三氯乙烯
环境修复
环境化学
地下水修复
环境科学
受污染的地下水
地下水
氮气
废物管理
电化学
化学
污染
碳纤维
材料科学
电极
复合数
有机化学
地质学
生态学
工程类
物理化学
复合材料
岩土工程
生物
作者
Jia Deng,Xin‐Ming Hu,Enlai Gao,Feng Wu,Weizhao Yin,Li-Zhi Huang,Dionysios D. Dionysiou
标识
DOI:10.1016/j.jhazmat.2021.126458
摘要
Electrochemical dechlorination is a prospective strategy to remediate trichloroethylene (TCE)-contaminated groundwater. In this work, iron-nitrogen-doped carbon (FeNC) mimicking microbiological dechlorination coenzymes was developed for TCE removal under environmentally related conditions. The biomimetic FeNC-900, FeNC-1000, and FeNC-1100 materials were synthesized via pyrolysis at different temperatures (900, 1000, and 1100 °C). Due to the synergistic effect of Fe-N4 active sites and graphitic N sites, FeNC-1000 had the highest electron transfer efficiency and the largest electrochemical active surface area among the as-synthesized FeNC catalysts. The pseudo-first-order rate constants for TCE reduction using FeNC-1000 catalyst are 0.19, 0.28 and 0.36 h-1 at potentials of -0.8 V, -1.0 V and -1.2 V, respectively. Active hydrogen and direct electrons transfer both contribute to the dechlorination from TCE to C2H4 and C2H6. FeNC maintain a high reactivity after five reuse cycles. Our study provides a novel approach for the dechlorination of chlorinated organic contaminants in groundwater.
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