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FINAL REPORT SUMMARY OF DM 1200 OPERATION AT VSL VSL-06R6710-2 REV 0 9/7/06
KRUGER AA ; MATLACK KS ; DIENER G ; BARDAKCI T ; PEGG IL
关键词: AR FACILITIES;    CRUCIBLES;    DESIGN;    GLASS;    HIGH-LEVEL RADIOACTIVE WASTES;    MAINTENANCE;    MODIFICATIONS;    PERFORMANCE;    PROCESSING;    RIVERS;    SURFACE AREA;    TESTING;    VITRIFICATION;    WASTE PROCESSING;    WASTES;   
DOI  :  10.2172/1034643
RP-ID  :  ORP-51434 Rev 0
PID  :  OSTI ID: 1034643
Others  :  Other: VSL-06R6710-2, Rev. 0, 9/7/2006
Others  :  TRN: US1200883
学科分类:核能源与工程
美国|英语
来源: SciTech Connect
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【 摘 要 】

The principal objective of this report was to summarize the testing experience on the DuraMelter 1200 (DMI200), which is the High Level Waste (HLW) Pilot Melter located at the Vitreous State Laboratory (VSL). Further objectives were to provide descriptions of the history of all modifications and maintenance, methods of operation, problems and unit failures, and melter emissions and performance while processing a variety of simulated HL W and low activity waste (LAW) feeds for the Hanford Waste Treatment and Immobilization Plant (WTP) and employing a variety of operating methods. All of these objectives were met. The River Protection Project - Hanford Waste Treatment and Immobilization Plant (RPP-WTP) Project has undertaken a 'tiered' approach to vitrification development testing involving computer-based glass formulation, glass property-composition models, crucible melts, and continuous melter tests of increasing, more realistic scales. Melter systems ranging from 0.02 to 1.2 m{sup 2} installed at the Vitreous State Laboratory (VSL) have been used for this purpose, which, in combination with the 3.3 m{sup 2} low activity waste (LAW) Pilot Melter at Duratek, Inc., span more than two orders of magnitude in melt surface area. In this way, less-costly small-scale tests can be used to define the most appropriate tests to be conducted at the larger scales in order to extract maximum benefit from the large-scale tests. For high level waste (HLW) vitrification development, a key component in this approach is the one-third scale DuraMelter 1200 (DM 1200), which is the HLW Pilot Melter that has been installed at VSL with an integrated prototypical off-gas treatment system. That system replaced the DM1000 system that was used for HLW throughput testing during Part B1. Both melters have similar melt surface areas (1.2 m{sup 2}) but the DM1200 is prototypical of the present RPP-WTP HLW melter design whereas the DM1000 was not. In particular, the DM1200 provides for testing on a vitrification system with the specific train of unit operations that has been selected for both HLW and LAW RPP-WTP off-gas treatment.

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