硫黄
化学
格子(音乐)
硫循环
环境化学
环境科学
化学工程
无机化学
材料科学
冶金
工程类
物理
声学
作者
Chengbo Ma,Jun Wang,Xiaomei Liu,Xiaoguang Duan,Junjie Qi,Shuai Li,Ning Li,Yang Li,Xiaobin Fan,Wenchao Peng
标识
DOI:10.1021/acs.est.4c12824
摘要
The Fenton reaction is usually limited by the sluggish regeneration of Fe(II). In this article, we developed a Fenton system that uses metal sulfides (MSx) and diluted Fe(III) to activate H2O2, and the enhanced mechanism of the Fe(III)/Fe(II) cycle in the presence of sulfides was investigated. The lattice sulfur of MSx can donate electrons to reduce Fe(III) into Fe(II) and is partially oxidized to SO42- during H2O2 activation. •OH and 1O2 are the primary reactive oxygen species for pollutant removal. Meanwhile, low-cost iron-based sulfide (FeSx) is selected for scale-up experiments in a fixed-bed reactor, which can maintain 100% atrazine degradation over 240 h. Additionally, the Fukui function is employed to analyze the selective degradation pathway of atrazine, and the biological toxicity of the organic intermediates is also assessed. The novel FeSx/Fe(III) system provides a potential alternative to the traditional Fenton reaction.
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