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Advances in Groundwater Remediation: Achieving Effective In Situ Delivery of Chemical Oxidants and Amendments

机译:地下水修复的进展:实现有效的化学氧化剂原位输送和修正

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摘要

Contamination of soil and groundwater by organic chemicals represents a major environmental problem in urban areas throughout the United States and other industrialized nations. In situ chemical oxidation (ISCO) has emerged as one of several viable methods for remediation of organically contaminated sites. Many of the most prevalent organic contaminants of concern at sites in urban areas (e.g., chlorinated solvents, motor and heating fuels) can be destroyed using catalyzed hydrogen peroxide (H_2O_2), potassium permanganate (KMnO_4), sodium persulfate (Na_2S_2O_8), or ozone (O_3) delivered into the subsurface using injection wells, probes, or other techniques. A continuing challenge for ISCO, as well as other in situ remediation technologies, is how to achieve in situ delivery and obtain simultaneous contact between treatment fluids, such as oxidants and amendments, and the target contaminants. During the past few years, advances have been made in several key areas including knowledge and know-how associated with: (1) use of amendments for enhanced delivery and distribution of treatment fluids in heterogeneous settings with zones of low permeability media, (2) use of direct push technology for targeted high resolution delivery of treatment fluids, and (3) use of monitoring and sensing methods for direct feedback for delivery control and evaluation of remediation effectiveness. This paper provides a summary of ISCO and highlights ongoing efforts to advance the effective in situ delivery of treatment fluids, with an emphasis on chemical oxidants and amendments, which can help achieve cleanup goals and protect groundwater and associated drinking water resources.
机译:有机化学物质对土壤和地下水的污染是整个美国和其他工业化国家城市地区的主要环境问题。原位化学氧化(ISCO)已成为补救有机污染部位的几种可行方法之一。可以使用催化的过氧化氢(H_2O_2),高锰酸钾(KMnO_4),过硫酸钠(Na_2S_2O_8)或臭氧来销毁城市地区所关注的许多最普遍的有机污染物(例如,氯化溶剂,汽车燃料和取暖燃料) (O_3)使用注入井,探针或其他技术输送到地下。对于ISCO以及其他原位修复技术而言,持续的挑战是如何实现原位递送,以及如何在处理液(例如氧化剂和改良剂)与目标污染物之间实现同时接触。在过去的几年中,在以下几个关键领域取得了进展,包括与以下方面有关的知识和专有技术:(1)在低渗透性介质区域的非均质环境中使用修正剂来增强处理液的输送和分配,使用直接推动技术以有针对性的高分辨率输送治疗液,以及(3)使用监测和传感方法以直接反馈进行输送控制和评估修复效果。本文提供了ISCO的摘要,并着重说明了为提高处理液的有效原位输送而正在进行的努力,重点是化学氧化剂和修正剂,可以帮助实现净化目标并保护地下水和相关的饮用水资源。

著录项

  • 来源
    《Clean soil and safe water.》|2011年|p.197-212|共16页
  • 会议地点 Belgrade(RS)
  • 作者单位

    Environmental Science and Engineering, Colorado School of Mines, 112 Coolbaugh Hall,Golden, CO 80401, USA;

    Institute for a Sustainable Environment, Clarkson University, 8 Clarkson Avenue,Potsdam, NY 13676-1402, USA;

    Department of Environmental Engineering, Technical University of Denmark,Anker Engelunds Vej 1, 2800 Kgs, Lyngby, Denmark;

    Environmental Science and Engineering, Colorado School of Mines, 112 Coolbaugh Hall,Golden, CO 80401, USA;

    Environmental Science and Engineering, Colorado School of Mines, 112 Coolbaugh Hall,Golden, CO 80401, USA;

    Department of Environmental Engineering, Technical University of Denmark,Anker Engelunds Vej 1, 2800 Kgs, Lyngby, Denmark;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境保护管理;环境保护管理;
  • 关键词

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