可渗透反应墙
环境修复
电动修复
吸附
电解质
金属
纤维
环境化学
土壤水分
土壤污染
化学
化学工程
污染
环境工程
材料科学
环境科学
冶金
电极
土壤科学
工程类
物理化学
有机化学
生物
生态学
作者
Miaomiao Wang,Yulin Li,Nan Jiang,Qihao Lian,Lijing Bao,Hao Wang,Xiaoyang Xu,Manhong Huang
标识
DOI:10.1016/j.jece.2023.110308
摘要
Due to their toxicity and serious threat to human health and the environment, heavy metals in soil have drawn attention on a global scale. In our research, a new material MIL-100(Fe)@cotton fiber (CM100) was prepared by using waste cotton fiber as a substrate and loading MIL-100(Fe) particles by in-situ growth under green and mild preparation conditions. Its morphological characteristics and adsorption mechanism were investigated. It was used as a barrier to study the remediation characteristics of electrokinetic-permeable reactive barrier (EK-PRB) under different electrolytes. Results showed that CM100 was able to remove Pb2+ and Cd2+ with efficiencies of 96.1% and 78.7%, respectively. The adsorption is in accordance with the pseudo-second-order kinetic model and is dominated by chemisorption. Under different electrolyte compositions, the remediation efficiencies of CM100 and EK-PRB on heavy metal soils reached more than 90.0%. When the electrolyte was KCl/citric acid (CA), it could regulate soil pH and promote the migration of metal ions, which increased the remediation efficiency to 98.0%. Experimental results demonstrate that CM100/EK-PRB can effectively remediate heavy metal soil, and this study also provides a reference for the resource utilization of waste textiles.
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