科技报告详细信息
IMPACTS OF ANTIFOAM ADDITIONS AND ARGON BUBBLING ON DEFENSE WASTE PROCESSING FACILITY REDUCTION/OXIDATION
Jantzen, C. ; Johnson, F.
关键词: AR FACILITIES;    ARGON;    BUBBLES;    EVAPORATORS;    GLASS;    MELTING;    OXIDATION;    OXIDIZERS;    PROCESS CONTROL;    PRODUCTION;    QUALITY CONTROL;    SLUDGES;    TANKS;    TARGETS;    VITRIFICATION;    WASTE PROCESSING;    WASTES;   
DOI  :  10.2172/1045616
RP-ID  :  SRNL-STI-2011-00652
PID  :  OSTI ID: 1045616
Others  :  TRN: US1203662
学科分类:核能源与工程
美国|英语
来源: SciTech Connect
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【 摘 要 】

During melting of HLW glass, the REDOX of the melt pool cannot be measured. Therefore, the Fe{sup +2}/{Sigma}Fe ratio in the glass poured from the melter must be related to melter feed organic and oxidant concentrations to ensure production of a high quality glass without impacting production rate (e.g., foaming) or melter life (e.g., metal formation and accumulation). A production facility such as the Defense Waste Processing Facility (DWPF) cannot wait until the melt or waste glass has been made to assess its acceptability, since by then no further changes to the glass composition and acceptability are possible. therefore, the acceptability decision is made on the upstream process, rather than on the downstream melt or glass product. That is, it is based on 'feed foward' statistical process control (SPC) rather than statistical quality control (SQC). In SPC, the feed composition to the melter is controlled prior to vitrification. Use of the DWPF REDOX model has controlled the balanjce of feed reductants and oxidants in the Sludge Receipt and Adjustment Tank (SRAT). Once the alkali/alkaline earth salts (both reduced and oxidized) are formed during reflux in the SRAT, the REDOX can only change if (1) additional reductants or oxidants are added to the SRAT, the Slurry Mix Evaporator (SME), or the Melter Feed Tank (MFT) or (2) if the melt pool is bubble dwith an oxidizing gas or sparging gas that imposes a different REDOX target than the chemical balance set during reflux in the SRAT.

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