Efficient activation of peroxymonosulfate mediated by Co(II)-CeO2 as a novel heterogeneous catalyst for the degradation of refractory organic contaminants: Degradation pathway, mechanism and toxicity assessment

催化作用 化学 罗丹明B 浸出(土壤学) 降级(电信) 煅烧 污染物 环境化学 矿化(土壤科学) 核化学 无机化学 有机化学 光催化 环境科学 电信 土壤科学 土壤水分 计算机科学 氮气
作者
Siyuan Di,Jiahao Wang,Yixin Zhai,Pin Chen,Ning Tao,Chunxiang Shi,Hucheng Yang,Yue Bao,Qiang Gao,Shukui Zhu
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:435: 129013-129013 被引量:90
标识
DOI:10.1016/j.jhazmat.2022.129013
摘要

A series of Co(II)-CeO2 mixed metal oxides were synthesized by a facile hydrothermal-calcination procedure for activating peroxymonosulfate (PMS) and degrading toxic and difficult biodegradable organics. Co(II)-CeO2 showed excellent degradation performance toward rhodamine B (RhB), toluidine blue, methylene blue and diclofenac. RhB is a refractory organic contaminant, and ecotoxicological evaluation unraveled its harmfulness to the biosphere. RhB was selected as the model pollutant to investigate catalytic mechanisms. Parameters affecting degradation performance were profoundly investigated, including Co:Ce feed ratio, initial pH, PMS dosage, catalyst dosage, RhB concentration, coexisting ions and reaction temperature. Reaction mechanisms were proposed based on density functional theory calculations and identifications of reactive oxygen species. Improvements have been achieved in seven aspects compared to previous studies, including 100% degradation ratio in both real water samples and each reuse of the catalyst, ultrafast degradation rate, cost-effectiveness of the catalyst, toxicity-attenuation provided by the developed degradation method, high degree of mineralization for the model pollutant, negligible leaching of active sites, and the enhancement of catalytic performance by utilizing trace leached cobalt, endowing the technique with broad applicability and prospect.
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