教育经历
2010-2014,山东建筑大学环境工程专业,获工学学士学位
2014-2020,华南理工大学大气污染控制方向,获工学博士学位
工作经历
2020-今,bat365中文官方网站,讲师
教学工作简介
教学获奖:
浙江省第十二届高等学校青年教师教学竞赛工科组,一等奖;
指导学生竞赛:
第十四届全国大学生节能减排社会实践与科技竞赛,三等奖;
第十五届全国大学生节能减排社会实践与科技竞赛,三等奖;
全国大学生生命科学竞赛,三等奖;
首届大学生低碳循环科技创新大赛,二等奖
第一届中国研究生“双碳”创新与创意大赛,二等奖;
首届浙江省大学生低碳循环科技创新大赛,一等奖;
浙江省第十七届“挑战杯”大学生课外学术科技作品竞赛,三等奖;
主讲本科生课程:
《环境监测》、《大气污染控制工程》
主讲研究生课程:
《高等环境化学》、《污染控制化学及工程》
(1) Yuhai Sun; Junliang Wu; Yaolin Wang; Jingjing Li; Ni Wang; Jonathan Harding; Shengpeng Mo; Limin Chen; Peirong Chen; Mingli Fu; Daiqi Ye; Jun Huang; Xin Tu; Plasma-Catalytic CO2 Hydrogenation over a Pd/ZnO Catalyst: In Situ Probing of Gas-Phase and Surface Reactions, JACS Au, 2022, 2(8): 1800-1810. (封面论文)
(2) Yuhai Sun; Jingyi Han; Kai Xu; Keying Wu; Wei Wu; Xu Zhang; Boqiong Jiang; Probing the effects of plasma-induced surface species in ring-opening process of toluene decomposition via plasma-excited TPD and in situ DRIFTS, Journal of Cleaner Production, 2022, 371: 133332-133332.
(3) 江博琼, 陈孜颖, 刘牵牵, 花浩, 周晨航, 徐婷婷, 唐秀娟, 韩竞一, 孙玉海*. 萘在选择性催化还原脱硝系统内的转化机制[J]. 环境科学学报, 2023, 43(03): 427-437.
(4) Sun, Yuhai; Li, Jingjing; Chen, Peirong; Wang, Bangfen; Wu, Junliang; Fu, Mingli; Chen, Limin; Ye, Daiqi ; Reverse water-gas shift in a packed bed DBD reactor: Investigation of metal-support interface towards a better understanding of plasma catalysis, Applied Catalysis A: General, 2020, 591: 117407.
(5) Sun, Yuhai; Huang, Chunlei; Chen, Limin; Zhang, Yujun; Fu, Mingli; Wu, Junliang; Ye, Daiqi; Active site structure study of Cu/Plate ZnO model catalysts for CO2 hydrogenation to methanol under the real reaction conditions, Journal of CO2 Utilization, 2020, 37: 55-64.
(6) Sun, Yuhai; Chen, Limin; Bao, Yunfeng; Wang, Guannan; Zhang, Yujun; Fu, Mingli; Wu, Junliang; Ye, Daiqi; Roles of nitrogen species on nitrogen-doped CNTs supported Cu-ZrO2 system for carbon dioxide hydrogenation to methanol, Catalysis Today, 2018, 307: 212-223.
(7) S. Mo, Q. Zhang, J. Li, Y. Sun, Q. Ren, S. Zou, Q. Zhang, J. Lu, M. Fu, D. Mo, J. Wu, H. Huang, D. Ye, Highly efficient mesoporous MnO2 catalysts for the total toluene oxidation: Oxygen-Vacancy defect engineering and involved intermediates using in situ DRIFTS, Applied Catalysis B: Environmental, 264 (2020) 118464.
(8) Q. Zhang, S. Mo, J. Li, Y. Sun, M. Zhang, P. Chen, M. Fu, J. Wu, L. Chen, D. Ye, In situ DRIFT spectroscopy insights into the reaction mechanism of CO and toluene co-oxidation over Pt-based catalysts, Catalysis Science & Technology, 9 (2019) 4538-4551.
(9) S. Mo, Q. Zhang, Y. Sun, M. Zhang, J. Li, Q. Ren, M. Fu, J. Wu, L. Chen, D. Ye, Gaseous CO and toluene co-oxidation over monolithic core–shell Co3O4-based hetero-structured catalysts, Journal of Materials Chemistry A, 7 (2019) 16197-16210.
(10) B. Wang, B. Chen, Y. Sun, H. Xiao, X. Xu, M. Fu, J. Wu, L. Chen, D. Ye, Effects of dielectric barrier discharge plasma on the catalytic activity of Pt/CeO2 catalysts, Applied Catalysis B: Environmental, 238 (2018) 328-338.
(11) J. Li, Y. Sun, B. Wang, H. Xiao, J. Wu, L. Chen, M. Fu, D. Ye, Effect of plasma on catalytic conversion of CO2 with hydrogen over Pd/ZnO in a dielectric barrier discharge reactor, Journal of Physics D: Applied Physics, 52 (2019) 244001.
(12) C. Huang, J. Wen, Y. Sun, M. Zhang, Y. Bao, Y. Zhang, L. Liang, M. Fu, J. Wu, D. Ye, L. Chen, CO2 hydrogenation to methanol over Cu/ZnO plate model catalyst: Effects of reducing gas induced Cu nanoparticle morphology, Chemical Engineering Journal, 374 (2019) 221-230.
(13) S. Mo, S. Li, Q. Ren, M. Zhang, Y. Sun, B. Wang, Z. Feng, Q. Zhang, Y. Chen, D. Ye, Vertically-aligned Co3O4 arrays on Ni foam as monolithic structured catalysts for CO oxidation: effects of morphological transformation, Nanoscale, 10 (2018) 7746-7758.
(14) L. Chen, Y. Bao, Y. Sun, D. Ma, D. Ye, B. Huang, The graphitic carbon strengthened synergetic effect between Pt and FeNi in CO preferential oxidation in excess hydrogen at low temperature, Catalysis Science & Technology, 6 (2016) 98-106.
(15) G. Wang, L. Chen, Y. Sun, J. Wu, M. Fu, D. Ye, Carbon dioxide hydrogenation to methanol over Cu/ZrO2/CNTs: effect of carbon surface chemistry, RSC Advances, 5 (2015) 45320-45330.
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