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首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Biotic and Abiotic Degradation of Methylmercury in Aquatic Ecosystems: A Review
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Biotic and Abiotic Degradation of Methylmercury in Aquatic Ecosystems: A Review

机译:生物生态系统中甲基汞的生物和非生物降解:审查

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摘要

Mercury (Hg) methylation and demethylation is supposed to simultaneously exist in the environment and form a cycle, which determines the net production of methylmercury (MeHg). Exploring the mechanisms of MeHg formation and degradation, and its final fate in the natural environment is essential to understanding the biogeochemical cycle of Hg. However, MeHg demethylation has been less studied in the past years comparing with Hg methylation, particularly in anaerobic microorganisms whose demethylation role has been under-evaluated. This review described the current state of knowledge on biotic (microorganisms) and abiotic demethylation (photodegradation, chemical degradation) of MeHg. The decomposition of MeHg performed by microorganisms has been identified as two different pathways, reductive demethylation (RD) and oxidative demethylation (OD). Anaerobic and aerobic microorganisms involved in the process of RD and OD, influencing factors as well as research background and histories are systematically described in this review. It is predicted that the photodegradation mechanism, as well as anaerobic microorganisms involved in MeHg formation and degradation cycle will be the focus of future research.
机译:汞(Hg)甲基化和去甲基化应该在环境中同时存在并形成循环,该循环决定了甲基汞(Mehg)的净生产。探索MEHG形成和降解的机制,其在自然环境中的最终命运对于了解HG的生物地理细胞循环至关重要。然而,与Hg甲基化相比,在过去的几年中,在过去的几年中,尤其在甲基化的比较中,特别是在厌氧微生物中进行的去甲基化作用的评估。本综述描述了目前关于生物(微生物)和非生物脱甲基化(光降解,化学降解)的知识状态。通过微生物进行的MEHG的分解已被鉴定为两种不同的途径,还原去甲基化(RD)和氧化去甲基化(OD)。在本次审查中,涉及参与RD和OD,影响因素以及研究背景和历史的过程的厌氧和有氧微生物。预测光降解机制以及涉及MEHG形成和降解循环的厌氧微生物将是未来研究的重点。

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