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首页> 外文期刊>Journal of Environmental Science and Health >Bioaccessibility of arsenic in mine waste-contaminated soils: A case study from an abandoned arsenic mine in SW England (UK)
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Bioaccessibility of arsenic in mine waste-contaminated soils: A case study from an abandoned arsenic mine in SW England (UK)

机译:矿山废料污染土壤中砷的生物可及性:以英国西南部(英国)一个废弃的砷矿为例

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摘要

This study characterises the total As concentrations and As bioaccessibility in 109 soils from Devon Great Consols Mine, an abandoned Cu-As mine in Devon, SW England, UK and discusses the soil and mineralogical factors that influence the bioaccessibility of this element. These data provide the basis for developing more accurate exposure estimates for use in human health risk assessments. The median value of the percent bioaccesible As of 15% for these As rich soils contaminated by mining activities indicated that relatively little of the total As is present in a bioaccessible form. Spatial variability of As bioaccesibility in the soils was also recognised throughout the mine site as a function of mineralogy. Multivariate statistical analysis identified a sulphide component responsible for the reduced As bioaccessibility of one cluster of soils. In the larger cluster of acidic mine soils covered by woodland As is mainly hosted in Fe oxyhydroxides whose partial dissolution is responsible for the bioaccessible As fraction. It was highlighted that the degree of Fe oxyhydroxide crystallinity might represent an important factor influencing arsenic bioaccessibility. Mine soils from Devon Great Consols Mine showed overall higher As bioaccessibility (15%) than other mineralised soils not affected by mining activities and background soils within the Tamar Catchment whose percent bioaccessible As median values were 9%.
机译:这项研究表征了英国西南部德文郡德文郡一个废弃的铜-砷矿山德文郡大康索尔矿山的109种土壤中的总砷浓度和砷生物利用度,并讨论了影响该元素生物利用度的土壤和矿物学因素。这些数据为开发更准确的接触估计以用于人类健康风险评估提供了基础。这些富含As的土壤中被采矿活动污染的15%的生物可吸收As的中位数表明,以生物可获取的形式存在的总As相对较少。在整个矿区,土壤中As生物可及性的空间变异性也被认为是矿物学的函数。多变量统计分析确定了一个硫化物成分,可导致一团土壤的As生物可及性降低。在由林地覆盖的较大的酸性矿山土壤中,砷主要存在于羟基氧化铁中,其部分溶解是生物可吸收砷组分的原因。强调了羟基氧化铁的结晶度可能是影响砷生物可及性的重要因素。德文郡大康索尔矿山的矿山土壤总体生物利用度(15%)高于不受采矿活动影响的其他矿化土壤和塔玛河集水区内的背景土壤,其生物利​​用度百分比中值为9%。

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