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Hydrogen Cyanide Accumulation and Transformations in Non-polluted Salt Marsh Sediments

机译:无公害盐沼沉积物中氰化氢的积累与转化

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摘要

While cyanide is known to be produced by many organisms, including plants, bacteria, algae, fungi and some animals, it is generally thought that high levels of cyanide in aquatic systems require anthropogenic sources. Here, we report accumulation of relatively high levels of cyanide in non-polluted salt marsh sediments (up to 230 μmol kg[superscript −1]). Concentrations of free cyanide up to 1.92 μmol L[superscript −1], which are toxic to aquatic life, were detected in the pore-waters. Concentration of total (free and complexed) cyanide in the pore-waters was up to 6.94 μmol L[superscript −1]. Free cyanide, which is released to the marsh sediments, is attributed to processes associated with decomposition of cord grass, Spartina alterniflora, roots and possibly from other sources. This cyanide is rapidly complexed with iron and adsorbed on sedimentary organic matter. The ultimate cyanide sink is, however, associated with formation of thiocyanate by reaction with products of sulfide oxidation by Fe(III) minerals, especially polysulfides. The formation of thiocyanate by this pathway detoxifies two poisonous compounds, polysulfides and hydrogen cyanide, preventing release of free hydrogen cyanide from salt marsh sediments into overlying water or air.
机译:虽然已知氰化物是由许多生物体(包括植物,细菌,藻类,真菌和某些动物)产生的,但通常认为水生系统中氰化物含量高需要人为来源。在这里,我们报告了在未污染的盐沼沉积物中积累了相对较高水平的氰化物(高达230μmolkg [上标-1])。在孔隙水中检测到对水生生物有毒的游离氰化物浓度高达1.92μmolL [上标-1]。孔隙水中总(游离和络合)氰化物的浓度高达6.94μmolL [上标-1]。释放到沼泽沉积物中的游离氰化物归因于与草草,互花米草,根以及可能来自其他来源的分解有关的过程。该氰化物与铁快速络合并吸附在沉积有机物上。然而,最终的氰化物沉积物与通过Fe(III)矿物(特别是多硫化物)氧化的硫化物的反应生成硫氰酸盐有关。通过该途径形成的硫氰酸盐可将两种有毒化合物多硫化物和氰化氢解毒,从而防止了盐沼沉积物中的游离氰化氢释放到上层水或空气中。

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