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Adsorption behavior of arsenic relating to different natural solids: Soils, stream sediments and peats

机译:与不同自然固体有关的砷的吸附行为:土壤,河流沉积物和泥炭

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摘要

The sorption of anthropogenically derived arsenic to natural solids plays an important role in the mobility and fate of this toxic metalloid in the environment. The adsorption affinity of dissolved As~v and As~Ⅲ to contrasting natural solids was investigated using model solutions of As~v/As~Ⅲ and homogenized samples of soils, stream sediments and peat cores. The adsorption of As~Ⅲ and As~v on investigated sorbents ran mostly according to the Langmuir model, with high correlation factors (>0.7). Sorption capacities varied from 3.5×10~(-3) to 2.0×10~(-1) mmol/g of As, whereas As~Ⅲ achieved a higher adsorption affinity due to the presence of Fe ions in the model solution. The lower horizons of soils and the intact peat, characterized by high enrichment factors of As content (R> 1), represented a more stable system with decreased adsorption/desorption dynamics of As transport. A higher surface activity of solids associated with R< 1, and an increased As mobility in the solid-water interface, prevailed in upper horizons of the soil and intact peat, where the contact with atmospheric deposition was expected. Stream sediments proved to be a well-balanced system with R≈1. A strong As-Fe correlation in the natural solids confirmed As affinity to Fe particles.
机译:人为衍生的砷对天然固体的吸附在该有毒准金属在环境中的迁移和命运中起着重要作用。利用As〜v / As〜Ⅲ模型溶液以及土壤,河流沉积物和泥炭芯的均质样品,研究了溶解的As〜v和As〜Ⅲ对对比的天然固体的吸附亲和力。 As〜Ⅲ和As〜v在所研究的吸附剂上的吸附主要是根据Langmuir模型进行的,相关系数较高(> 0.7)。 As的吸附容量从3.5×10〜(-3)到2.0×10〜(-1)mmol / g不等,而由于模型溶液中存在Fe离子,As〜Ⅲ具有更高的吸附亲和力。土壤的较低层和完整的泥炭,以高含量的砷含量富集因子(R> 1)为特征,代表了一个更稳定的系统,其砷的吸附/解吸动力学降低。与R <1相关的固体的较高表面活性和固-水界面中As迁移率的增加主要发生在土壤和完整泥炭的上层视线中,预计这些区域会与大气沉积物接触。河流沉积物被证明是一个平衡的系统,R≈1。天然固体中强烈的As-Fe相关性证实了As对Fe颗粒的亲和力。

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  • 来源
    《Science of the total environment》 |2012年第1期|p.456-461|共6页
  • 作者单位

    Institute of Chemical Technology in Prague, Department of Solid State Chemistry, Technicka 5, 166 28 Prague 6, Czech Republic;

    Czech Geological Survey, Geotogicka 6, 152 00 Prague 5, Czech Republic;

    Upland Environments Research Unit, School of Environment and Development, The University of Manchester, Manchester MI3 9PL, UK;

    Institute of Chemical Technology in Prague, Technicka 5, 166 28 Prague 6, Czech Republic;

    Institute of Chemical Technology in Prague, Technicka 5, 166 28 Prague 6, Czech Republic;

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

    arsenic; adsorption; soil; stream sediment; peat;

    机译:砷;吸附泥;沉积物泥炭;
  • 入库时间 2022-08-17 13:54:47

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