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Impact of Persulfate Chemical Oxidation on Soil Properties and Metal Mobility.

机译:过硫酸盐化学氧化对土壤性质和金属迁移率的影响。

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摘要

Persulfate In situ chemical oxidation (ISCO) is a useful technology for remediation of organic contaminants at hazardous waste sites. Application of persulfate ISCO to sites with metal co-contaminants or with high natural metals concentrations presents a complex challenge to remediation. Addition of persulfate and amendments can lead to complex interactions in the subsurface, altering geochemical conditions and processes, thereby affecting metals mobility. Limited research has been conducted to investigate these complex interactions and their ultimate impact on risk associated with the treated site. The objectives of this research were to evaluate the impact of unactivated and activated persulfate on geochemical properties and on metal mobility, and to understand the mechanisms that cause metal mobilization under conditions created by persulfate ISCO.;Laboratory studies with controlled, bench-scale batch-reaction systems were employed to examine these interactions. Three field soils with different characteristics were used to study the impact of unactivated and activated persulfate (activated with Fe(II), Fe(II)-EDTA, and high pH) on the soil properties (i.e., soil organic carbon, Fe and Mn content, pH, oxidation reduction potential (ORP), and cation exchange capacity (CEC). Release of two metals -- cadmium (non-redox sensitive metal) and chromium (redox sensitive metal) from soils following unactivated and activated persulfate treatment was determined to study the mechanisms of metal mobilization.;The results of this research indicate that persulfate oxidation can promote changes in the soil properties and metal mobility, and these changes depend on the soil type and the amendment used for activation of persulfate. Different mechanisms, which included desorption and dissolution of metals at low pH, destruction of sorption sites, formation of soluble metal-organic complexes, and oxidation of metal, were responsible for metal mobilization based on the characteristics of the metal, nature of the soil, and the persulfate application (i.e. unactivated or activated).;Results of this research emphasize the importance of performing comprehensive geochemical evaluations of a site and careful selection of activation methods to avoid potential deleterious effects of persulfate ISCO on constituents of subsurface and metal mobility.
机译:过硫酸盐原位化学氧化(ISCO)是用于补救危险废物场所中有机污染物的有用技术。将过硫酸盐ISCO应用于具有金属共污染物或高天然金属浓度的场所对修复提出了复杂的挑战。过硫酸盐的添加和改性会导致地下复杂的相互作用,从而改变地球化学条件和过程,从而影响金属的流动性。已经进行了有限的研究来调查这些复杂的相互作用及其对与治疗部位相关的风险的最终影响。这项研究的目的是评估未活化和活化的过硫酸盐对地球化学性质和金属迁移率的影响,并了解在过硫酸盐ISCO产生的条件下引起金属迁移的机制。反应系统被用来检查这些相互作用。使用三种不同特性的田间土壤来研究未活化和活化的过硫酸盐(用Fe(II),Fe(II)-EDTA和高pH活化)对土壤特性(即土壤有机碳,Fe和Mn的影响)含量,pH,氧化还原电位(ORP)和阳离子交换容量(CEC)。测定了未活化和活化的过硫酸盐处理后从土壤中释放的两种金属-镉(非氧化还原敏感金属)和铬(氧化还原敏感金属)研究结果表明,过硫酸盐的氧化可以促进土壤性质和金属迁移率的变化,这些变化取决于土壤类型和过硫酸盐活化所用的改良剂。包括在低pH值下金属的解吸和溶解,吸附位点的破坏,可溶性金属-有机络合物的形成以及金属的氧化,这些都是基于金属的特性,土壤的性质以及过硫酸盐的施用(即这项研究的结果强调了对场地进行全面地球化学评估和谨慎选择活化方法的重要性,以避免过硫酸盐ISCO对地下和金属迁移率的潜在有害影响。

著录项

  • 作者

    Kaur, Kawalpreet.;

  • 作者单位

    Clarkson University.;

  • 授予单位 Clarkson University.;
  • 学科 Environmental science.;Environmental engineering.;Geochemistry.;Inorganic chemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 289 p.
  • 总页数 289
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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