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Biovolatilisation: a poorly studied pathway of the arsenic biogeochemical cycle

机译:生物挥发作用:砷生物地球化学循环研究不充分的途径

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摘要

It has been known for over a hundred years that microorganisms can produce volatile arsenic (As) species, termed "arsines". However, this topic has received relatively little attention compared to As behaviour in soils and biotransformation through the trophic level in the marine and terrestrial environment. We believe this is due to long-standing misconceptions regarding volatile As stability and transport as well as an absence, until recently, of appropriate sampling methods. First and foremost, an attempt is made to unify arsines' designations, notations and formulas, taking into account all the different terms used in the literature. Then, the stability of As volatile species is discussed and new analytical developments are explored. Further, the special cases of diffuse low-level emissions (e.g. soil and sediment biovolatilisation), and point sources with high-level emissions (geothermal environments, landfills, and natural gas) are comprehensively reviewed. In each case, future possible areas of research and unknown mechanisms are identified and their importance towards the global As biogeochemical cycle is explored. This review gathers new information regarding mechanisms, stability, transport and sampling of the very elusive arsines and shows that more research should be conducted on this important process.
机译:一百多年来,已知微生物可以产生称为“(”的挥发性砷(As)。但是,与在海洋和陆地环境中通过营养级在土壤中的砷行为和通过营养级的生物转化相比,该主题受到的关注相对较少。我们认为,这是由于人们长期以来对挥发物的稳定性和运输的误解,以及直到最近才缺乏适当的采样方法。首先,首先要考虑到文献中使用的所有不同术语,以统一砷化氢的名称,符号和公式。然后,讨论了As挥发物的稳定性,并探索了新的分析方法。此外,还将对弥漫性低水平排放(例如土壤和沉积物的生物挥发)和高水平排放的点源(地热环境,垃圾填埋场和天然气)的特殊情况进行全面审查。在每种情况下,都确定了未来可能的研究领域和未知机制,并探讨了它们对全球As生物地球化学循环的重要性。这篇综述收集了关于难以捉摸的a的机理,稳定性,运输和采样的新信息,并表明应该对该重要过程进行更多的研究。

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