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在有机物降解过程中通过自然氧化过程产生的卤代烃。

Halocarbons produced by natural oxidation processes during degradation of organic matter.

作者信息

Keppler F, Eiden R, Niedan V, Pracht J, Schöler H F

机构信息

Institute of Environmental Geochemistry, Heidelberg University, Germany.

出版信息

Nature. 2000 Jan 20;403(6767):298-301. doi: 10.1038/35002055.

Abstract

Volatile halogenated organic compounds (VHOC) play an important role in atmospheric chemical processes-contributing, for example, to stratospheric ozone depletion. For anthropogenic VHOC whose sources are well known, the global atmospheric input can be estimated from industrial production data. Halogenated compounds of natural origin can also contribute significantly to the levels of VHOC in the atmosphere. The oceans have been implicated as one of the main natural sources, where organisms such as macroalgae and microalgae can release large quantities of VHOC to the atmosphere. Some terrestrial sources have also been identified, such as wood-rotting fungi, biomass burning and volcanic emissions. Here we report the identification of a different terrestrial source of naturally occurring VHOC. We find that, in soils and sediments, halide ions can be alkylated during the oxidation of organic matter by an electron acceptor such as Fe(III): sunlight or microbial mediation are not required for these reactions. When the available halide ion is chloride, the reaction products are CH3Cl, C2H5Cl, C3H7Cl and C4H9Cl. (The corresponding alkyl bromides or alkyl iodides are produced when bromide or iodide are present.) Such abiotic processes could make a significant contribution to the budget of the important atmospheric compounds CH3Cl, CH3Br and CH3I.

摘要

挥发性卤代有机化合物(VHOC)在大气化学过程中起着重要作用,例如,它会导致平流层臭氧消耗。对于来源已知的人为VHOC,可根据工业生产数据估算其全球大气输入量。天然来源的卤代化合物也会对大气中VHOC的含量产生重大影响。海洋被认为是主要的天然来源之一,大型藻类和微藻等生物会向大气中释放大量的VHOC。一些陆地来源也已被确定,如木材腐朽真菌、生物质燃烧和火山排放。在此,我们报告发现了一种不同的陆地天然VHOC来源。我们发现,在土壤和沉积物中,卤离子在被诸如Fe(III)等电子受体氧化有机物的过程中会发生烷基化:这些反应不需要阳光或微生物介导。当可用卤离子为氯离子时,反应产物为CH3Cl、C2H5Cl、C3H7Cl和C4H9Cl。(当存在溴离子或碘离子时会生成相应的烷基溴化物或烷基碘化物。)这种非生物过程可能会对重要大气化合物CH3Cl、CH3Br和CH3I的收支产生重大影响。

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