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Effects of Dissolved Carbonate on Arsenic Adsorption and Mobility

机译:溶解碳酸盐对砷吸附和迁移的影响

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摘要

The effects of high aqueous carbonate concentrations on arsenic mobility and transport in the subsurface were studied in synthetic iron oxide-coated sand column experiments.Elevated aqueous carbonate concentrations in groundwater have been studied and linked,by some authors,to increased aqueous As concentrations in natural waters.This study found that increasing carbonate concentrations had relatively little effect on As(V) adsorption to the iron oxide-coated sand surface at pH 7.The adsorption of As(V) decreased marginally when the C0_2(g) partial pressure increased from 10~(-3.5) to 10~(-1.8) atm,despite a 50-fold increase in total dissolved carbonate (0.072 to 3.58 mM).Increasing the CO_2(g) partial pressure to 10~(-1.0) atm resulted in only a slight decrease in As(V) adsorption and increase in mobility,despite a >300-fold increase in total dissolved carbonate (to 22.7 mM).When compared to phosphate,a known competitive anion,carbonate mobilized less adsorbed As(V) than was mobilized by phosphate,even when present in much higher concentrations than phosphate.This was also true for an experiment with lower pore water velocity and an experiment where As(lll) was introduced instead of As(V).Our experiments conclude that while carbonate anions do compete with As for adsorption to iron oxide-coated sand,the competitive effect is relatively small with regard to the total concentration of adsorbed As and the potential competitive effects of phosphate.
机译:在合成氧化铁涂层砂柱实验中研究了高碳酸盐水溶液浓度对地下砷迁移和迁移的影响。一些作者研究了地下水中碳酸盐水溶液的浓度升高,并将其与天然水中砷的增加联系起来。这项研究发现,增加碳酸盐浓度对pH值为7的As(V)吸附到铁氧化物涂层的砂表面的吸附影响相对较小。当C0_2(g)分压从10〜(-3.5)至10〜(-1.8)atm,尽管总溶解碳酸盐(0.072至3.58 mM)增加了50倍。将CO_2(g)分压增加至10〜(-1.0)atm尽管溶解的碳酸根总量增加了300倍以上(至22.7 mM),但As(V)的吸附量仅略有下降并增加了迁移率。比动员磷酸根离子,即使浓度比磷酸根离子高得多。对于孔隙水速度较低的实验和引入As(III)代替As(V)的实验也是如此。我们的实验得出结论,尽管碳酸根阴离子确实与As竞争吸附在铁氧化物涂层的沙子上,就吸附的As的总浓度和磷酸盐的潜在竞争效果而言,竞争效果相对较小。

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  • 来源
    《Environmental Science & Technology》 |2005年第20期|p.7875-7882|共8页
  • 作者单位

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849;

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849;

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849;

    Department of Civil Engineering,238 Harbert Engineering Center,Auburn University,Auburn,Alabama 36849;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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