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Effects of Soil Composition and Mineralogy on the Bioaccessibility of Arsenic from Tailings and Soil in Gold Mine Districts of Nova Scotia

机译:土壤成分和矿物学对新斯科舍金矿区尾矿和土壤中砷生物利用度的影响

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摘要

Bioaccessibility tests and mineralogical analyses were performed on arsenic-contaminated tailings and soils from gold mine districts of Nova Scotia, Canada, to examine the links between soil composition, mineralogy, and arsenic bioaccessibility. Arsenic bioaccessibility ranges from 0.1 % to 49%. A weak correlation was observed between total and bioaccessible arsenic concentrations, and the arsenic bioaccessibility was not correlated with other elements. Bulk X-ray absorption near-edge structure analysis shows arsenic in these near-surface samples is mainly in the pentavalent form, indicating that most of the arsenopyrite (As~(1-) originally present in the tailings and soils has been oxidized during weathering reactions. Detailed mineralogical analyses of individual samples have identified up to seven arsenic species, the relative proportions of which appear to affect arsenic bioaccessibility The highest arsenic bioaccessibility (up to 49%) is associated with the presence of calcium-iron arsenate Samples containing arsenic predominantly as arsenopyrite or scorodite have the lowest bioaccessibility (<1%). Other arsenic species identified (predominantly amorphous iron arsenates and arsenic-bearing iron(oxy)hydrox-ides) are associated with intermediate bioaccessibility (1 to 10%). The presence of a more soluble arsenic phase, even at low concentrations, results in increased arsenic bioaccessibility from the mixed arsenic phases associated with tailings and mine-impacted soils.
机译:对来自加拿大新斯科舍省金矿区的被砷污染的尾矿和土壤进行了生物可及性测试和矿物学分析,以研究土壤成分,矿物学和砷生物可及性之间的联系。砷的生物可及性范围为0.1%至49%。在总砷浓度和可生物利用砷浓度之间观察到弱相关性,并且砷生物可利用性与其他元素无关。大量X射线吸收近缘结构分析表明,这些近地表样品中的砷主要以五价形式存在,表明最初存在于尾矿和土壤中的大多数毒砂(As〜(1-))在风化过程中均已被氧化个别样品的详细矿物学分析已鉴定出多达7种砷,其中相对比例似乎会影响砷的生物利用度砷的最高生物利用度(高达49%)与砷酸钙铁样品的存在有关,砷主要包含砷因为毒砂或臭葱石的生物可及性最低(<1%),其他已鉴定的砷物种(主要是非晶态砷酸铁和含砷的铁(氧)羟基氧化物)与中等生物可及性相关(1%至10%)。即使是低浓度的砷,其溶解度也更高,导致混合砷相的砷生物利用度增加有尾矿和受地雷影响的土壤。

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  • 来源
    《Environmental Science & Technology》 |2010年第7期|p.2667-2674|共8页
  • 作者单位

    Environmental Sciences Group, Royal Military College, Kingston, Ontario K7K7B4, Canada;

    rnDepartment of Geological Sciences and Geological Engineering, Queen's University, Kingston, Ontario K7L3N6, Canada;

    rnBritish Geological Survey, Keyworth, Nottingham NG125GG, United Kingdom;

    rnNatural Resources Canada, Geological Survey of Canada (Atlantic), 1 Challenger Drive, Dartmouth, Nova Scotia B2Y4A2, Canada;

    rnEnvironmental Sciences Group, Royal Military College, Kingston, Ontario K7K7B4, Canada;

    rnDepartment of Geological Sciences and Geological Engineering, Queen's University, Kingston, Ontario K7L3N6, Canada;

    rnEnvironmental Sciences Group, Royal Military College, Kingston, Ontario K7K7B4, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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