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Impact of carbonate and heavy metals on micro-structural variations of clayey soils

机译:碳酸盐和重金属对黏性土壤微观结构变化的影响

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摘要

The sorption characteristics of soils, which are fundamental to contaminant attenuation, depend on many soil-related and contaminant-related factors. Chief among the soil-related factors is soil composition. This study investigates smectite-calcite-contaminant and kaolinite-calcite-contaminant interactions for different heavy metals (HM) concentrations in order to address the impact of carbonate and heavy metals on micro-structural variations of clayey soils. To achieve the stated objectives, several batch equilibrium, consolidation and XRD (X-ray diffraction) analyses were performed. These experiments were conducted on a bentonite (smectite) sample, a kaolinite sample and several mixtures of kaolinite and carbonate. Furthermore, this study investigates the effect of HM cations in a smectite clay, with and without the benefit of sodium carbonate and sodium nitrate, with respect to the mixture's consolidation behaviour and transmission characteristics. Characterization experiments conducted in the study included determination of changes in the buffering capacity and microstructure characteristics of the clay (smectite and kaolinite) relative to the presence of varying concentrations and types of pore fluids and physical experiments focused on the consolidation behaviour of the smectite samples. The role of buffering capacity and macrostructure and microstructure changes on the transient (evolutionary) characteristics and properties of the clays can be seen from the results obtained. Double-layer swelling forces and buffering capacity are seen to be dominant factors in the performance of the clays — apparently through their influence on formation and restructuring of microstructures in the overall clay-carbonate mixtures. Exposure of the buffered smectite to Cu2+ ions in the midst of consolidation results in the added feature of chemico-osmotic consolidation — depending on the concentration of Cu2+ ions available, thus raising the question of chemical path dependency or chemical history on consolidation performance. Furthermore, the process of interaction of the kaolinite-carbonate and HM ions was monitored through XRD analyses of the soil samples at various stages of the tests. The results reported in this paper show that the consequence of a tighter aggregation of clay particles after soil-contaminant interaction causes the development or restructuring of microstructures into tighter micro-structural units. This produces a macrostructure with more macro-pores than the original natural clay sample which causes a reduction in XRD peak intensity of laboratory contaminated soil samples. It can be seen that once the quantity of laboratory added carbonate is increased, the addition of HM to soil sample has a minimal impact on the micro-structural change of clayey soils.
机译:土壤的吸附特性是污染物衰减的基础,它取决于许多与土壤有关和与污染物有关的因素。与土壤有关的主要因素是土壤组成。这项研究调查了不同重金属(HM)浓度的蒙脱石-方解石污染物和高岭石-方解石污染物的相互作用,以解决碳酸盐和重金属对黏性土壤微观结构变化的影响。为了达到所述目的,进行了几批平衡,固结和XRD(X射线衍射)分析。这些实验是在膨润土(蒙脱石)样品,高岭石样品以及高岭石和碳酸盐的几种混合物上进行的。此外,这项研究调查了蒙脱石粘土中HM阳离子对混合物固结行为和传输特性的影响(有无碳酸钠和硝酸钠的影响)。该研究中进行的表征实验包括确定粘土(蒙皂石和高岭石)相对于存在不同浓度和类型的孔隙流体的缓冲能力和微观结构特征的变化,以及着重于蒙脱石样品固结行为的物理实验。从获得的结果可以看出,缓冲能力和宏观结构以及微观结构变化对粘土的瞬时(演化)特性和性质的作用。双层溶胀力和缓冲能力被认为是粘土性能的主要因素-显然是由于它们对整个粘土-碳酸盐混合物中微观结构的形成和重构的影响。在固结过程中,缓冲蒙脱石暴露于Cu2 +离子会导致化学渗透固结的附加功能-取决于可用的Cu2 +离子的浓度,因此引发了化学路径依赖性或化学历史对固结性能的问题。此外,通过在测试的各个阶段对土壤样品进行XRD分析,可以监测高岭石碳酸根与HM离子的相互作用过程。本文报道的结果表明,土壤污染物相互作用后粘土颗粒更紧密聚集的结果导致微观结构发展或重组为更紧密的微观结构单元。与原始的天然粘土样品相比,这产生了具有更大孔隙的宏观结构,这导致了实验室污染土壤样品的XRD峰强度降低。可以看出,一旦实验室添加的碳酸盐数量增加,向土壤样品中添加HM对黏性土壤的微观结构变化影响最小。

著录项

  • 来源
    《Applied clay science》 |2011年第3期|p.228-234|共7页
  • 作者单位

    Faculty of Engineering, Bu-Ali Sina University, Hamedan, Iran;

    North Saanich, B.C., Canada;

    Faculty of Engineering, Bu-Ali Sina University, Hamedan, Iran;

    Faculty of Engineering, Bu-Ali Sina University, Hamedan, Iran;

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

    clay; carbonate; heavy metal; xrd; consolidation; microstructure;

    机译:粘土;碳酸盐;重金属;xrd;固结;微观结构;

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