Copper oxides activate peroxymonosulfate for degradation of methylene blue via radical and nonradical pathways: surface structure and mechanism

被引:0
|
作者
Xu Zuo
Aijun Jiang
Shiyang Zou
Junrong Wu
Bingquan Ding
机构
[1] Naval Medical Center of PLA,Research Center of Water Treatment and Desalination
[2] Second Military Medical University,undefined
[3] Naval Medical Center of PLA,undefined
[4] Second Military Medical University,undefined
关键词
Copper oxide; Peroxymonosulfate; Surface structure; Electron-transfer; Surface-bound radical;
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中图分类号
学科分类号
摘要
A one-step hydrothermal method for preparation of copper oxides with different valences using ascorbic acid as a reducing reagent was developed for environmental remediation. The results suggested that the notable degradation performance of CuO0 may be attributable to the abundant active sites, such as Cu or Cu–O, and was not significantly related to the Cu valence state. In contrast to direct degradation of pollutants by traditional superoxide radicals (O2•−), O2•− played an important role in the reduction of high-valence Cu ions (Cu(III)). In addition, a series of radical quenching, electron paramagnetic resonance (EPR), and electrochemical experiments validated the existence of direct electron transfer between methylene blue (MB) and PMS mediated by CuO0 and surface-bound radicals. The results suggested that the CuO0/PMS system may be less susceptible to diverse ions and natural organic matter other than dihydrogen phosphate anions. The mechanism of MB degradation under alkaline conditions was different from that under acidic conditions in that it was not reliant on radicals or charge transfer but direct oxidation by PMS. This study provides new insights into the heterogeneous processes involved in PMS activation by the copper oxides. Furthermore, this paper devotes to providing theoretical basis on pollutant removal via PMS activated by copper oxides and developing low-cost and high-efficiency catalysts.
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页码:13023 / 13038
页数:15
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