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Safespur Presentation. Johan Langham, Project Engineer, Studsvik 15/05/07. International Supply Chain Case Study. Shipment and treatment of contaminated lead from Sellafield. International Supply Chain Case Study. Supply Chain Why process abroad? Why metal melt? - PowerPoint PPT PresentationTRANSCRIPT
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Safespur Presentation Johan Langham, Project Engineer, Studsvik 15/05/07
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International Supply Chain Case Study
• Shipment and treatment of contaminated lead from Sellafield
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International Supply Chain Case Study
• Supply Chain
• Why process abroad?
• Why metal melt?
• Lead transport and melting case study
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Supply Chain
• NDA (UK) – Ultimate Customer
• BNG Sellafield Ltd (UK) - Customer
• Studsvik (Sweden with UK subsidiary)– Main contractor
• MHF Logistical Solutions (USA) - Subcontractor– MHFLS chosen for their core competence in packaging and bulk
transport of radioactive material
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Studsvik
• Studsvik is a leading nuclear services organisation with 1300 employees worldwide and sales of £100M+ per annum
• Dedicated decontamination and melting facility in Nyköping, Sweden
• To date processed in excess 15,000 tonnes of metal
• Nuclear site license under Swedish regulators
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Studsvik site
Deep sea harbour
Melting facility Incineration facility
ILW facility
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Why process abroad?
• No current facilities in UK that can process metal via melting
• Currently around five melting facilities abroad
• To conduct melting trials a need to engage foreign companies
• Proven technology
• New Defra LLW policy with new policy on import and export
• NDA strategic BPEO to use overseas treatment facilities
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Why melting?
• Acts as an effective decontamination process for most metals and associated radionuclide contamination
• Achieves complete volume reduction of the material
• Homogenises the metal for robust characterisation
• Provides an opportunity for re-use and recycling of valuable material
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Metal melting by recycling
• The Studsvik Treatment Concept is based on recycling the treated material and minimising the volume of contaminated material that is returned to the customer
• Typically >95% of the incoming material to Studsvik is recycled, for lead up to 97% is recycled
Recycling 1 tonne of steel saves:1.5t iron ore0.5t coal1.3t solid waste
Water use 60% lessEmissions 86% lessEnergy 75% less
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Lead melting trial
• Customer sourced candidate material for melting
• Waste characterisation of the material
• Package assessment and package approval
• Transfrontier shipment documentation preparation
• Letter of acceptance for the treatment of the lead
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Lead melting trial
• Loading of the lead– Delivery of the containers to Sellafield– Loading of the lead in the packages– Securing of the packages– Preparation of transportation
paperwork
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Lead Melting Trial
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Lead Melting Trial
• Transport of the lead packages
• Notification to MHFLS and Studsvik regarding transports
• Transport by Road and Sea
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Lead melting trial
• Arrival of material at site
• Unloading of material
• Sorting of material
• Size reduction
• Melting
• Analysis of melted material
• Analysis of secondary waste
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Lead Melting Trial
Assessment
Segmentation
Regulatory Compliance
Transport
Melting Measurement
Ingots Secondary LLW
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Lead Melting Trial•Release of ingots for re-melting is made in accordance with the European Commission’s Recommendations in RP89
•Network of metal producers in Sweden familiar with the ingots as a feedstock
•Secondary wastes (slag, blasting residues, filter dust) are conditioned, packaged and returned to the country of origin for disposal
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Lead Melting Trial
• Currently First and Second Shipment successfully delivered
• First shipment of lead melted successfully with second shipment melting currently being processed at facility
• BNG/Studsvik/MHFLS preparing for third shipment
• Teamwork built on the core competences of the individual companies
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Summary
• Proven technology
• Supply chain built on core competences of companies
• Successful trial melt
• Further scope for working together
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