孟凡禹
2022-11-15 10:32  

     

                                                                                  

 

基本信息

:资格副教授

所在系室:环境科学与工程

联系方式fanyumeng14@126.com

通信地址:安徽工业大学能源与环境学院,243002

教育背景

2017.9—2022.6   南京理工大学,化学工程与技术 硕博连读

2013.9—2017.6   山东科技大学,化学工程与工艺 大学本科

研究方向

催化反应工程。

代表性论文专著

[1] Meng Fanyu, Guo Lina, Zou Haocheng, Zhu Boming, Zhou Fayang, Zeng Yiqing, Zhang Shule*, Zhong Qin*. Mechanism study on TiO2 inducing •O2 and •OH radicals in O3/H2O2 system for high-efficiency NO oxidation[J]. Journal of Hazardous Materials, 2020, 399: 123033.

[2] Meng Fanyu, Zhang Shule*, Zeng Yiqing, Zhang Mingjia, Zou Haocheng, Zhong Qin*. Promotional effect of surface fluorine on TiO2: Catalytic conversion of O3 and H2O2 into •OH and •O2 radicals for high-efficiency NO oxidation[J]. Chemical Engineering Journal, 2021, 424: 130358.

[3] Zhang Mingjia1, Meng Fanyu1, Zhang Shule*, Zeng Yiqing, Zhong Qin*. Sulfur-doping promoting peroxone reaction over TiO2 for highly effective NO oxidation at low temperature: Experimental and DFT studies[J]. Chemical Engineering Journal, 2022, 429: 132475.

[4] Meng Fanyu, Zhang Mingjia, Zhang Shule*, Zhong Qin*. TiO2 with exposed {001} facets catalyzed peroxone reaction into •O2and •OH radicals for low temperature NO oxidation[J]. Fuel, 2022, 314: 122748.

[5] Meng Fanyu, Zhang Shule*, Zhang Mingjia, Zhong Qin*. The mechanism of Ce-MCM-41 catalyzed peroxone reaction into •OH and •O2 radicals for enhanced NO oxidation[J]. Molecular Catalysis, 2022, 518: 112110.

[6] Meng Fanyu, Zhang Shule*, Li Xiaohai, Zeng Yiqing, Zhong Qin*. CrOx assembled at the oxygen vacancies on black-TiO2 for NO oxidation[J]. Molecular Catalysis, 2019, 473: 110393.

[7] Li Xiaohai1, Meng Fanyu1, Zhang Shule*, Zhang Mingjia, Zeng Yiqing, Zhong Qin*. The effect of polyethylene glycol modification on CrOx/TiO2 catalysts for NO oxidation[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, 578: 123588.

[8] Meng Fanyu, Guo Lina, He Jianyu, Wang Zhongyu, Ma Zhiguo, Zeng Yiqing, Zhang Shule*, Zhong Qin*. V2O5-(NH4)2V6O16•1.5H2O composite catalysts as novel platforms for high-efficiency catalytic ozonation of NO under low temperature[J]. Journal of Physics and Chemistry of Solids, 2021, 155: 110112.

[9] Meng Fanyu, Zhang Mingjia, Zhou Fayang, Zou Haochen, Zhu Boming, Zeng Yiqing, Zhang Shule*, Zhong Qin*. CrOx anchored on the black-TiO2 surface via organic carboxylic acid ligand and its catalysis in oxidation of NO[J]. Catalysis Letters, 2021, 151: 1755–1765.

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