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Impact of Noble Metals and Mercury on Hydrogen Generation during High Level Waste Pretreatment at the Savannah River Site

机译:贵金属和汞对大草原河现场高水平废物预处理期间的影响

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The Defense Waste Processing Facility (DWPF) at the Savannah River Site vitrifies radioactive High Level Waste (HLW) for repository internment. The process consists of three major steps: waste pretreatment, vitrification, and canister decontamination/sealing. HLW consists of insoluble metal hydroxides (primarily iron, aluminum, calcium, magnesium, manganese, and uranium) and soluble sodium salts (carbonate, hydroxide, nitrite, nitrate, and sulfate). The pretreatment process in the Chemical Processing Cell (CPC) consists of two process tanks, the Sludge Receipt and Adjustment Tank (SRAT) and the Slurry Mix Evaporator (SME) as well as a melter feed tank. During SRAT processing, nitric and formic acids are added to the sludge to lower pH, destroy nitrite and carbonate ions, and reduce mercury and manganese. During the SME cycle, glass formers are added, and the batch is concentrated to the final solids target prior to vitrification. During these processes, hydrogen can be produced by catalytic decomposition of excess formic acid. The waste contains silver, palladium, rhodium, ruthenium, and mercury, but silver and palladium have been shown to be insignificant factors in catalytic hydrogen generation during the DWPF process.
机译:Savannah河网站的防御废物加工设施(DWPF)玻璃地放射性高水平废物(HLW)用于储存库。该过程包括三个主要步骤:废物预处理,玻璃化和罐式去污/密封。 HLW由不溶性金属氢氧化物(主要是铁,铝,钙,镁,锰,铀)和可溶性钠盐(碳酸盐,氢氧化物,亚硝酸盐,硝酸盐和硫酸盐)组成。化学加工电池(CPC)中的预处理过程包括两个过程罐,污泥收据和调节罐(SRAT)和浆料混合蒸发器(SME)以及复合器进料罐。在SRAT加工期间,将硝酸和甲酸加入到污泥中以降低pH,破坏亚硝酸盐和碳酸盐离子,并减少汞和锰。在中小企业循环期间,加入玻璃造形剂,在玻璃化之前将批料浓缩至最终固体靶标。在这些方法期间,氢可以通过催化分解过量的甲酸来制备。废物含有银,钯,铑,钌和汞,但在DWPF过程中,银和钯已被证明是催化氢气产生的微不足道的因子。

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