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使用脉冲式泵送处理技术控制 TCE 污染地下水的水力阻隔:性能评估和蒸气入侵风险评估。

Hydraulic containment of TCE contaminated groundwater using pulsed pump-and-treat: Performance evaluation and vapor intrusion risk assessment.

机构信息

Department of Earth and Environmental Sciences, Korea University, 145, Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

Department of Earth and Environmental Sciences, Korea University, 145, Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

出版信息

Environ Pollut. 2024 Apr 15;347:123683. doi: 10.1016/j.envpol.2024.123683. Epub 2024 Feb 28.

Abstract

Remedial actions for groundwater contamination such as containment, in-situ remediation, and pump-and-treat have been developed. This study investigates the hydraulic containment of Trichloroethylene (TCE) contaminated groundwater by using pulsed pump-and-treat technology. The hypothetical research site assumed the operation of pulsed pump-and-treat to manage groundwater contaminated with 0.1 mg/L of TCE. at the pump-and-treat facility. Numerical models, employing MODFLOW and MT3DMS for groundwater flow and contamination simulations, were used for case studies to evaluate the performance and risks of pump-and-treat operation strategies. Evaluation criteria included capture width, removal efficiency, and contaminant leakage. Health risks from TCE leakage were assessed using a vapor intrusion risk assessment tool in adjacent areas. In the facility-scale case study, the capture width of the pump-and-treat was controlled by pumping/injection well operations, including schedules and rates. Pumping/injection well configurations impacted facility efficiencies. Pulsed operation led to TCE leakage downstream. Site-scale case studies simulated contaminant transport through pump-and-treat considering various operation stages (continuous; pulsed), as well as various reactions of TCE in subsurface environment (non-reactive; sorption; sorption and biodegradation). Assuming non-reactive tracer, TCE in groundwater was effectively blocked during continuous operation stage but released downstream in the following pulsed operation stage. Considering chemical reactions, the influences of the pump-and-treat operation followed similar trends of the non-reactive tracer but occurred at delayed times. Groundwater contamination levels were reduced through biodegradation. Cancer and non-cancer risks could occur at points of exposure (POEs) where the contamination levels approached or fell below TCE groundwater standards.

摘要

已经开发了地下水污染的补救措施,如遏制、原位修复和抽吸处理。本研究采用脉冲抽吸处理技术调查了三氯乙烯(TCE)污染地下水的水力遏制。假设研究地点在处理设施中采用脉冲抽吸处理来管理 0.1mg/L TCE 污染的地下水。地下水流动和污染模拟采用 MODFLOW 和 MT3DMS 的数值模型进行案例研究,以评估抽吸处理操作策略的性能和风险。评估标准包括捕获宽度、去除效率和污染物泄漏。使用相邻区域的蒸气入侵风险评估工具评估 TCE 泄漏的健康风险。在设施规模案例研究中,抽吸处理的捕获宽度由泵送/注入井操作控制,包括计划和速率。泵送/注入井配置影响设施效率。脉冲操作导致 TCE 下游泄漏。考虑到各种操作阶段(连续;脉冲)以及地下环境中 TCE 的各种反应(非反应;吸附;吸附和生物降解),在场地规模案例研究中模拟了通过抽吸处理的污染物传输。假设非反应示踪剂,连续操作阶段地下水 TCE 被有效阻止,但在随后的脉冲操作阶段释放到下游。考虑化学反应,抽吸处理操作的影响遵循与非反应示踪剂相似的趋势,但发生在延迟时间。通过生物降解降低了地下水污染水平。在污染水平接近或低于 TCE 地下水标准的暴露点(POEs)可能会发生癌症和非癌症风险。

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