...
首页> 外文期刊>Separation and Purification Technology >Effects of electrolyte characteristics on soil conductivity and current in electrokinetic remediation of lead-contaminated soil
【24h】

Effects of electrolyte characteristics on soil conductivity and current in electrokinetic remediation of lead-contaminated soil

机译:电动势修复铅污染土壤中电解质特性对土壤电导率和电流的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Characteristics of electrolytes as boundary conditions of soil affect the soil ionic composition and conductivity during electrokinetic remediation (EKR), which directly affect the effectiveness, energy efficiency and duration of EKR. This experiment studied how the characteristics of catholytes and ano-lytes affect the soil conductivity. The results showed that H~+ ions of higher ionic conductivity induced the increase in soil conductivity; by contrast, Fe~(2+) ions of lower ionic conductivity induced the decrease in soil conductivity. This experiment also found that when H~+ ions from anolyte met Ac~- ions from cath-olyte in soil, they associated into neutral HAc molecules resulting in the decrease in the soil conductivity, which reached the lowest at pH ≈ 3.7. This proton-transfer reaction induced a potential gradient peak which caused a lead-focusing in the soil. The pH value for lead desorption from soil is no more than 4.0, and therefore HAc is not an optimal candidate for catholytes in the electrokinetic remediation of lead-contaminated soil. Results also showed that Fe~(2+) ions did not enhance desorption of lead from soil. This study provided a methodology to explain the change pattern of soil conductivity and current, and guide the selection of electrolytes.
机译:电解质作为土壤边界条件的特性会在电动修复(EKR)期间影响土壤离子组成和电导率,这直接影响EKR的有效性,能效和持续时间。该实验研究了阴极电解液和阳极电解液的特性如何影响土壤电导率。结果表明,较高的离子电导率的H〜+离子引起土壤电导率的增加。相反,较低离子电导率的Fe〜(2+)离子引起土壤电导率的降低。该实验还发现,当阳极电解液中的H〜+离子与土壤中阴极电解液中的Ac〜-离子相遇时,它们缔合为中性HAc分子,导致土壤电导率降低,在pH≈3.7时达到最低。质子转移反应引起一个潜在的梯度峰,导致土壤中的铅聚集。铅从土壤中解吸的pH值不超过4.0,因此在电动修复铅污染的土壤中,HAc并不是阴极电解液的最佳候选者。结果还表明,Fe〜(2+)离子不能促进铅从土壤中的解吸。这项研究提供了一种方法来解释土壤电导率和电流的变化模式,并指导电解质的选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号