首页> 外文会议>International in Situ and On-Site Bioremediation Symposium; 20070507-10; Baltimore,MD(US) >Compatible Technologies to Improve In Situ Remediation of Chlorinated Solvents: A Case Study
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Compatible Technologies to Improve In Situ Remediation of Chlorinated Solvents: A Case Study

机译:改善氯化溶剂原位修复的兼容技术:一个案例研究

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A chlorinated solvent plume (perchloroethylene or PCE) was discovered in the shallow ground water as a result of historical operating practices surrounding a Houston area dry-cleaning facility. Permeable shallow soil at the site allowed rapid vertical migration at the source and lateral migration in the shallow ground water. This migration resulted in an off-site migration of the plume beneath an apartment complex causing concern for potential vapor intrusion hazards; as well as, a decrease in property value. A groundwater extraction and treatment system was installed to address the dissolved phase concentrations. The system reduced the total volatile organic compound (VOC) concentration in the source area from 115,400 to 36,500 μg/l. However, over time, operating maintenance and cost escalations were exceeding the ongoing remedial benefit. The system was shut down after nine years of operation. A review of available remedial technologies that could be implemented within the physical constraints of the site was conducted. In situ enhanced aerobic bioremediation was selected to address the remaining groundwater concentrations because of the permeability of the formation, the relatively aerobic conditions, and the benefit of reducing the risk of VC accumulation.
机译:由于休斯顿地区干洗设施周围的历史操作惯例,在浅层地下水中发现了氯化溶剂羽流(全氯乙烯或PCE)。现场的渗透性浅土允许源头快速垂直迁移和浅层地下水的横向迁移。这种迁移导致了公寓大楼下方羽流的非现场迁移,从而引起潜在的蒸汽入侵危险。以及财产价值的下降。安装了地下水提取和处理系统以解决溶解相浓度的问题。该系统将源区域的总挥发性有机化合物(VOC)浓度从115,400μg/ l降低到了36,500μg/ l。但是,随着时间的流逝,运营维护和成本上涨已超过了持续的补救收益。运行九年后,该系统已关闭。审查了可以在站点的物理限制内实施的可用补救技术。由于地层的渗透性,相对有氧的条件以及降低VC累积风险的益处,选择了就地增强的好氧生物修复来解决剩余的地下水浓度。

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