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在水生环境中,Mn(II)氧化微生物介导的重金属隔离和氧化。

Sequestration and oxidation of heavy metals mediated by Mn(II) oxidizing microorganisms in the aquatic environment.

机构信息

Key Laboratory of Eco-Environments in Three Gorges Reservoir Region, Ministry of Education, College of Environment, and Ecology, Chongqing University, Chongqing, 400044, China.

Key Laboratory of Eco-Environments in Three Gorges Reservoir Region, Ministry of Education, College of Environment, and Ecology, Chongqing University, Chongqing, 400044, China.

出版信息

Chemosphere. 2023 Jul;329:138594. doi: 10.1016/j.chemosphere.2023.138594. Epub 2023 Apr 6.

Abstract

Microorganisms can oxidize Mn(II) to biogenic Mn oxides (BioMnOx), through enzyme-mediated processes and non-enzyme-mediated processes, which are generally considered as the source and sink of heavy metals due to highly reactive to sequestrate and oxidize heavy metals. Hence, the summary of interactions between Mn(II) oxidizing microorganisms (MnOM) and heavy metals is benefit for further work on microbial-mediated self-purification of water bodies. This review comprehensively summarizes the interactions between MnOM and heavy metals. The processes of BioMnOx production by MnOM has been firstly discussed. Moreover, the interactions between BioMnOx and various heavy metals are critically discussed. On the one hand, modes for heavy metals adsorbed on BioMnOx are summarized, such as electrostatic attraction, oxidative precipitation, ion exchange, surface complexation, and autocatalytic oxidation. On the other hand, adsorption and oxidation of representative heavy metals based on BioMnOx/Mn(II) are also discussed. Thirdly, the interactions between MnOM and heavy metals are also focused on. Finally, several perspectives which will contribute to future research are proposed. This review provides insight into the sequestration and oxidation of heavy metals mediated by Mn(II) oxidizing microorganisms. It might be helpful to understand the geochemical fate of heavy metals in the aquatic environment and the process of microbial-mediated water self-purification.

摘要

微生物可以通过酶促和非酶促过程将 Mn(II)氧化为生物 Mn 氧化物(BioMnOx),由于对重金属具有高反应性,可螯合和氧化重金属,因此通常被认为是重金属的源和汇。因此,总结 Mn(II)氧化微生物(MnOM)与重金属之间的相互作用有助于进一步研究微生物介导的水体自净。本综述全面总结了 MnOM 与重金属之间的相互作用。首先讨论了 MnOM 产生 BioMnOx 的过程。此外,还批判性地讨论了 BioMnOx 与各种重金属之间的相互作用。一方面,总结了重金属在 BioMnOx 上的吸附模式,如静电吸引、氧化沉淀、离子交换、表面络合和自催化氧化。另一方面,还讨论了基于 BioMnOx/Mn(II)的代表性重金属的吸附和氧化。第三,还重点讨论了 MnOM 与重金属之间的相互作用。最后,提出了几个有助于未来研究的观点。本综述深入了解了 Mn(II)氧化微生物介导的重金属的螯合和氧化。这有助于理解重金属在水环境中的地球化学命运和微生物介导的水自净过程。

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