column tests to assess flushing of perchlorate from soil fileperchlorate will move into groundwater...
TRANSCRIPT
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Column Tests to Assess Flushing of
Perchlorate from Soil Cindy G. Schreier, Ph.D.
Jane (Deni) Chambers, Mark Gage
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Outline Site Background / Objectives Soil/Water Preparation /
Characterization Column Construction / Procedures Results Summary / Conclusions
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Site Background Industrial facility near Las Vegas, Nevada Perchlorate present in vadose zone and GW Depth to GW 10-30 ft bgs Soil flushing considered because ◦ perchlorate will move into groundwater ◦ GW pump and treat system already
exists
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Perchlorate Basics Anionic: ClO4
-
Solubility in water: ~ 200 g/L Common uses: explosives,
pyrotechnics, rocket fuel Health effects: can interfere
with thyroid function Drinking water limits: 18 µg/L
(NV Interim Action Level)
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Objectives Conduct column tests to: Determine amount of perchlorate that
can be leached from soil Determine volume of water required to
leach perchlorate Identify other compounds that may
also be flushed from soil
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Soil Preparation 3 samples, each
about 200 lbs (90 kg) For each sample ◦ Sieve to remove rocks
> 0.5 in (1.25 cm) ◦ Homogenize ◦ Analyze for various
parameters including perchlorate, arsenic, metals, Cr(VI), TOC
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Site Water Stabilized Lake Mead
Water (~25 gal/90L) Received in multiple
containers Used as received Analyzed for
perchlorate, arsenic, Cr(VI) and other parameters
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Baseline Analytical Results Analyte Units Soil 1 Soil 2 Soil 3 Water Perchlorate ppb 6,180 145,000 3,130,000 2.19 Alkalinity ppm n.a. n.a. n.a. 160 Arsenic ppm 7.2 2.8 3.6 < 0.005 Cr(VI) ppm < 0.400 < 0.400 < 0.400 < 0.001 Moisture % 4.7 8.3 8.3 n.a. TDS ppm n.a. n.a. n.a. 620 TOC ppm 5,900 5,000 7,600 2.8
• ppb = micrograms per kilogram or micrograms per liter • ppm = milligrams per kilogram or milligrams per liter • n.a. = not applicable
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Physical Parameters BULK Soil
0
10
20
30
40
50
60
70
Soil 1 Soil 2 Soil 3
Perc
ent Gravel
SandSiltClay
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Column Construction Column design based on
ASTM D 4874 Clear PVC pipe 6 in diameter x 72 in tall 1 in thick acrylic endplates Top diffuser sintered glass Bottom diffuser SS, pore
size 75 µm Soil added in 6 in lifts
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COLUMN CONSTRUCTION End Plate
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COLUMN CONSTRUCTION Column Bolted to Endplate
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COLUMN CONSTRUCTION The First Lift
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COLUMN CONSTRUCTION Construction Complete
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Column Parameters Parameter Soil -1 Soil-2 Soil-3
Diameter 6 in (15 cm) Bed Height 72 in (190 cm) Soil Mass 135 lbs (61 kg) Bulk Density 1.87 g/cm3 Pore Volume, L 10.4 11.5 11.5 Flowrate, mL/min 1-2 2.1 2.0 Pore Volumes Put Through 2.3 2.1 2.1
Pore Volumes Recovered 1.6 1.2 1.6
Duration, days* 12 7.8 8.3
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Procedures Site water pumped into
top of columns Wetting front noted Effluent collected for 24
hr periods Effluent analyzed for
various parameters After final time point,
columns sampled and soil analyzed for ClO4
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PROCEDURES Sample Bottles
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PROCEDURES Sampling Soil at End of Test
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RESULTS Column Flushing
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Wetting Front Progression
0
10
20
30
40
50
60
70
0.0 0.5 1.0 1.5 2.0
Inch
es B
elow
Sur
face
Time (days)
Soil 1Soil 2Soil 3
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Pore Volumes Applied v. Collected
0.0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
1.8
0.0 0.5 1.0 1.5 2.0 2.5
# Po
re V
olum
es C
olle
cted
# Pore Volumes Added
Soil 1Soil 2Soil 3
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Perchlorate in Leachate
0.01
0.1
1
10
100
1000
10000
100000
0.0 0.5 1.0 1.5 2.0 2.5
Perc
hlor
ate,
mg/
L
# Pore Volumes Added
Soil 1Soil 2Soil 3
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Perchlorate in Leachate
0
20
40
60
80
100
120
0.0 0.5 1.0 1.5 2.0 2.5
% o
f Ini
tial M
ass
in S
oil
# Pore Volumes Added
Soil 1Soil 2Soil 3
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Perchlorate Balance Perchlorate Soil 1 Soil 2 Soil 3
Initial Mass in Column, g 0.38 8.88 193 Final Mass in Column, g < 0.0013 0.00981 0.14 Mass Leached, g 0.126 5.5 208 % Removed from Soil > 99.7 99.9 99.9 % Accounted for in Leachate 33 62 110
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Arsenic in Leachate
0
20
40
60
80
100
120
140
160
0.0 0.5 1.0 1.5 2.0 2.5
Arse
nic,
µg/
L
# Pore Volumes Added
Soil 1Soil 2Soil 3
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Cr(VI) in Leachate
0
20
40
60
80
100
120
140
160
0.0 0.5 1.0 1.5 2.0 2.5
Cr(
VI), µg
/L
# Pore Volumes Added
Soil 1Soil 2Soil 3
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Summary & Conclusions Soil flushing effectively removed
perchlorate ◦ Application of 2 pore volumes removed >
99% of initial perchlorate ◦ Most perchlorate leached was detected
after application of 0.9-1.2 pore volumes Flushing also leached arsenic and
Cr(VI)
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Recommendations Full-scale application should be
effective but ◦ Must consider water availability ◦ Must consider effect of high perchlorate,
arsenic, Cr(VI) and other parameters on existing pump and treat system
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Cindy G. Schreier, Ph.D. 916-939-7300
Deni Chambers, Mark Gage 510-839-0688
[email protected] [email protected]
Questions?
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