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Biogeochemical cycling of metals impacting by microbial mobilization and immobilization

机译:通过微生物动员和固定的金属的生物地球化学循环

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摘要

Microbial mobilization and immobilization processes can affect the bioavailability and mobility of metals thereby influencing their toxicity and can therefore be utilized to treat solid and liquid wastes contaminated by metals. However, the microbial mobilization and immobilization of metals depends on the microbial metabolism, the environment conditions. In this review, mobilization and immobilization of metals are discussed with regard to the presence and function of involved microorganisms and in relation to applications such as bioleaching. Furthermore, the biosorption process is evaluated as a possible approach for microbial immobilization of metal on the basis of four mechanisms: (1) physical adsorption, (2) ion exchange, (3) complexation, and (4) microprecipitation. In addition, sulfide precipitation by sulfate reducing bacteria was included as an example of an application of microbial immobilization. Based on the evaluation and recommendations in this paper, bioremediation strategies for metals can be improved thus increasing the opportunity for field applications. (C) 2017 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:微生物动员和固定过程可以影响金属的生物利用度和迁移率,从而影响其毒性,因此可以用于治疗由金属污染的固体和液体废物。然而,金属的微生物动员和固定取决于微生物代谢,环境条件。在本次综述中,关于涉及微生物的存在和功能,以及与生物浸出等应用的存在和功能讨论了金属的动员和固定。此外,在四种机制的基础上评价生物吸附过程作为金属微生物固定的可能方法:(1)物理吸附,(2)离子交换,(3)络合,和(4)微橡胶。此外,还包括硫酸盐还原细菌的硫化物沉淀作为微生物固定化的应用的实例。根据本文的评估和建议,可以提高金属的生物修复策略,从而增加了现场应用的机会。 (c)2017中国科学院生态环境科学研究中心。 elsevier b.v出版。

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