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Titlebook: Chemical Pretreatment of Nuclear Waste for Disposal; Wallace W. Schulz,E. Philip Horwitz Book 1994 Springer Science+Business Media New Yor

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书目名称Chemical Pretreatment of Nuclear Waste for Disposal
编辑Wallace W. Schulz,E. Philip Horwitz
视频videohttp://file.papertrans.cn/225/224388/224388.mp4
图书封面Titlebook: Chemical Pretreatment of Nuclear Waste for Disposal;  Wallace W. Schulz,E. Philip Horwitz Book 1994 Springer Science+Business Media New Yor
描述Chemical pretreatment of nuclear wastes refers to the sequence of separations processes used to partition such wastes into a small volume of high-level waste for deep geologic disposal and a larger volume of low-level waste for disposal in a near-surface facility. Pretreatment of nuclear wastes now stored at several U. S. Department of Energy sites ranges from simple solid-liquid separations to more complex chemical steps, such as dissolution of sludges and removal of selected radionuclides, e. g. , 90Sr, 99Tc, 137CS, and TRU (transuranium) elements. The driving force for development of chemical pretreatment processes for nuclear wastes is the economic advantage of waste minimization as reflected in lower costs for near-surface disposal compared to the high cost of disposing of wastes in a deep geologic repository. This latter theme is expertly and authoritatively discussed in the introductory paper by J. and L. Bell. Seven papers in this volume describe several separations processes developed or being developed to pretreat the large volume of nuclear wastes stored at the US DOE Hanford and Savannah River sites. These papers include descriptions of the type and amount of important
出版日期Book 1994
关键词chemistry; energy; extraction; hydrogen; radioactive waste; ecotoxicology
版次1
doihttps://doi.org/10.1007/978-1-4615-2526-4
isbn_softcover978-1-4613-6076-6
isbn_ebook978-1-4615-2526-4
copyrightSpringer Science+Business Media New York 1994
The information of publication is updating

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Process Improvement in Practicelts in the recovery, recycle, and burnup of more than 99.9% of the TRU elements in discharged fuel. The electrorefiner (Figure 1) is a steel vessel that holds a pool of liquid cadmium (which serves as an anode in some operations) and a liquid LiCl-KCl electrolyte. Spent fuel elements are chopped, pl
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the introductory paper by J. and L. Bell. Seven papers in this volume describe several separations processes developed or being developed to pretreat the large volume of nuclear wastes stored at the US DOE Hanford and Savannah River sites. These papers include descriptions of the type and amount of important 978-1-4613-6076-6978-1-4615-2526-4
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Passivity-based Decentralized Control, (DOE) Hanford Site. Under current guidelines, the high-level waste (HLW) will be vitrified into borosilicate glass and disposed of in a geologic repository, and the low-level waste (LLW) will be converted to grout and disposed of by shallow land burial on the Hanford Site. Because of the high cost
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