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Arsenic Retention And Release In Ombrotrophic Peatlands

机译:富营养泥炭地中砷的保留和释放

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Organic matter can play an important role in the mobility and fate of As in the environment, but there is a lack of data on As bio geochemistry in ombrotrophic peatlands. The aim of this study was to investigate As retention and release in atmospherically contaminated ombrotrophic peat soils in the Peak District National Park (UK). Solid phase As concentrations in the peat soils exceed 25 mg kg~(-1). Solid phase As and Fe concentrations are closely correlated at sites where the peat is subjected to drying and oxic conditions. In a wetter zone of the bog, solid phase As and Fe distributions are decoupled, suggesting that As retention in these systems is not solely controlled by the presence of Fe oxides. Comparison of solid phase As and Pb distributions reveals that As has been subjected to post-depositional mobility in areas of water table fluctuation. Conversely, at permanently waterlogged locations As is immobile. Detailed stream water sampling reveals that As is released from the organic-rich uplands soils into the fluvial system. Dissolved As concentrations are highly variable, with values ranging from 0.20 to 7.28 μg l~(-1). Stream water As concentrations are elevated during late summer stormflow periods when there has been re-wetting of the peat after significant water table draw-down. Dissolved As is strongly correlated to dissolved organic carbon under stormflow and baseflow. The results of this study suggest that organic matter plays an important role in As dynamics in ombrotrophic peatlands, but further work is needed to identify the exact As binding and release mechanisms. Drying and re-wetting of ombrotrophic peat soils and associated changes in redox status has the potential to lead to increased As mobility. Further work is needed to provide information on how predicted climate change will influence As cycling at sites containing a legacy of atmospheric contamination.
机译:有机物在砷在环境中的迁移和命运中可以发挥重要作用,但是在营养型泥炭地中缺乏关于砷生物地球化学的数据。这项研究的目的是调查峰区国家公园(英国)中大气污染的营养营养泥炭土中砷的保留和释放。泥炭土壤中的固相砷浓度超过25 mg kg〜(-1)。泥炭处于干燥和有氧条件的部位,固相As和Fe的浓度密切相关。在沼泽的较湿区,固相中的砷和铁的分布解耦,这表明砷在这些系统中的保留并不仅仅受氧化铁的存在控制。固相As和Pb分布的比较表明,As已在水位波动区域经历了沉积后的迁移。相反,在永久淹水的地方,因为它是不动的。详细的溪流水采样显示,As从富含有机物的高地土壤释放到河流系统中。溶解态As的浓度变化很大,其范围为0.20至7.28μgl〜(-1)。溪水As浓度在夏末的暴风雨期间升高,这是由于大量地下水位下降后泥炭重新润湿了。在风暴流和底流下,溶解态As与溶解有机碳密切相关。这项研究的结果表明有机质在非营养营养泥炭地的砷动力学中起着重要作用,但还需要进一步的工作来确定确切的砷结合和释放机制。非营养型泥炭土的干燥和重新润湿以及氧化还原状态的相关变化有可能导致砷迁移率增加。需要做进一步的工作来提供信息,说明预计的气候变化将如何在包含大气污染遗留物的地点骑自行车时产生影响。

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