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Contributions of natural arsenic sources to surface waters on a high grade arsenic-geochemical anomaly (French Massif Central)

机译:天然砷源对高级砷地球化学异常(法国Massif Central)地表水的贡献

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摘要

The subwatershed studied drains a non-exploited area of the St-Yrieix-la-Perche gold mining district (French Massif Central) and it is located on an arsenic (As) geochemical anomaly. In this context, it is important to know the geochemical processes involved in the transfer of As from solid environmental compartments to the aquatic system. The stream showed a temporal variation of dissolved As (A_(sd)) content from 69.4 μg.L~(-1) in the low flow period to 7.5 μg.L~(-1) in the high flow period. Upstream, ground- and wetland waters had A_(sd) concentrations up to 215 and 169 μg.L~(-1), respectively. The main representative As sources were determined at the subwatershed scale with in-situ monitoring of major and trace element contents in different waters and single extraction experiments. The As sources to stream water could be regrouped into two components: (ⅰ) one As-rich group (mainly in the low flow period) with groundwater, gallery exploration outlet waters and wetland waters, and (ⅱ) one As-poor group (mainly in the high flow period) with rainwaters and soil solutions. In the soil profile, A_(sd) showed a significant decrease from 52.4 μg.L~(-1) in the 0-5 cm superficial soil horizon to 14.4 μg.L~(-1) in the 135-165 cm deep soil horizon. This decrease may be related to pedogenic processes and suggests an evolution of As-bearing phase stability through the soil profile. Quantification of A_(sd) fluxes at the sub-watershed scale showed that groundwater was the major input (>80%) of A_(sd) to surface water. Moreover, natural weathering of the As-rich solid phases showed an impact on the As release, mainly from superficial soil horizons with runoff contributing about 5% to As input in surface water.
机译:研究的该分水岭排泄了St-Yrieix-la-Perche金矿开采区(法国地块中部)的一个未开采区域,该区域位于砷(As)地球化学异常上。在这种情况下,重要的是要了解与砷从固体环境区室到水生系统的转移有关的地球化学过程。物流显示出溶解态As(A_(sd))含量随时间的变化,从低流量时期的69.4μg.L〜(-1)到高流量时期的7.5μg.L〜(-1)。上游,地下水和湿地水的A_(sd)浓度分别高达215和169μg.L〜(-1)。主要代表性的砷源是在小流域范围内确定的,并通过现场监测不同水域中的主要和微量元素含量以及一次提取实验来确定。流水的砷源可分为两个部分:(ⅰ)一个富含As的组(主要是在低流量时期),含地下水,廊道勘探出口水和湿地水,以及(ⅱ)一个As贫乏的组(主要在高流量时期)与雨水和土壤溶液。在土壤剖面中,A_(sd)显着降低,从表层0-5 cm的52.4μg.L〜(-1)降至深度135-165 cm的14.4μg.L〜(-1)。地平线。这种减少可能与成岩过程有关,并暗示了土壤剖面中含砷相稳定性的演变。在小流域尺度上对A_(sd)通量的定量分析表明,地下水是A_(sd)对地表水的主要输入(> 80%)。此外,富砷固相的自然风化对砷的释放有影响,主要来自表层土壤,径流贡献了地表水中砷的约5%。

著录项

  • 来源
    《Science of the total environment》 |2012年第15期|p.257-268|共12页
  • 作者单位

    Universite de Limoges, GRESE EA 4330, F.S.T.. 123 av. Albert Thomas, 87060 Limoges Cedex, France;

    University Francois Rabelais de Tours, EA 6293 GeHC0, F.S.T., Parc de Crandmont, 37200 Tours, France,Universite Francois Rabelais de Tours, EA 6293 GeHCO, Faculte des Sciences et Techniques, Pare de Crandmont, 37000 Tours Cedex, France;

    McCill University, 21111 Lakeshore, Ste Anne-de-Bellevue, Canada H9X 3V9;

    Natural Resources Canada, CANMET-MMSL, 555 Booth, Ottawa, Canada KM 0C1;

    Service Environnement et Procedes, BRGM, 3 av. Claude Cuillemin, 45060 Orleans Cedex 2, France;

    Universite de Limoges, GRESE EA 4330, F.S.T.. 123 av. Albert Thomas, 87060 Limoges Cedex, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dissolved arsenic; flux; runoff; weathering; soil; box model;

    机译:溶解砷通量径流;风化;泥;盒子模型;
  • 入库时间 2022-08-17 13:54:45

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