环境化学
地下水
污染物
环境科学
BTEX公司
污染
羽流
环境工程
三氯乙烯
硝酸盐
含水层
化学
甲苯
生态学
地质学
二甲苯
岩土工程
有机化学
生物
物理
热力学
作者
Shuxuan Wu,Yu Yang,Zhifei Ma,Fan Feng,Xiangjian Xu,Shaozhi Deng,Xu Han,Beidou Xi,Yonghai Jiang
标识
DOI:10.1016/j.jhazmat.2024.134248
摘要
Experimental scale and sampling precision are the main factors limiting the accuracy of migration and transformation assessments of complex petroleum-based contaminants in groundwater. In this study, a mesoscale indoor aquifer device with high environmental fidelity and monitoring accuracy was constructed, in which dissolved toluene and trichloroethylene were used as typical contaminants in a 1.5-year contaminant migration experiment. The process was divided into five stages, namely, pristine, injection, accumulation, decrease, and recovery, and characteristics such as differences in contaminant migration, the responsiveness of environmental factors, and changes in microbial communities were investigated. The results demonstrated that the mutual dissolution properties of the contaminants increased the spread of the plume and confirmed that toluene possessed greater mobility and natural attenuation than trichloroethylene. Attenuation of the contaminant plume proceeded through aerobic degradation, nitrate reduction, and sulfate reduction phases, accompanied by negative feedback from characteristic ion concentrations, dissolved oxygen content, the oxidationreduction potential and microbial community structure of the groundwater. This research evaluated the migration and transformation characteristics of typical petroleum-based pollutants, revealed the response mechanism of the ecosystem to pollutant, provided a theoretical basis for predicting pollutant migration and formulating control strategies.
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