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Release behavior of copper and zinc from sandy soils

机译:沙质土壤中铜和锌的释放行为

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The concentrations and chemical forms of copper(Cu) and zinc(Zn) in surface soils directly influence the movement of Cu and Zn. In this study, thirteen sandy soil samples with a wide range of total Cu and Zn concentrations were collected for evaluating the relationships between Cu and Zn release and extraction time, ratio of soil to water, pH and electrolyte types. The results indicated that Cu released in batch extraction that represents long-term leaching was mainly from exchangeable, and carbonate bound Cu fractions, and Zn released in the batch extraction was mainly from its carbonate bound fraction. However, the Cu and Zn leached from the soils using the column leaching that represents short-term leaching were mainly from their exchangeable fractions. Soil column leaching at different pH values indicated that the amounts of leached Zn and Cu were greatly affected by pH. The Cu and Zn release experiments with varying extraction times and ratio of soil to water suggest that long-term water-logging in the soils after rain may increase contact time of the soils with water and the release of Cu and Zn to water from the soils, and total amounts of Cu or Zn released from the soils increase, but the Cu or Zn concentration in the surface runoff decrease with increasing rainfall intensity. The increased Ca concentration in soil solution increased stability of organic matter-mineral complexes and might decrease the dissolution of organic matter, and thus decreased the release of Cu-binding component of organic matter. However, high concentration of Na in the soil solution increased the dispersion of the organic matter-mineral complexes and increased dissolution of organic matter and the release of Cu from the soils.
机译:表层土壤中铜(Cu)和锌(Zn)的浓度和化学形式直接影响铜和锌的运动。在这项研究中,收集了13个含沙量很大的铜和锌总浓度的土壤样品,以评估铜和锌释放与提取时间,土壤与水的比例,pH和电解质类型之间的关系。结果表明,分批萃取中释放的代表长期浸出的铜主要来自可交换的碳酸盐结合的铜馏分,分批萃取中释放的锌主要来自其与碳酸盐结合的馏分。然而,使用代表短期浸出的柱浸从土壤中浸出的铜和锌主要来自其可交换部分。不同pH值下土壤柱的淋溶表明Zn和Cu的淋溶量受pH的影响很大。不同提取时间和土壤与水的比例不同的铜和锌释放实验表明,雨后土壤中的长期涝渍可能会增加土壤与水的接触时间,以及土壤中铜和锌向水中的释放,土壤中释放的铜或锌总量增加,但随着降雨强度的增加,地表径流中铜或锌的浓度降低。土壤溶液中Ca浓度的增加增加了有机物-矿物配合物的稳定性,并可能减少了有机物的溶解,从而减少了有机物中Cu结合成分的释放。然而,土壤溶液中高浓度的Na会增加有机物-矿物配合物的分散,并增加有机物的溶解度和土壤中Cu的释放。

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