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In situ remediation of MTBE utilizing ozone

机译:利用臭氧原位修复MTBE

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摘要

There has been a great deal of focus on methyl tertiary butyl ether (MTBE) over the past few years by local, state, and federal government, industry, public stakeholders, the environmental services market, and educational institutions. This focus is, in large part, the result of the widespread detection of MTBE in groundwater and surface waters across the United States. The presence of MTBE in groundwater has been attributed primarily to the release from underground storage tank (UST) systems at gasoline service stations. MTBE's physical and chemical properties are different than other constituents of gasoline that have traditionally been cause for concern [benzene, toluene, ethylbenzene, and xylenes (BTEX)). This difference in properties is why MTBE migrates differently in the subsurface environment and exhibits different constraints relative to mitigation and remediation of MTBE once it has been released to subsurface soils and groundwater. Resource Control Corporation (RCC) has accomplished the remediation of MTBE from subsurface soil and groundwater at multiple sites using ozone. RCC has successfully applied ozone at several sites with different lithologies, geochemistry, and concentrations of constituents of concern. This article presents results from several projects utilizing in situ chemical oxidation with ozone. On these projects MTBE concentrations in groundwater were reduced to remedial objectives usually sooner than anticipated.
机译:过去几年,地方,州和联邦政府,行业,公共利益相关者,环境服务市场和教育机构对甲基叔丁基醚(MTBE)进行了大量关注。这种关注在很大程度上是由于在美国的地下水和地表水中广泛检测MTBE的结果。地下水中MTBE的存在主要归因于汽油加油站从地下储罐(UST)系统释放出来。 MTBE的物理和化学性质不同于传统上引起关注的汽油的其他成分(苯,甲苯,乙苯和二甲苯(BTEX))。这种性质上的差异就是为什么MTBE在地下环境中迁移的方式不同,并且相对于MTBE释放到地下土壤和地下水后的缓解和修复表现出不同的限制。资源控制公司(RCC)已使用臭氧从多个地点的地下土壤和地下水中修复MTBE。 RCC已成功地在具有不同岩性,地球化学和所关注成分浓度的多个地点应用了臭氧。本文介绍了几个利用臭氧进行原位化学氧化的项目的结果。在这些项目中,地下水中MTBE的浓度通常比预期的要早地降低到补救目标。

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