通过微生物转化和挥发去除废水中的硒。

4区 工程技术 Q2 Biochemistry, Genetics and Molecular Biology
Tochukwu Ekwonna, Olusegun Akindeju, Brianna Amos, Zhi-Qing Lin
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引用次数: 0

摘要

硒(Se)是一种天然存在的微量元素,是人类和动物所必需的营养元素,但浓度过高时则会产生毒性。这项实验室研究探讨了微生物通过生物转化和挥发过程从受污染的废水中去除硒的作用。微生物可将水溶性硒酸盐(SeO42-)和亚硒酸盐(SeO32-)固定为不溶于水的元素硒(Se0),并将硒转化为大气中的挥发性硒化合物。这项实验室研究的结果表明,从小麦秸秆和生物固体-WTR-砂基质中分离出来的细菌菌株枯草芽孢杆菌(Bacillus cereus)具有显著的生物转化能力,能将硒酸盐和亚硒酸盐还原成元素硒,并在废水中形成挥发性硒有机化合物。总之,微生物硒化学还原、甲基化和挥发是硒污染废水生物修复的重要过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selenium Removal from Wastewater by Microbial Transformation and Volatilization.

Selenium (Se) is a naturally occurring trace element that is nutritionally essential for humans and animals, but becomes toxic at high concentrations. This laboratory study explored the role of microbes in Se removal from contaminated wastewater via biological transformation and volatilization processes. Microbes could immobilize water-soluble selenate (SeO42-) and selenite (SeO32-) to water-insoluble elemental Se (Se0) and transform Se into volatile Se compounds found in the atmosphere. Results of this laboratory study showed that Bacillus cereus, a bacterial strain isolated from wheat straw and biosolid-WTR-sand substrates showed a significant biotransformation ability of reducing selenate and selenite to elemental Se and forming volatile Se organic compounds in wastewater. Overall, microbial Se chemical reduction, methylation, and volatilization are important processes in bioremediation of Se-contaminated wastewater.

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来源期刊
Advances in biochemical engineering/biotechnology
Advances in biochemical engineering/biotechnology 工程技术-生物工程与应用微生物
CiteScore
5.70
自引率
0.00%
发文量
29
期刊介绍: Advances in Biochemical Engineering/Biotechnology reviews actual trends in modern biotechnology. Its aim is to cover all aspects of this interdisciplinary technology where knowledge, methods and expertise are required for chemistry, biochemistry, microbiology, genetics, chemical engineering and computer science. Special volumes are dedicated to selected topics which focus on new biotechnological products and new processes for their synthesis and purification. They give the state-of-the-art of a topic in a comprehensive way thus being a valuable source for the next 3 - 5 years. It also discusses new discoveries and applications.
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