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首页> 外文期刊>Journal of Hazardous Materials >Engineering and kinetic aspects of bacterial uranium reduction for the remediation of uranium contaminated environments
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Engineering and kinetic aspects of bacterial uranium reduction for the remediation of uranium contaminated environments

机译:细菌铀还原的工程和动力学方面,以修复受铀污染的环境

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摘要

Biological reduction of soluble uranium from U(VI) to insoluble U(IV) coupled to the oxidation of an electron donor (hydrogen or organic compounds) is a potentially cost-efficient way to reduce the U concentrations in contaminated waters to below regulatory limits. A variety of microorganisms originating from both U contaminated and non-contaminated environments have demonstrated U(VI) reduction capacity under anaerobic conditions. Bioreduction of U(VI) is considered especially promising for in situ remediation, where the activity of indigenous microorganisms is stimulated by supplying a suitable electron donor to the subsurface to contain U contamination to a specific location in a sparingly soluble form. Less studied microbial biofilm-based bioreactors and bioelectrochemical systems have also shown potential for efficient U(VI) reduction to remove U from contaminated water streams. This review compares the advantages and challenges of U(VI)-reducing in situ remediation processes, bioreactors and bioelectrochemical systems. In addition, the current knowledge of U(VI) bioreduction mechanisms and factors affecting U(VI) reduction kinetics (e.g. pH, temperature, and the chemical composition of the contaminated water) are discussed, as both of these aspects are important in designing efficient remediation processes.
机译:将可溶性铀从U(VI)生物还原为不溶性U(IV),再加上电子给体(氢或有机化合物)的氧化,是一种将污染水中的U浓度降低到规定限值以下的潜在成本有效方法。源自U污染和未污染环境的多种微生物在厌氧条件下均具有U(VI)还原能力。 U(VI)的生物还原被认为对于原位修复特别有前途,在原位修复中,通过向地下提供合适的电子供体以微溶形式将U污染包含到特定位置来刺激本地微生物的活性。较少研究的基于微生物生物膜的生物反应器和生物电化学系统还显示出有效还原U(VI)的潜力,可从受污染的水流中去除U。这篇综述比较了减少U(VI)原位修复工艺,生物反应器和生物电化学系统的优势和挑战。此外,还讨论了有关U(VI)生物还原机理的现有知识以及影响U(VI)还原动力学的因素(例如pH,温度和受污染水的化学成分),因为这两个方面对于设计高效修复过程。

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