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INSTITUTE OF APP... [5]
Authors
HUI KWUN NAM [2]
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Journal article [5]
Conference paper [1]
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2022 [1]
2021 [5]
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英語English [6]
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Carbon Resources... [2]
FUEL [2]
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Insights on copper, manganese, and Nickel/ZSM-5 catalytic mechanisms for nitric oxides selective reduction with ammonia
Journal article
Liu, Cheng, Kang, Running, Bin, Feng, Wei, Xiaolin, Hui, Kwun Nam, Kasipandi, Saravanan, Hui, Kwan San. Insights on copper, manganese, and Nickel/ZSM-5 catalytic mechanisms for nitric oxides selective reduction with ammonia[J]. Carbon Resources Conversion, 2022, 5(1), 15-25.
Authors:
Liu, Cheng
;
Kang, Running
;
Bin, Feng
;
Wei, Xiaolin
;
Hui, Kwun Nam
; et al.
Favorite
|
TC[WOS]:
6
TC[Scopus]:
7
IF:
6.4
/
7.1
|
Submit date:2022/03/28
Kinetics
Reaction Mechanism
Selective Catalytic Reduction
Transition Metals
Zsm-5
Alkali metal-resistant mechanism for selective catalytic reduction of nitric oxide over V2O5/HWO catalysts
Journal article
Kang, Running, He, Junyao, Bin, Feng, Dou, Baojuan, Hao, Qinglan, Wei, Xiaolin, Hui, Kwun Nam, Hui, Kwan San. Alkali metal-resistant mechanism for selective catalytic reduction of nitric oxide over V2O5/HWO catalysts[J]. FUEL, 2021, 304, 121445.
Authors:
Kang, Running
;
He, Junyao
;
Bin, Feng
;
Dou, Baojuan
;
Hao, Qinglan
; et al.
Favorite
|
TC[WOS]:
10
TC[Scopus]:
13
IF:
6.7
/
6.5
|
Submit date:2022/08/24
Commercial Bacterial Cellulose
V2o5/hwo Catalyst
Alkali Metal-resistant
Poisoning
Scr Reaction
Alkali metal-resistant mechanism for selective catalytic reduction of nitric oxide over V2O5/HWO catalysts
Journal article
Kang, Running, He, Junyao, Bin, Feng, Dou, Baojuan, Hao, Qinglan, Wei, Xiaolin, Hui, Kwun Nam, Hui, Kwan San. Alkali metal-resistant mechanism for selective catalytic reduction of nitric oxide over V2O5/HWO catalysts[J]. FUEL, 2021, 304, 121445.
Authors:
Kang, Running
;
He, Junyao
;
Bin, Feng
;
Dou, Baojuan
;
Hao, Qinglan
; et al.
Favorite
|
TC[WOS]:
10
TC[Scopus]:
13
IF:
6.7
/
6.5
|
Submit date:2021/12/08
Alkali Metal-resistant
Commercial Bacterial Cellulose
Poisoning
Scr Reaction
V2o5/hwo Catalyst
Comparative study of MCe0.75Zr0.25Oy (M = Cu, Mn, Fe) catalysts for selective reduction of NO by CO: Activity and reaction pathways
Journal article
He, Junyao, Kang, Running, Wei, Xiaolin, Huang, Junqin, Feng Bin,, Hui, K.N., San Hui, Kwan, Wu, Dongyin. Comparative study of MCe0.75Zr0.25Oy (M = Cu, Mn, Fe) catalysts for selective reduction of NO by CO: Activity and reaction pathways[J]. Carbon Resources Conversion, 2021, 4, 205-213.
Authors:
He, Junyao
;
Kang, Running
;
Wei, Xiaolin
;
Huang, Junqin
;
Feng Bin,
; et al.
Favorite
|
TC[WOS]:
5
TC[Scopus]:
6
IF:
6.4
/
7.1
|
Submit date:2021/12/07
Catalytic Combustion
Co-scr
Oxygen Species
Reaction Mechanism
Synergistic Removal
Study on activity, stability limit and reaction mechanism of CO self-sustained combustion over the LaMnO3, La0.9Ce0.1MnO3 and La0.9Sr0.1MnO3 perovskite catalysts using sugar agent
Journal article
Junqin Huang, Zihao Teng, Running Kang, Feng Bin, Xiaolin Wei, Qinglan Hao, Kwun Nam Hui, Kwan San Hui, Baojuan Dou. Study on activity, stability limit and reaction mechanism of CO self-sustained combustion over the LaMnO3, La0.9Ce0.1MnO3 and La0.9Sr0.1MnO3 perovskite catalysts using sugar agent[J]. Fuel, 2021, 292, 120289.
Authors:
Junqin Huang
;
Zihao Teng
;
Running Kang
;
Feng Bin
;
Xiaolin Wei
; et al.
Favorite
|
TC[WOS]:
19
TC[Scopus]:
19
IF:
6.7
/
6.5
|
Submit date:2021/12/07
Carbon Monoxide
Perovskite
Self-sustained Combustion
Stability Limit
Sugar Agent
Transient behavior and reaction mechanism of CO catalytic ignition over a CuO-CeO 2 mixed oxide
Conference paper
Kang,Running, Ma,Pandong, He,Junyao, Li,Huixin, Bin,Feng, Wei,Xiaolin, Dou,Baojuan, Hui,Kwun Nam, Hui,Kwan San. Transient behavior and reaction mechanism of CO catalytic ignition over a CuO-CeO 2 mixed oxide[C]:ELSEVIER SCIENCE INC, STE 800, 230 PARK AVE, NEW YORK, NY 10169 USA, 2021, 6493-6501.
Authors:
Kang,Running
;
Ma,Pandong
;
He,Junyao
;
Li,Huixin
;
Bin,Feng
; et al.
Favorite
|
TC[WOS]:
25
TC[Scopus]:
26
|
Submit date:2021/03/11
Carbon Monoxide
Catalytic Ignition
Copper-cerium Oxide
Reaction Mechanism
Transient Behavior