过硫酸盐
环境化学
地下水
环境修复
污染
地下水修复
化学
自来水
降级(电信)
环境科学
环境工程
有机化学
地质学
催化作用
生态学
生物
电信
岩土工程
计算机科学
作者
Xiaoyan Ding,Changlong Wei,Yunxiao Wei,Peng Liu,Dixiang Wang,Qing Wang,Xing Chen,Xin Song
出处
期刊:Water Research
[Elsevier]
日期:2023-12-08
卷期号:249: 120993-120993
被引量:21
标识
DOI:10.1016/j.watres.2023.120993
摘要
The co-occurrence of per- and polyfluoroalkyl substances (PFASs) and chlorinated aliphatic hydrocarbons (CAHs) in groundwater has drawn increased attention in recent years. No studies have been conducted concerning the oxidative degradation of PFASs and/or CAHs by in situ thermally activated persulfate (TAP) in groundwater, primarily due to the difficulty in cost-effectively achieving the desired temperature in the field. In this study, the effects and mechanisms of PFASs degradation by in situ TAP at a site with PFASs and CAHs co-contaminants were investigated. The target temperature of 40.0–70.0°C was achieved in groundwater, and persulfate was effectively distributed in the demonstration area – the combination of which ensured the degradation of PFASs and CAHs co-contaminants by in situ TAP. It was demonstrated that the concentration of perfluoroalkyl carboxylic acids (PFCAs) in all monitoring wells were reduced less than 66.0 % by in situ TAP compared to those maximum rebound values in groundwater, whereas no effective perfluoroalkane sulfonic acids (PFSAs) degradation was observed. The conversion of perfluoroalkyl acids (PFAAs) precursors was one of the main factors leading to the increase in PFCAs concentrations in groundwater during in situ TAP. CAHs were effectively degraded in most monitoring wells, and furthermore, no inhibitory effects of CAHs and Cl− on the degradation of PFASs were observed due to the presence of sufficient persulfate. Additionally, there were significant increases in SO42− concentrations and significant reductions of pH values in groundwater due to in situ TAP, warranting their long-term monitoring in groundwater. The integrated field and laboratory investigations demonstrated that the reductions in PFCAs and CAHs concentrations can be achieved by the oxidative degradation of in situ TAP.
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