Enhanced activation of peroxymonosulfate by Fe/N co-doped ordered mesoporous carbon with dual active sites for efficient removal of m-cresol
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Enhanced activation of peroxymonosulfate by Fe/N co-doped ordered mesoporous carbon with dual active sites for efficient removal of m-cresol
Enhanced activation of peroxymonosulfate by Fe/N co-doped ordered mesoporous carbon with dual active sites for efficient removal of m-cresol
中国化学工程学报(英文版)2024年65卷第1期 页码:130-144
Affiliations:
1. College of Chemical Engineering, Qingdao University of Science and Technology,Qingdao,China,266042
2. School of Chemical & Environmental Engineering, China University of Mining & Technology-, Beijing,Beijing,China,100083
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纸质出版:2024
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Donghui Li, Wenzhe Wu, Xue Ren, 等. Enhanced activation of peroxymonosulfate by Fe/N co-doped ordered mesoporous carbon with dual active sites for efficient removal of m-cresol[J]. 中国化学工程学报(英文版), 2024,65(1):130-144.
-cresol[J]. 中国化学工程学报, 2024, 65(1): 130-144.
Donghui Li, Wenzhe Wu, Xue Ren, 等. Enhanced activation of peroxymonosulfate by Fe/N co-doped ordered mesoporous carbon with dual active sites for efficient removal of m-cresol[J]. 中国化学工程学报(英文版), 2024,65(1):130-144.DOI:
-cresol[J]. 中国化学工程学报, 2024, 65(1): 130-144.DOI:
Enhanced activation of peroxymonosulfate by Fe/N co-doped ordered mesoporous carbon with dual active sites for efficient removal of m-cresol
The novel Fe-N co-doped ordered mesoporous carbon with high catalytic activity in
m
-cresol removal was prepared by urea-assisted impregnation and simple pyrolysis method. During the preparation of the Fe-NC catalyst
the complexation of N elements in urea could anchor Fe
and the formation of C
3
N
4
during urea pyrolysis could also prevent migration and aggregation of Fe species
which jointly improve the dispersion and stability of Fe. The FeN
4
sites and highly dispersed Fe nanoparticles synergistically trigger the dual-site peroxymonosulfate (PMS) activation for highly efficient
m
-cresol degradation
while the ordered mesoporous structure of the catalyst could improve the mass transfer rate of the catalytic process
which together promote catalytic degradation of
m
-cresol by PMS activation. Reactive oxygen species (ROS) analytic experiments demonstrate that the system degrades
m
-cresol by free radical pathway mainly based on SO
4
-
· and ·OH
and partially based on ·OH as the active components
and a possible PMS activation mechanism by 5Fe-50 for
m
-cresol degradation was proposed. This
study can provide theoretical guidance for the preparation of efficient and stable catalysts for the degradation of organic pollutants by activated PMS.
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Three-dimensional porous bimetallic metal–organic framework/gelatin aerogels: A readily recyclable peroxymonosulfate activator for efficient and continuous organic dye removal
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