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Reduction of Technetium by Desulfovibrio desulfuricans: Biocatalyst Characterization and Use in a Flowthrough Bioreactor

机译:脱硫脱硫弧菌对Tech的还原:生物催化剂的表征和在流式生物反应器中的使用

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摘要

Resting cells of Desulfovibrio desulfuricans coupled the oxidation of a range of electron donors to Tc(VII) reduction. The reduced technetium was precipitated as an insoluble low-valence oxide. The optimum electron donor for the biotransformation was hydrogen, although rapid rates of reduction were also supported when formate or pyruvate was supplied to the cells. Technetium reduction was less efficient when the growth substrates lactate and ethanol were supplied as electron donors, while glycerol, succinate, acetate, and methanol supported negligible reduction. Enzyme activity was stable for several weeks and was insensitive to oxygen. Transmission electron microscopy showed that the radionuclide was precipitated at the periphery of the cell. Cells poisoned with Cu(II), which is selective for periplasmic but not cytoplasmic hydrogenases, were unable to reduce Tc(VII), a result consistent with the involvement of a periplasmic hydrogenase in Tc(VII) reduction. Resting cells, immobilized in a flowthrough membrane bioreactor and supplied with Tc(VII)-supplemented solution, accumulated substantial quantities of the radionuclide when formate was supplied as the electron donor, indicating the potential of this organism as a biocatalyst to treat Tc-contaminated wastewaters.
机译:Desulfovibrio desulfuricans的静息细胞将一系列电子供体的氧化与Tc(VII)还原偶联。还原的tech沉淀为不溶性低价氧化物。用于生物转化的最佳电子供体是氢,尽管当将甲酸或丙酮酸提供给细胞时也支持快速的还原速率。当生长底物乳酸和乙醇作为电子供体时,reduction的还原效率较低,而甘油,琥珀酸酯,乙酸盐和甲醇的还原作用可忽略不计。酶活性稳定数周,对氧气不敏感。透射电子显微镜显示放射性核素沉淀在细胞周围。被铜(II)中毒的细胞(对周质而不是细胞质氢化酶具有选择性)无法还原Tc(VII),这一结果与周质氢化酶参与Tc(VII)还原相一致。静止细胞固定在流通膜生物反应器中并提供Tc(VII)补充溶液,当甲酸作为电子供体被提供时,积累了大量的放射性核素,表明该生物体有潜力作为生物催化剂来处理被Tc污染的废水。 。

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