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首页> 外文期刊>Science of the total environment >Pilot-scale ISCO treatment of a MtBE contaminated site using a Fenton-like process
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Pilot-scale ISCO treatment of a MtBE contaminated site using a Fenton-like process

机译:使用Fenton样工艺对MtBE污染部位进行中试ISCO处理

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摘要

This paper reports about a pilot-scale feasibility study of In-Situ Chemical Oxidation (ISCO) application based on the use of stabilized hydrogen peroxide catalyzed by naturally occurring iron minerals (Fenton-like process) to a site formerly used for fuel storage and contaminated by MtBE. The stratigraphy of the site consists of a 2-3 meter backfill layer followed by a 3-4 meter low permeability layer, that confines the main aquifer, affected by a widespread MtBE groundwater contamination with concentrations up to 4000 μg/L, also with the presence of petroleum hydrocarbons. The design of the pilot-scale treatment was based on the integration of the results obtained from experimental and numerical modeling accounting for the technological and regulatory constraints existing in the site to be remediated. In particular, lab-scale batch tests allowed the selection of the most suitable operating conditions. Then, this information was implemented in a numerical software that allowed to define the injection and monitoring layout and to predict the propagation of hydrogen peroxide in groundwater. The pilot-scale field results confirmed the effective propagation of hydrogen peroxide in nearly all the target area (around 75 m~2 using 3 injection wells). As far as the MtBE removal is concerned, the ISCO application allowed us to meet the clean-up goals in an area of 60 m~2. Besides, the concentration of TBA, i.e. a potential by-product of MtBE oxidation, was actually reduced after the ISCO treatment. The results of the pilot-scale test suggest that ISCO may be a suitable option for the remediation of the groundwater plume contaminated by MtBE, providing the background data for the design and cost-estimate of the full-scale treatment.
机译:本文基于原铁矿物质(芬顿样工艺)催化的稳定过氧化氢在原先用于燃料存储和污染的场所的使用,对原位化学氧化(ISCO)应用进行了中试可行性研究报告。由MtBE。该地点的地层由一个2-3米的回填层和一个3-4米的低渗透层组成,该层限制了主要含水层,受到广泛的MtBE地下水污染的影响,浓度高达4000μg/ L,存在石油烃。中试规模处理的设计基于对从实验和数值模型获得的结果的综合考虑,考虑了要修复的场地中存在的技术和法规限制。特别是,实验室规模的批处理测试允许选择最合适的操作条件。然后,该信息在数字软件中实现,该软件可以定义注入和监测布局,并预测过氧化氢在地下水中的传播。中试规模的现场结果证实了过氧化氢在几乎所有目标区域(使用3个注入井,约75 m〜2)的有效扩散。就去除MtBE而言,ISCO应用程序使我们能够满足60 m〜2的清理目标。此外,在ISCO处理后,实际上降低了TBA的浓度,即MtBE氧化的潜在副产物。中试测试的结果表明,ISCO可能是修复MtBE污染的地下水羽流的合适选择,为全面设计的设计和成本估算提供了背景数据。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|726-738|共13页
  • 作者单位

    Eni Refining & Marketing, Via Laurentina 449,00142 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico, 1, 00133 Rome, Italy;

    Eni Refining & Marketing, Via Laurentina 449,00142 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico, 1, 00133 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico, 1, 00133 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico, 1, 00133 Rome, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Groundwater contamination; MtBE; In-Situ Chemical Oxidation; Hydrogen peroxide; Pilot test;

    机译:地下水污染;MtBE;原位化学氧化;过氧化氢飞行员考试;

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