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Concept of copper mobility and compatibility with lead and cadmium in landfill liners.

机译:铜迁移率概念以及与垃圾填埋场衬纸中铅和镉的相容性的概念。

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摘要

Despite improved liner design, there are still reported incidences of landfill leachate, rich in heavy metals, percolating through to groundwater and threatening ecosystems. This thesis introduces the concept of segregating municipal solid wastes (MSW) according to their major heavy metals and their metal's adsorption compatibility. Each segregated portion can be disposed in a different landfill compartment to minimize leaching of these heavy metals with the greatest bioactive impact. The validity of the concept was evaluated by batch and column retention mobility studies using copper (Cu) alone or with either lead (Pb) or cadmium (Cd) in solutions bearing various pHs. This was supported by selective sequential extraction (SSE) to determine the affinity to specific liner fractions. The following summarizes the procedure used.; Beforehand, a soil column test using sand with 5 and 10% bentonite was conducted to develop an equation predicting liner permeability, k , under simulated field conditions. The column permeability test revealed that a liner with 5% bentonite resulted in a k value which respected the North American criteria of 10-5 m/s.; In the batch experiments, solutions with Cu alone or with Cd or Pb, adjusted to pH of 3.7, 5.5 or 7.5, were applied to sand liners with 0%, 5% or 10% bentonite, having CEC's of 2.0, 6.4, and 10.8 (cmol(+) kg-1 ),{09}respectively. Bentonite, pH and Pb significantly affected Cu adsorption. Cu was adsorbed by the liners at pH 6.5 whereas Cu precipitated at pH >6.5. Cu retention was higher in the presence of Cd than in that of Pb, at all combinations of CEC and pH. Competition between metals was greater in liners with lower CEC and therefore fewer adsorption sites. Limiting Pb in a landfill compartment can improve Cu adsorption at pH's below the precipitating threshold.; In the SSE procedure, the liner samples were centrifuged, decanted from their solutions and each adsorption fraction analyzed for Cu content. Results indicated that the carbonate fraction adsorbed more Cu, and that Pb significantly increased the mobility of Cu due to competition for exchangeable sites.; In the final soil column test using a sand liner with 5% bentonite, the leachate had an initial pH of 3.7. The leaching test confirmed the compatibility of Cu with Cd. The leaching of Cu was greater in the presence of Pb. Total metals in leachate was greater for the Cu-Cd solutions than for the Cu-Pb, because of Cd's relatively high mobility. The sequential extraction results showed again that the carbonate fraction dominated metal adsorption. Total heavy metal leaching followed the order of Cu/Cd > Cu/Pb > Cu alone.; Thus, disposing MSW in landfill compartments based on their heavy metal compatibility can minimize migration of heavy metals.
机译:尽管改进了衬板设计,但仍然有报道称垃圾填埋场渗滤液的发生率很高,其中富含重金属,渗入地下水并威胁到生态系统。本文根据城市固体废物的主要重金属及其对金属的吸附相容性,引入了分类概念。每个隔离部分都可以放置在不同的垃圾填埋场中,以最大程度地降低对这些重金属的浸出,并具有最大的生物活性影响。通过单独使用铜(Cu)或在各种pH值的溶液中使用铅(Pb)或镉(Cd)进行批和柱保留迁移率研究,评估了该概念的有效性。选择性顺序萃取(SSE)支持此操作,以确定对特定衬里级分的亲和力。以下总结了使用的过程。事先,在模拟田野条件下,使用含5%和10%膨润土的砂土进行了土壤柱试验,以开发出预测衬砌渗透率k的方程。柱渗透性测试表明,含有5%膨润土的衬里的k值符合北美标准10-5 m / s。在分批实验中,将单独含Cu或Cd或Pb的溶液(pH值分别调节为3.7、5.5或7.5)应用于含0%,5%或10%膨润土,CEC为2.0、6.4和10.8的砂衬(cmol(+)kg-1),{09}。膨润土,pH和Pb显着影响Cu的吸附。 Cu在pH <6.5时被衬里吸附,而Cu在pH> 6.5时沉淀。在CEC和pH的所有组合下,Cd的存在下Cu的保留都高于Pb。 CEC较低的衬里中金属之间的竞争更大,因此吸附部位更少。在填埋场中限制Pb可以提高pH值低于沉淀阈值时Cu的吸附。在SSE程序中,将衬里样品离心,从其溶液中倾析出,然后分析每个吸附级分的Cu含量。结果表明,碳酸盐级分吸附了更多的铜,而铅由于可交换位的竞争而显着增加了铜的迁移率。在使用含5%膨润土的砂衬的最终土壤柱测试中,渗滤液的初始pH为3.7。浸出试验证实了Cu与Cd的相容性。在铅的存在下,铜的浸出量更大。由于Cd的迁移率较高,因此Cu-Cd溶液中渗滤液中的总金属比Cu-Pb大。顺序萃取结果再次表明,碳酸盐组分占主导地位的金属吸附。重金属总浸出的顺序为:Cu / Cd> Cu / Pb> Cu。因此,根据重金属的相容性在垃圾填埋场中放置MSW可以最大程度地减少重金属的迁移。

著录项

  • 作者

    Kaoser, Saleh.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Geochemistry.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;环境科学基础理论;
  • 关键词

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