生物炭
降级(电信)
过硫酸盐
零价铁
纳米尺度
环境化学
环境科学
化学工程
化学
材料科学
纳米技术
热解
催化作用
有机化学
计算机科学
工程类
吸附
电信
作者
Jiguang Wan,Yang Guo,Z. Conrad Zhang,Rufeng Deng,Xiang Wang,Siqi Cao,Xiaodong Zhang,Yandong Miao,Jinlin Jiang,Zhijun Song,Tao Long,C. T. Sun,Xia Zhu
标识
DOI:10.1016/j.scitotenv.2024.173053
摘要
Nitrochlorobenzene (NCB) is very common in pesticide and chemical industries, which has become a major problem in soil environment. However, the remediation of NCB contaminated soil is received finite concern. Using biochar as a substrate for nanoscale-zero valent iron (nZVI/p-BC) to activate peroxodisulfate (PDS), a novel heterogeneous oxidative system had been applied in the current study to remediate NCB contaminants in soil. The degradation efficiencies and kinetics of m-NCB, p-NCB, and o-NCB by various systems were contrasted in soil slurry. Key factors including the dosage of nZVI/p-BC, the molar ratio of nZVI/PDS, initial pH and temperature on degradation of NCB were further examined. The results confirmed that the nZVI/p-BC/PDS displayed the remarkable performance for removing NCB compared with other systems. Higher temperature with nZVI/PDS molar ratio of 2:1 under the acidic condition favored the reduction of NCB. The treatment for NCB with optimal conditions were evaluated for the engineering application. The mechanism of nZVI/p-BC/PDS indicated that electron transfer between p-BC and nZVI was responsible for activation of PDS, generating active species (SO
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