个人简历
陈明,四川大学副研究员,硕士生导师,从事萃取、结晶、过程强化、新工艺开发和新能源方向研究。讲授《化工原理》、《化工基础》和《化工原理课程设计》等专业核心课程。作为项目负责人承担国家自然科学基金青年基金项目和四川省自然科学基金青年基金项目,承担市校级项目3项,承担企业横向项目5项;作为主研人参与国家级、省级和企业项目20余项,承担和参与的科研项目累计到校经费超4000万元。发表相关论文40余篇,获2021年四川省科技进步奖二等奖(10/13)。
教育工作经历
2021-09至现今 |
四川大学化工学院 |
副研究员 |
2018-07至2021-09 |
四川大学化工学院 |
助理研究员 |
2013-07至2018.06 |
四川大学化工学院 |
硕博连读 |
2009-09至2013-06 |
四川大学化工学院 |
本科 |
代表性成果
1.ming chen, jun li*, yang jin, jianhong luo, xinhua zhu, defang yu. efficient solvent extraction of phosphoric acid with dibutyl sulfoxide, journal of chemical technology & biotechnology, 2018, 93(2): 467-475.
2.ming chen, yang jin, jun li*, yuqiang zhang, xing li. mechanism and kinetic model for autocatalysis in liquid-liquid system: oxidation of dibutyl sulfide with aqueous hydrogen peroxide, industrial & engineering chemistry research, 2017, 56(27): 7675-7684.
3. li wang,ming chen*, jun li, yang jin, yuqiang zhang, yubin wang. a novel substitution-based method for effective leaching of chromium (iii) from chromium-tanned leather waste: the thermodynamics, kinetics and mechanism studies, waste management, 2020, 103: 276-284.
4. yubin wang,ming chen*, yang jin, yu ouguang, jun li. cfd simulation of liquid flow characteristics in a rotor-stator spinning disc reactor, journal of the taiwan institute of chemical engineers, 2020, 115: 20-27.
5. haitao cai,ming chen*, jun li, yang jin, yujing ma, quan ma, pan zhu. insight into the activation of persulfate with cu2o/visible-light: cu(i) based photo-fenton and cu2o surface mediated free radical mechanism, materials science in semiconductor processing, 2022, 143: 106502.
6. haitao cai, yujing ma, jun li, yang jin, pan zhu,ming chen*. norfloxacin degradation by persulfate activated with cu2o@wo3 composites: efficiency, stability, mechanism, and degradation pathway, industrial & engineering chemistry research, 2022, 61: 11237−11248.
7. pan zhu, yujing ma, jun li, yang jin, haitao cai, chun xu, minggang huang, andming chen*. hydrophobic silver-based coordination polymer for the artificial photosynthesis of hydrogen peroxide in a two-phase system, industrial & engineering chemistry research, 2023, 62: 982−990.
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