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Microbial mobilization and immobilization of plutonium

机译:p的微生物动员和固定化

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摘要

Microorganisms present in transuranic (TRU)- and mixed-wastes and in contaminated soils can bring about the transformation of plutonium (Pu) and affect its stability and mobility. Microbial dissolution of Pu is due to the production of sequestering agents, enzymatic oxidation of Pu(IV) to Pu(V) and Pu(VI) under aerobic conditions, or reduction of Pu(IV) to Pu(III) under anaerobic conditions. Immobilization is due to reduction of Pu(VI) or Pu(V) to Pu(IV), bioaccumulation extracellularly or intracellularly, and bioprecipitation. Disproportionation reactions of Pu(V) can also generate soluble Pu(VI) and insoluble Pu(IV) species. Plutonium is transported predominantly as colloids but microbes under appropriate conditions can affect the formation or destabilization of colloids. In this paper, the abundance of microbes in Pu contaminated soils and radioactive wastes and the mechanisms microbial dissolution and immobilization of Pu are reviewed.
机译:超铀(TRU)和混合废物以及受污染的土壤中存在的微生物会导致p(Pu)的转化,并影响其稳定性和迁移性。 Pu的微生物溶解是由于产生了螯合剂,在有氧条件下将Pu(IV)酶氧化为Pu(V)和Pu(VI)或在厌氧条件下将Pu(IV)还原为Pu(III)。固定化是由于Pu(VI)或Pu(V)还原为Pu(IV),细胞外或细胞内生物富集以及生物沉淀所致。 Pu(V)的歧化反应还可以生成可溶性Pu(VI)和不溶性Pu(IV)物质。 is主要以胶体形式运输,但是微生物在适当的条件下会影响胶体的形成或不稳定。本文综述了Pu污染土壤和放射性废物中微生物的丰富度以及Pu微生物溶解和固定化的机理。

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