Promotional effect for SCR of NO with CO over MnOx-doped Fe3O4 nanoparticles derived from metal-organic frameworks
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Promotional effect for SCR of NO with CO over MnOx-doped Fe3O4 nanoparticles derived from metal-organic frameworks
Promotional effect for SCR of NO with CO over MnOx-doped Fe3O4 nanoparticles derived from metal-organic frameworks
中国化学工程学报(英文版)2022年46卷第6期 页码:113-125
Affiliations:
1. School of Ecology and Environment, Inner Mongolia University,China
2. College of Veterinary Medicine, University of Florida,United States
3. School of Environmental Science & Technology, Dalian University of Technology,China
Author bio:
Funds:
DOI:
中图分类号:
纸质出版:2022
Accepted:
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Yu Zhang, Ling Zhao, Ziang Chen, 等. Promotional effect for SCR of NO with CO over MnOx-doped Fe3O4 nanoparticles derived from metal-organic frameworks[J]. 中国化学工程学报(英文版), 2022,46(6):113-125.
-doped Fe
Yu Zhang, Ling Zhao, Ziang Chen, 等. Promotional effect for SCR of NO with CO over MnOx-doped Fe3O4 nanoparticles derived from metal-organic frameworks[J]. 中国化学工程学报(英文版), 2022,46(6):113-125.DOI:
-doped FeDOI:
Promotional effect for SCR of NO with CO over MnOx-doped Fe3O4 nanoparticles derived from metal-organic frameworks
nanomaterials were fabricated by using the innovative scheme of pyrolyzing manganese-doped iron-based metal organic framework in inert atmosphere and exhibited extraordinary performance of NO reduction by CO (CO-SCR). Multi-technology characterizations were conducted to ascertain the properties of fabricated materials (
e
.
g
.
TGA
XRD
SEM
FT-IR
XPS
BET
H
2
-TPR and O
2
-TPD). Moreover
the interaction between reactants and catalysts was ascertained by
in situ
FT-IR. Experimental results demonstrated that Mn was an ideal promoter for iron oxides
resulting in decrease of crystallite size
improve reducibility property
enhance the mobility and the amount of lattice O
2-
species
as well as strength the adsorption ability of active NO and CO to form multiple species (
e
.
g
.
nitrate and carbonate). The unprecedented enhancement of CO-SCR activity over Mn-Fe nanomaterials follows the Eley-Rideal (E-R) and Langmuir-Hinshelwood (L-H) reaction pathway.
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Cao Junya
Hui Yi
Cao Yan
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He Peng
Li Huiquan
相关机构
School of Chemical Engineering, University of Chinese Academy of Sciences
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School of Chemical & Environmental Engineering, China University of Mining & Technology (Beijing)
State Key Laboratory of Petroleum Molecular & Process Engineering