Cation−π structure inducing efficient peroxymonosulfate activation for pollutant degradation over atomically dispersed cobalt bonding graphene-like nanospheres
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,General Environmental Science,Catalysis
Reference51 articles.
1. Persulfate-based advanced oxidation: critical assessment of opportunities and roadblocks;Lee;Environ. Sci. Technol.,2020
2. Co-doped NaBiO3 nanosheets with surface confined Co species: high catalytic activation of peroxymonosulfate and ultralow Co leaching;Ding;Chem. Eng. J.,2019
3. Uniform N-coordinated single-atomic iron sites dispersed in porous carbon framework to activate PMS for efficient BPA degradation via high-valent iron-oxo species;Li;Chem. Eng. J.,2020
4. Rapid acceleration of ferrous iron/peroxymonosulfate oxidation of organic pollutants by promoting Fe(III)/Fe(II) cycle with hydroxylamine;Zou;Environ. Sci. Technol.,2013
5. Activated carbon supported cobalt catalysts for advanced oxidation of organic contaminants in aqueous solution;Shukla;Appl. Catal. B: Environ.,2010
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