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氮空位调制过一硫酸盐非自由基活化通过高价钴-氧物种去除有机污染物

Nitrogen Vacancy-Modulated Peroxymonosulfate Nonradical Activation for Organic Contaminant Removal via High-Valent Cobalt-Oxo Species.

作者信息

Jiang Jingjing, Zhao Ziqing, Gao Jiaying, Li Tianren, Li Mingyu, Zhou Dandan, Dong Shuangshi

机构信息

Key Laboratory of Groundwater Resources and Environment Ministry of Education, Jilin University, Changchun, Jilin 130021, China.

Jilin Provincial Key Laboratory of Water Resources and Environment, Jilin University, Changchun, Jilin 130021, China.

出版信息

Environ Sci Technol. 2022 May 3;56(9):5611-5619. doi: 10.1021/acs.est.2c01913. Epub 2022 Apr 20.

Abstract

Rapid generation of high-valent cobalt-oxo species (Co(IV)═O) for the removal of organic contaminants has been challenging because of the low conversion efficiency of Co(III)/Co(II) and the high activation energy barrier of the Co(II)-oxidant complex. Herein, we introduced nitrogen (N) vacancies into graphite carbon nitride imbedded with cobalt carbonate (CCH/CN-V) in a peroxymonosulfate (PMS)/visible light system to break the limitations of a conventional two-electron transfer path. These N vacancies enhanced the electron distribution of the Co 3d orbital and lowered the energy barrier to cleave the O-O bond of PMS in the Co(II)-PMS complex, achieving the modulation of major active species from O to Co(IV)═O. The developed synergistic system that exhibited adsorption and oxidation showed remarkable selectivity and contaminant removal performance in inorganic (Cl, NO, HCO, and HPO) organic (HA) and even practical aqueous matrices (tap water and secondary effluent). This study provides a novel mechanistic perspective to modulate the nonradical path for refractory contaminant treatment via defect engineering.

摘要

由于Co(III)/Co(II)的低转化效率以及Co(II)-氧化剂络合物的高活化能垒,快速生成用于去除有机污染物的高价钴-氧物种(Co(IV)═O)一直具有挑战性。在此,我们在过一硫酸盐(PMS)/可见光体系中,将氮(N)空位引入嵌入碳酸钴的石墨氮化碳(CCH/CN-V)中,以打破传统双电子转移路径的限制。这些N空位增强了Co 3d轨道的电子分布,并降低了Co(II)-PMS络合物中PMS的O-O键断裂的能垒,实现了主要活性物种从O到Co(IV)═O的调制。所开发的具有吸附和氧化性能的协同体系在无机(Cl、NO、HCO和HPO)、有机(HA)甚至实际水基质(自来水和二级出水)中表现出显著的选择性和污染物去除性能。本研究通过缺陷工程为调控难降解污染物处理的非自由基路径提供了一种新的机理视角。

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