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Proton Buffering and Metal Leaching in Sandy Soils

机译:沙质土壤中的质子缓冲和金属浸出

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摘要

Recent developments in acidification research focused on the leaching of metals from contaminated soil.In this paper the buffering of sandy soils upon acidification is studied in relation to the release of major (Al,Ca,Mg) and trace metals (Cu,Cd,Ni,Zn) from the soil reactive surface.The buffering process and the (de)sorption of metals are described with a mechanistic multisurface model,expressing the sorption onto different soil surfaces (organic matter,clay,Fe (hydr)oxides).The pH of sandy soil samples is predicted upon proton addition in combination with the behavior of major and trace metals.Acidification of contaminated sandy soil samples,with different pH levels and metal contents,is performed in a flow-through reactor by flushing the samples with acid solution.Acidification has taken place in successive steps of proton addition and followed by sampling.Prediction of pH upon acidification with a multisurface model gives satisfying results for all samples studied.The pH is modeled reasonably well between pH 6 and 4.Below pH 4 the predicted pH values are slightly too low,probably due to the buffering by Al-containing minerals (e.g.,Al hydroxide),which are not included in the model.Desorption of major and trace metals upon pH decrease is,in general,predicted well,within a factor of 1-5 on a linear scale.Overall prediction of proton buffering in combination with desorption of metals in sandy soil samples,over a wide pH range and metal content,is done quite well for the studied metals with the multisurface model.
机译:酸化研究的最新进展侧重于从污染土壤中浸出金属。本文研究了酸化过程中沙土的缓冲作用与主要(Al,Ca,Mg)和微量金属(Cu,Cd,Ni)的释放有关。 (Zn)从土壤反应表面吸收。金属的缓冲过程和(脱)吸附用机械多表面模型描述,表达了在不同土壤表面(有机物,粘土,Fe(氢)氧化物)的吸附。质子添加后结合主要金属和痕量金属的行为预测沙土样品的数量。在流通式反应器中,通过用酸溶液冲洗样品,对具有不同pH值和金属含量的被污染沙土样品进行酸化在质子添加的连续步骤中进行了酸化处理,然后进行采样。使用多表面模型对酸化后的pH进行预测可以为所有研究的样品提供令人满意的结果。 pH值在6和4之间的范围内相当合适。低于pH值4时,预测的pH值会太低,这可能是由于模型中未包含的含Al矿物(例如,氢氧化铝)的缓冲引起的。通常,在降低pH值的情况下,对金属进行线性预测的范围在1-5范围之内。在较宽的pH范围和金属含量范围内,质子缓冲与金属在土壤中的解吸相结合的总体预测是用多表面模型对所研究的金属做得很好。

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  • 来源
    《Environmental Science & Technology》 |2005年第20期|p.7901-7908|共8页
  • 作者单位

    Department Of Soil Quality,Wageningen University,P.O.Box 8005,6700 EC Wageningen,The Netherlands and Division of Groundwater and Soil,TNO Environment and Geosciences,The Netherlands;

    Department Of Soil Quality,Wageningen University,P.O.Box 8005,6700 EC Wageningen,The Netherlands and Division of Groundwater and Soil,TNO Environment and Geosciences,The Netherlands;

    Department Of Soil Quality,Wageningen University,P.O.Box 8005,6700 EC Wageningen,The Netherlands and Division of Groundwater and Soil,TNO Environment and Geosciences,The Netherlands;

    Department Of Soil Quality,Wageningen University,P.O.Box 8005,6700 EC Wageningen,The Netherlands and Division of Groundwater and Soil,TNO Environment and Geosciences,The Netherlands;

  • 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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