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luyuan wang
luyuan wang
山东省科学院
在 sderi.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Investigation on Fe-Co binary metal oxides supported on activated semi-coke for NO reduction by CO
L Wang, X Cheng, Z Wang, C Ma, Y Qin
Applied Catalysis B: Environmental 201, 636-651, 2017
2242017
Catalytic performance of NO reduction by CO over activated semicoke supported Fe/Co catalysts
X Cheng, L Wang, Z Wang, M Zhang, C Ma
Industrial & Engineering Chemistry Research 55 (50), 12710-12722, 2016
582016
In situ DRIFTS study of the NO+ CO reaction on Fe–Co binary metal oxides over activated semi-coke supports
L Wang, Z Wang, X Cheng, M Zhang, Y Qin, C Ma
RSC advances 7 (13), 7695-7710, 2017
492017
Nitrogen oxides reduction by carbon monoxide over semi-coke supported catalysts in a simulated rotary reactor: reaction performance under dry conditions
X Cheng, M Zhang, P Sun, L Wang, Z Wang, C Ma
Green Chemistry 18 (19), 5305-5324, 2016
492016
Sulfur Evolution Reaction during Reduction of SO2 with CO over Carbon Materials
T Feng, P Zhou, X Zhao, L Li, X Xia, S Zhang, J Li, L Wang, C Ma
Energy & Fuels 33 (8), 7491-7499, 2019
262019
NO reduction by CO over iron‐based catalysts supported by activated semi‐coke
L Wang, X Cheng, Z Wang, X Zhang, C Ma
The Canadian Journal of Chemical Engineering 95 (3), 449-458, 2017
182017
Reaction of NO + CO over Ce-Modified Cu–FeOx Catalysts at Low Temperature
L Wang, X Cheng, Z Wang, R Sun, G Zhao, T Feng, C Ma
Energy & Fuels 33 (11), 11688-11704, 2019
162019
Effect of the NO+ CO reaction on the consumption of carbon supports: An in situ TG-FTIR analysis
L Wang, X Cheng, Z Wang, H Huang, C Ma, Y Qin
Chemical Engineering Journal 352, 90-102, 2018
132018
低温催化脱硝技术的研究进展
王鲁元, 程星星, 王志强, 张兴宇, 马春元
化工进展 35 (07), 2222-2235, 2016
112016
NOx Adsorption Mechanism of Coal-Based Activated Carbon Modified with Trace Potassium: In Situ DRIFTS and DFT Study
L Wang, C Xuan, X Zhang, R Sun, X Cheng, Z Wang, C Ma
Energy & Fuels 36 (14), 7633-7650, 2022
92022
Improvement in the Water Tolerance of SiO2-Modified Semicoke Catalysts for the Low-Temperature NO + CO Reaction
L Wang, X Cheng, Z Wang, C Ma, Y Qin
Energy & Fuels 31 (7), 7413-7425, 2017
72017
Energy, economic, and environmental analysis: A study of operational strategies for combined heat and power system based on PEM fuel cell in the East China region
X Hou, R Sun, J Huang, W Geng, X Li, L Wang, X Zhang
Renewable Energy 223, 120023, 2024
62024
A hybrid combined heat and power system based on PEM fuel cell design for high-speed zero carbon service area
X Hou, R Sun, J Huang, W Geng, L Wang, T Zhao
International Journal of Hydrogen Energy 48 (83), 32527-32539, 2023
52023
Iron-based denitration catalyst derived from Fenton sludge: optimization analysis of selective dealkalization and influence mechanism of calcination temperature
Z Yu, G Zhao, H Yu, Q Liu, Z Zhang, R Sun, W Geng, L Wang
Journal of Cleaner Production 378, 134524, 2022
52022
Application of Fenton sludge coupled selective acid leaching in selective catalytic reduction of NOx: Performance and mechanisms
Z Yu, G Zhao, H Yu, Q Liu, Z Zhang, R Sun, L Wang, W Geng, D Yuan
Fuel 326, 125058, 2022
52022
Drying experiment and drying model analysis of dehydrated sludge particles
G Zhao, F Yin, X Liang, D Yuan, W Geng, L Wang, R Sun
IOP Conference Series: Materials Science and Engineering 768 (2), 022031, 2020
42020
Synergistic Reduction Mechanism of NOx by NH3 and CO Catalyzed by Mn–Co Oxides and the Oxidation Process of CO: In Situ DRIFTS and DFT Study
S Han, C Xuan, L Wang, X Zhang, R Shao, X Cheng, Z Wang
Energy & Fuels 37 (21), 16701-16715, 2023
32023
Preparation of biomass activated carbon by one step rapid activation and its adsorption regeneration for ethyl acetate
JIN Chunjiang, W Luyuan, C Huimin, C Xingxing, Z Xingyu, ...
Chemical Industry and Engineering Progress 40 (S1), 446, 2021
32021
一步快速活化法制备生物质活性炭及其对乙酸乙酯的吸附再生
金春江, 王鲁元, 陈惠敏, 程星星, 张兴宇, 孙荣峰, 耿文广
化工进展 40 (S1), 446-455, 2021
32021
Mechanism of NO reduction by NH 3 over CuMnO x catalysts and the influence mechanism of CO
C Xuan, S Han, L Wang, X Zhang, R Sun, X Cheng, Z Wang, C Ma, ...
Catalysis Science & Technology 13 (10), 3106-3124, 2023
22023
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