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Biogeochemistry of selenium. A review

机译:硒的生物地球化学。回顾

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Selenium levels and speciation in environmental compartments and the dynamics of global Se cycling continue to be a subject of intense interest largely because Se is both an essential element and a toxicant at elevated levels. While Se containing amino acids and proteins are known to be critical for normal metabolic functions in many life forms, selenosis, poisoning due to chronic excessive Se intake, has been associated with neurological impairment. This paper reviews the current understanding of the biogeochemistry of selenium in the natural environment. The factors that affect Se speciation in natural environments are chemical, physical, and biological processes. Several inorganic species of Se (-2, 0, +4, and +6) and organic species (monomethylated and dimethylated) have been reported in aquatic systems. Both HSeO3 (-) and SeO3 (2-) would be present in natural waters. Under mild oxidizing conditions, HSeO3 (-) and SeO3 (2-) are the major species, while HSe- would be the dominant species at pH greater than 4 and strong reducing conditions. The biogeochemistry of selenium is discussed in terms of variation of speciation with pH and redox conditions, sorption on solid surfaces, role of reducing species under oxic/anoxic conditions, and interaction with natural organic matter.
机译:环境隔室中的硒水平和形态以及全球硒循环的动态仍然引起人们极大的兴趣,这主要是因为硒既是必需元素,又是高水平的有毒物质。虽然众所周知,含有氨基酸和蛋白质的硒对于许多生命形式的正常代谢功能至关重要,但由于长期过量摄入硒,硒化,中毒与神经功能受损有关。本文综述了自然环境中硒生物地球化学的最新认识。在自然环境中影响硒形态的因素是化学,物理和生物过程。在水生系统中,已经报道了几种无机硒元素(-2、0,+ 4和+6)和有机物种(单甲基化和二甲基化)。天然水中会同时存在HSeO3(-)和SeO3(2-)。在温和的氧化条件下,HSeO3(-)和SeO3(2-)是主要物质,而在pH大于4和强还原条件下,HSe-将是主要物质。从形态随pH和氧化还原条件的变化,固体表面的吸附,在有氧/缺氧条件下还原物种的作用以及与天然有机物的相互作用等方面讨论了硒的生物地球化学。

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