李尚燚

时间:2022-08-29阅读次数:10

李尚燚副教授  

办公地址

北京化工大学东校区化学工程楼113

电子邮箱

lishangyi@buct.edu.cn

联系电话

15768888270

招生专业及研究方向

招生专业:

环境科学与工程、化学工程与技术

研究方向:

水污染控制技术、多相催化反应机制、环境功能材料研制及应用

个人经历

教育背景

2015.9-2020.6,华南师范大学,环境化学,理学博士

2011.9-2015.6,沈阳农业大学,环境工程,工学学士

工作经历

2022.8-至今北京化工大学化学工程学院副教授

2020.7-2022.7,清华大学,环境学院,博士后助理研究员

2017.1-2017.7,澳大利亚新南威尔士大学,联合培养

科研项目

1. 北京化工大学高层次引进人才项目,2022.08-2025.08,主持

2. 中国博士后基金面上资助,锚定式界面微电场构建与新兴污染物协同驱动的过臭氧技术研究(2021M691768),主持

3. 中国博士后基金特别资助(站前),改性新型三维介孔分子筛设计以及催化臭氧化PPCPs的界面反应机制(2020TQ0165),主持

4. 长江三角洲农药污染场地修复及安全利用关键技术研究与集成示范子课题:高浓度农药污染场地高效快速氧化技术遴选与研发,参与

5. 国家十三五重大水专项(子课题),2017ZX07202004,太滆运河农业复合污染控制与清洁流域技术集成与应用,2017-2022,参与

学术成就

代表性论文列表如下:

1.ShangyiLi, MengbinGu, JunHuang*, Yujue Wang, GangYu. Oligolayered Co@MXene with a Co···SO3 cation-π bridge for ultra-rapid catalytic oxidation of a novel 'forever chemical' OBS. Applied Catalysis B: Environmental, 2022, 311, 121364. (IF=24.319)

2.ShangyiLi, YujueWang, JunHuang*, Gang Yu. Role of in-situ electro-generated H2O2···bridge for tetracycline degradation governed by mechanochemical Si-O anchoring Cu2+ as electron shuttle during E-peroxone process. Applied Catalysis B: Environmental, 2022, 304, 120930. (IF=24.319)

3. ShangyiLi, JunHuang*, ZhuoxingYe, Yaozhong Wang, Xukai Li , Jing Wang, Laisheng Li*. The mechanism of Metal-H2O2 complex immobilized on MCM-48 and enhanced electron transfer for effective peroxone ozonation of sulfamethazine. Applied Catalysis B: Environmental, 2021, 280, 119453. (IF=24.319)

4. ShangyiLi, JingWang*, YiyunYe, Yiming Tang, Xukai Li, Fenglong Gu, Laisheng Li*. Composite Si-O-Metal network catalysts with uneven electron distribution: enhanced activity and electron transfer for catalytic ozonation of carbamazepine. Applied Catalysis B: Environmental, 2020, 263, 118311. (IF=24.319)

5.ShangyiLi, XukaiLi*, HaotianWu, Xianglin Sun, Fenglong Gu, Limin Zhang, Huan He, Laisheng Li*. The mechanism of synergistic effect on electron transfer over Co-Ce/MCM-48 during ozonation of pharmaceuticals in water. ACS Applied Materials & Interfaces, 2019, 11, 23957-23971. (IF=10.383)

6. ShangyiLi, XueqiFan, MengbinGu,GiovanniCagnetta, JunHuang*, GangYu. Confined-space strategy for anchoring catalytic nanoparticles on Si-OH by ball milling for enhanced O3/PMS oxidation of ciprofloxacin. Chemical Engineering Journal, 2022, 429, 132318. (IF=16.744)

7. ShangyiLi, JunHuang*, XukaiLi, Laisheng Li*. The relation of interface electron transfer and PMS activation by the H-bonding interaction between composite metal and MCM-48 during sulfamethazine ozonation. Chemical Engineering Journal, 2020, 398, 125529. (IF=16.744)

8. ShangyiLi, YimingTang, JingxianZhang, WenjingHao,WeiruiChen,FenglongGu,ZheHu,LaishengLi*. Advanced and green ozonation process for removal of clofibric acid in water system: Preparation and mechanism analysis of efficient copper-substituted MCM-48. Separation and Purification Technology, 2019, 211, 684-696.(IF=9.136)

9. ShangyiLi, YimingTang*, WeiruiChen,XukaiLi, Laisheng Li*. Heterogeneous catalytic ozonation of clofibric acid using Ce/MCM-48: Preparation, reaction mechanism, comparison with Ce/MCM-41. Journal of Colloid and Interface Science, 2017, 504: 238-246. (IF=9.965)

10.ShangyiLi, JunHuang, Efficient PPCPs degradation and mineralization via ozonation-based interface electric microfield coupling with peroxide. 5th International Symposium For Persistent, bioaccumulation And Toxic Substances, July 26-28, 2021, Beijing. (Oral presentation

11. JiaxinMu 1,ShangyiLi1, Wang Jing, XukaiLi, Laisheng Li*. Efficient catalytic ozonation of bisphenol A by three-dimensional mesoporous CeOx-loaded SBA-16. Chemosphere, 2021, 278: 130412. (IF=8.943)

12. MengbinGu, ShangyiLi*, XueqiFan, Jun Huang*, Gang Yu. Effective Breaking of Fluorocarbon Chain by Interface Bi2O2X···PFOA Complex Strategy via Coordinated Se on Construction of the Internal Photogenerated Carrier Pathway. ACS Applied Materials & Interfaces, 2022, 14, 1, 654-667. (IF=10.383)

合作交流

与清华大学、新南威尔士大学、香港城市大学等展开了多项合作交流。

招生需求

欢迎具有环境、材料、化工背景的学生加入!

希望学生善于思考,敢于创新,专注负责,力争上游!