首页> 外文期刊>Environmental Science & Technology >Solid- and Solution-Phase Organics Dictate Copper Distribution and Speciation in Multicomponent Systems Containing Ferrihydrite, Organic Matter, and Montmorillonite
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Solid- and Solution-Phase Organics Dictate Copper Distribution and Speciation in Multicomponent Systems Containing Ferrihydrite, Organic Matter, and Montmorillonite

机译:固相和固溶相有机物在含铁水合物,有机物和蒙脱土的多组分体系中决定铜的分布和形态。

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摘要

Copper retention by ferrihydrite, leaf compost and montmorillonite was studied over 8 months in systems that emulate a natural soil where different solid phases compete for Cu through a common solution in a compartmentalized batch reactor. Copper speciation in solution (total dissolved, DPASV-labile, and free) and exchangeable and total Cu in individual solid phases were determined. Organic carbon in solution (DOC) and that retained by the mineral phases were also determined. Cu sorption reached steady-state after 4 months and accounted for 80% of the Cu initially added to the system (0.15 mg L~(-1)). The remaining 20% stayed in solution as nonlabile (82.8%), labile (17%), and free (0.2%) Cu species. Copper sorption followed the order organic matter > silicate clays > iron oxides. Within each solid phase, exchangeable Cu was <10% of the total Cu sorbed. DOC reached steady state (22 mg L~(-1)) after 4 months and seemed to control Cu solubility and sorption behavior by the formation of soluble Cu-DOC complexes and by sorbing onto the mineral phases. DOC sorption onto ferrihydrite prevented Cu retention by this solid phase. Using a multicomponent system and 8 months equilibrations, we were able to capture some of the more important aspects of the complexity of soil environments bytaking into accountdiffusion processes and competition among solid- and solution-phase soil constituents in the retention of a metal cation.
机译:在模拟天然土壤的系统中,历时8个月研究了水铁矿,叶片堆肥和蒙脱土对铜的保留,其中不同的固相通过隔室式分批反应器中的通用溶液竞争铜。确定了溶液中的铜形态(总溶解度,对DPASV不稳定和游离态)以及各个固相中可交换的铜和总铜。还确定了溶液中的有机碳(DOC)和矿物相所保留的有机碳。 4个月后,Cu的吸附达到稳态,占最初添加到系统中的Cu的80%(0.15 mg L〜(-1))。其余20%的溶液以非不稳定(82.8%),不稳定(17%)和游离(0.2%)的铜物质形式存在。铜的吸附顺序为有机物>硅酸盐粘土>氧化铁。在每个固相中,可交换的Cu小于吸附的总Cu的10%。 DOC在4个月后达到稳定状态(22 mg L〜(-1)),似乎通过形成可溶性Cu-DOC络合物和吸附到矿物相上来控制Cu的溶解度和吸附行为。 DOC吸附到三水铁矿上可防止该固相保留Cu。通过使用多组分系统和8个月的平衡,我们能够通过考虑扩散过程以及固相和溶液相土壤成分在保留金属阳离子方面的竞争,来捕获土壤环境复杂性的一些更重要的方面。

著录项

  • 来源
    《Environmental Science & Technology》 |2008年第8期|p.2833-2838|共6页
  • 作者单位

    Department of Crop and Soil Sciences, The Pennsylvania State University, 116 ASI Building, University Park, Pennsylvania 16802;

  • 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

  • 入库时间 2022-08-17 14:05:21

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