Evaluation of Gas Retention in Waste Simulants: Intermediate-Scale Column and Open-Channel-Depth Tests | |
Powell, Michael R. ; Gauglitz, Phillip A. ; Denslow, Kayte M. ; Fischer, Christopher M. ; Heldebrant, David J. ; Prowant, Matthew S. ; Sande, Susan ; Davis, James M. ; Telander, Monty R. | |
关键词: Gas retention; waste storage tanks; sludge; | |
DOI : 10.2172/1149671 RP-ID : PNNL-23136 RP-ID : DSGREP-RPT-003 PID : OSTI ID: 1149671 Others : Other: 830403000 |
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美国|英语 | |
来源: SciTech Connect | |
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【 摘 要 】
Gas generation in Hanford???s radioactive waste storage tanks can lead to gas accumulation within the layer of settled solids (sludge) at the tank bottom. The gas, which may be hazardous and/or flammable, is formed principally by radiation-driven chemical reactions. Accumulation of these gases within the sludge increases the sludge-layer volume, which decreases the available tank volume for waste storage. Further, accumulation of large amounts of gas in the sludge can potentially result in a relatively rapid release of the accumulated gas if the sludge-layer density is reduced to less than that of the overlying sludge or that of the supernatant liquid. The potential for rapid release of large amounts of hazardous and/or flammable gases is a safety hazard that needs to be managed. Accordingly, a thorough understanding is needed of the circumstances that can lead to problematic gas accumulation in sludge layers. The Deep-Sludge Gas Release Event Project (DSGREP) is tasked with developing an improved understanding of these gas release events.
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