 0.41 72 <10 30 1.3 <2 0.27 <0.5 10 1 8 3.77249.00 250.0 1.0 75547 0.045 0.2 0.44 71 <10 30 1.4 <2 0.3 <0.5 11 2 9 4.33250.00 251.0 1.0 75548 0.147 0.2 0.44 63 <10 30 1.4 <2 0.28 <0.5 11 1 13 3.9251.00 252.0 1.0 75549 0.068 0.2 0.45 67 <10 30 1.6 <2 2 <0.5 10 1 9 3.85252.00 253.0 1.0 75550 0.057 0.2 0.31 74 <10 20 1.6 <2 0.85 <0.5 11 1 10 4.3253.00 254.0 1.0 75551 0.038 0.3 0.42 74 <10 30 1.5 <2 0.36 <0.5 11 1 7 3.67254.00 255.0 1.0 75552 0.09 0.4 0.27 89 <10 30 1.3 <2 0.25 <0.5 11 1 4 3.48255.00 256.0 1.0 75553 0.069 0.3 0.38 77 <10 30 1.4 <2 0.27 <0.5 11 1 10 3.65256.00 257.0 1.0 75554 0.064 0.2 0.43 71 <10 30 1.7 <2 0.3 <0.5 11 1 7 3.79257.00 258.0 1.0 75555 0.141 0.4 0.37 100 <10 30 1.4 <2 0.21 <0.5 9 1 12 2.75258.00 259.0 1.0 75556 0.112 0.3 0.51 83 <10 40 1.5 <2 0.25 <0.5 10 1 11 3.53259.00 260.00 1.0 75559 0.129 0.3 0.38 90 <10 30 1.4 <2 0.28 <0.5 11 1 8 4.09260.00 261.00 1.0 75560 0.085 0.2 0.41 85 <10 60 1.2 <2 0.75 <0.5 10 1 8 3.96261.00 262.00 1.0 75561 0.042 0.2 0.41 84 <10 20 1.2 <2 1.87 <0.5 10 1 7 3.99262.00 263.00 1.0 75562 0.078 0.2 0.39 73 <10 30 1.1 <2 0.58 <0.5 10 1 6 3.69263.00 264.00 1.0 75563 0.127 0.4 0.42 77 <10 30 1 <2 2.17 <0.5 11 2 10 4.09264.0 265.0 1.0 75565 0.077 0.2 0.37 74 <10 20 1 2 3.1 <0.5 10 1 13 4.02265.0 266.0 1.0 75566 0.146 <0.2 0.44 88 <10 30 0.7 <2 2.85 <0.5 10 1 9 3.89

22/24

For

per

sona

l use

onl

y

Page 42: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

235.0 236.0 1.0 75532236.0 237.0 1.0 75533237.0 238.0 1.0 75534238.0 239.0 1.0 75535239.0 240.0 1.0 75536240.0 241.0 1.0 75537241.0 242.0 1.0 75538242.0 243.0 1.0 75539243.0 244.0 1.0 75540

244.00 245.0 1.0 75542245.00 246.0 1.0 75543246.00 247.0 1.0 75544247.00 248.0 1.0 75545248.00 249.0 1.0 75546249.00 250.0 1.0 75547250.00 251.0 1.0 75548251.00 252.0 1.0 75549252.00 253.0 1.0 75550253.00 254.0 1.0 75551254.00 255.0 1.0 75552255.00 256.0 1.0 75553256.00 257.0 1.0 75554257.00 258.0 1.0 75555258.00 259.0 1.0 75556259.00 260.00 1.0 75559260.00 261.00 1.0 75560261.00 262.00 1.0 75561262.00 263.00 1.0 75562263.00 264.00 1.0 75563264.0 265.0 1.0 75565265.0 266.0 1.0 75566

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41Ga Hg K La Mg Mn Mo Na Ni P Pb S Sb Sc

ppm ppm % ppm % ppm ppm % ppm ppm ppm % ppm ppm

<10 <1 0.2 10 0.15 379 3 0.01 <1 270 10 2.36 21 2<10 1 0.21 10 0.05 120 2 0.01 <1 410 10 3.18 25 1<10 1 0.25 <10 0.04 40 1 0.01 1 270 12 3.65 10 1<10 1 0.26 10 0.07 254 1 0.01 <1 370 11 2.96 11 2<10 2 0.29 10 0.15 869 1 0.01 1 630 8 2.13 29 2<10 1 0.29 10 0.16 826 1 0.01 <1 530 10 1.45 11 2<10 1 0.26 10 0.18 820 1 0.02 <1 480 6 0.8 62 2<10 2 0.3 10 0.26 1020 1 0.02 <1 560 5 0.44 7 3<10 1 0.3 10 0.32 1260 <1 0.02 <1 680 8 0.57 6 4<10 1 0.27 10 0.14 499 1 0.01 <1 480 5 0.67 4 2<10 1 0.24 10 0.05 145 7 0.01 <1 400 7 0.98 7 1<10 1 0.25 10 0.3 959 3 0.01 <1 550 10 1.2 5 3<10 <1 0.3 10 0.27 926 1 0.02 <1 560 10 0.89 6 3<10 1 0.27 10 0.33 1010 1 0.02 <1 570 9 0.73 5 3<10 1 0.3 10 0.37 1235 1 0.01 <1 600 8 0.72 4 4<10 1 0.29 10 0.36 931 1 0.02 <1 590 10 0.72 5 4<10 <1 0.3 10 0.76 1080 <1 0.02 <1 600 9 0.67 5 4<10 1 0.23 10 0.51 1180 1 0.02 <1 610 8 0.8 6 4<10 1 0.3 10 0.3 985 1 0.02 <1 620 11 0.84 5 3<10 1 0.21 10 0.26 910 10 0.02 <1 490 10 0.81 10 3<10 1 0.28 10 0.3 1070 1 0.02 <1 550 8 0.79 5 3<10 1 0.31 10 0.31 1080 1 0.02 <1 610 7 0.66 6 3<10 1 0.28 10 0.19 644 9 0.02 <1 470 9 0.84 11 2<10 1 0.35 10 0.34 885 12 0.02 <1 530 9 0.75 20 3<10 1 0.28 10 0.41 1080 1 0.02 <1 530 8 0.76 11 4<10 1 0.29 10 0.49 1160 2 0.02 <1 590 9 0.7 7 4<10 <1 0.28 10 0.78 1025 1 0.02 <1 570 9 0.81 12 4<10 <1 0.27 10 0.45 824 1 0.02 <1 580 7 0.74 5 3<10 1 0.27 10 0.91 946 1 0.02 <1 650 8 0.99 6 4<10 <1 0.24 10 1.18 1085 1 0.01 1 670 11 0.81 4 4<10 <1 0.28 10 1.1 964 1 0.01 1 610 9 0.82 2 4

23/24

For

per

sona

l use

onl

y

Page 43: MetalsTech Targets High Grade Gold Zone - ASX...2020/04/21  · the routine fire assay (50g charge) with an Atomic Absorption finish assay result. • Argosy 1996-1997 geochemical

stor-3.11 assay data

From (m) To (m) Length (m) SAMPLENo.

STOR- 3.11 Assay Data

235.0 236.0 1.0 75532236.0 237.0 1.0 75533237.0 238.0 1.0 75534238.0 239.0 1.0 75535239.0 240.0 1.0 75536240.0 241.0 1.0 75537241.0 242.0 1.0 75538242.0 243.0 1.0 75539243.0 244.0 1.0 75540

244.00 245.0 1.0 75542245.00 246.0 1.0 75543246.00 247.0 1.0 75544247.00 248.0 1.0 75545248.00 249.0 1.0 75546249.00 250.0 1.0 75547250.00 251.0 1.0 75548251.00 252.0 1.0 75549252.00 253.0 1.0 75550253.00 254.0 1.0 75551254.00 255.0 1.0 75552255.00 256.0 1.0 75553256.00 257.0 1.0 75554257.00 258.0 1.0 75555258.00 259.0 1.0 75556259.00 260.00 1.0 75559260.00 261.00 1.0 75560261.00 262.00 1.0 75561262.00 263.00 1.0 75562263.00 264.00 1.0 75563264.0 265.0 1.0 75565265.0 266.0 1.0 75566

ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 ME-ICP41 Ag-AA45Sr Th Ti Tl U V W Zn Ag

ppm ppm % ppm ppm ppm ppm ppm ppm

7 <20 <0.01 <10 <10 7 <10 51 0.86 <20 <0.01 <10 <10 5 <10 43 0.69 <20 <0.01 <10 <10 5 <10 43 0.87 <20 <0.01 <10 <10 10 <10 44 0.57 <20 <0.01 <10 <10 15 <10 54 0.56 <20 <0.01 <10 <10 18 <10 55 0.45 <20 <0.01 <10 <10 15 <10 49 0.36 <20 <0.01 <10 <10 20 <10 58 0.27 <20 <0.01 <10 <10 25 <10 60 0.24 <20 <0.01 <10 <10 11 <10 41 0.33 <20 <0.01 <10 <10 5 <10 29 0.44 <20 <0.01 <10 <10 14 <10 62 0.45 <20 <0.01 <10 <10 14 <10 59 0.56 <20 <0.01 <10 <10 14 <10 63 0.46 <20 <0.01 <10 <10 16 <10 68 0.47 <20 <0.01 <10 <10 16 <10 64 0.4

17 <20 <0.01 <10 <10 16 <10 62 0.311 <20 <0.01 <10 <10 16 <10 68 0.37 <20 <0.01 <10 <10 14 <10 56 0.35 <20 <0.01 <10 <10 12 <10 60 0.47 <20 <0.01 <10 <10 13 <10 60 18 <20 <0.01 <10 <10 14 <10 68 0.36 <20 <0.01 <10 <10 9 <10 54 0.48 <20 <0.01 <10 <10 15 <10 59 0.48 <20 <0.01 <10 <10 17 <10 65 0.4

10 <20 <0.01 <10 <10 16 <10 61 0.417 <20 <0.01 <10 <10 15 <10 61 0.410 <20 <0.01 <10 <10 14 <10 60 0.319 <20 <0.01 <10 <10 20 <10 66 0.525 <20 <0.01 <10 <10 18 <10 71 0.223 <20 <0.01 <10 <10 16 <10 67 0.2

24/24

For

per

sona

l use

onl

y