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2022年08月18日 13:04  点击:[]



 

3381F


2022级博士生

研究方向:等离子体催化转化及膜催化过程强化

邮箱:ShengyanMeng@mail.dlut.edu.cn


教育经历:

2022.9-至今 大连理工大学 化学工艺 博士

2019.9-2022.6  大连理工大学 化学工艺 硕士

2015.9-2019.6  河北工业大学 化学工程与工艺 本科


曾获荣誉:

中国科协青年人才托举工程(2024)

博士生国家奖学金(2024)

大连理工大学优秀硕士学位论文(2022)

优秀研究生(2024)

博士生一等学业奖学金(2023)

梅勒特-托利多奖学金(2024)

第五届高电压与等离子体科技创新竞赛全国一等奖(2025)

第五届博士生学术论坛一等奖(2023)

第六届博士生学术论坛一等奖(2024)

第十三届环境催化会议最佳口头报告奖(2023)

中科院能源催化学术论坛最佳口头报告奖(2023)


发表论文:

1. Saleh Ahmat Ibrahim, Shengyan Meng, Yanhui Yi*, Fanglin Che* et al. Interpretable Machine Learning Guided Plasma Catalysis for Hydrogen Economy. Nature Chemical Engineering, 2025, Accepted. (co-first author) (Nature系列大子刊)

2. Shengyan Meng, Zhaolun Cui, Qian Chen, Yi Liu*, An-hui Lu*, Yanhui Yi* et al. Water-Promoted C−C Coupling Reaction in Plasma-Catalytic CO2 Hydrogenation for Ethanol Production. ACS Catalysis, 2025, 15, 3236. (期刊封面)

3. Shengyan Meng, Liang Wu, Yanhui Yi* et al. Plasma-driven CO2 hydrogenation to CH3OH over Fe2O3/γ-Al2O3 catalysts. AIChE Journal, 2023, e18154. (Top Viewed Article)

4. Shengyan Meng, Yanhui Yi* et al. NH3 decomposition for H2 production by thermal and plasma catalysis using bimetallic catalysts. Chemical Engineering Science, 2024, 283, 119449.

5. Zhaolun Cui, Shengyan Meng, Yanhui Yi* et al. Plasma-catalytic Methanol Synthesis from CO2 Hydrogenation over Supported Cu cluster Catalyst: Insights into the Reaction Mechanism. ACS Catalysis, 2022, 12, 1326. (co-first author) (期刊封面)

6. Yi Liu, Shengyan Meng, Xiao Fan, Yi Liu* et al. Mild Fabrication of highly (h0h)-oriented MFI zeolite membrane from self-pillared nanosheets towards superior butane isomer and ammonia separation. Advanced Functional Materials, 2025, 2506949. (co-first author)

7. Qian Chen, Shengyan Meng, Yanhui Yi* et al. Plasma-catalytic CO2 hydrogenation to methanol over CuO-MgO/Beta catalyst with high selectivity. Applied Catalysis. B 2024, 342, 123422. (co-first author)

8. Huan Lv, Shengyan Meng, Yanhui Yi* et al. Plasma-catalytic Direct Oxidation of Methane to Methanol over Cu-MOR: Revealing the Zeolite-confined Cu2+ Active Sites. Chemical Engineering Journal, 2024, 496, 154337. (co-first author)


学术兴趣:

等离子体催化转化及膜催化过程强化


 

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