个人简介
教育背景
2009/09-2014/06,浙江大学,环资学院环境工程系,博士
2005/09-2009/06,浙江大学,环资学院环境工程系,学士
工作经历
2018/1-至今,华侨大学,化工学院,副教授
2014/8-2017/12,华侨大学,化工学院,讲师
2014/8-2016/7,华侨大学,化学工程与技术博士后流动站,博士后
课程教学
本科生课程:固体废弃物处理与处置及实验、环境工程学实验、环境工程课程设计、可再生能源与低碳生活、环境保护和可持续发展
研究生课程:高等固体废物管理、工业烟气治理新技术
科研项目
国家青年科学基金项目,21808074,新型功能化离子液体相变体系的构建及其捕集CO2反应机理,2019-2021,25万,在研,主持
国家重点研发计划大气专项课题一子任务,2018YFC0214103,“精细化工园区大气污染全过程控制与技术集成示范”项目课题一“实时立体监测体系和高分辨动态排放清单建立” ,2018-2021,58万,在研,主持
福建省自然科学基金青年创新项目,2016J05038,新型功能化离子液体捕集CO2的基团构效及反应机理,2016-2018,4万元,结项,主持
中国博士后科学基金第58批面上基金、2015M582031,多氨基功能化离子液体构效关系及其捕集CO2机理,2015/09-2016/08,5万元,结项,主持
福建省自然科学基金青年创新项目,2016J05038,新型功能化离子液体捕集CO2的基团构效及反应机理,2016/04-2019/04,4万元,结项,主持
福建省中青年教师教育科研项目,JA15028,新型功能化离子液体脱除生物燃气CO2的研究,2015/09-2018/08,2万元,结项,主持
华侨大学科研启动费项目,15BS106,多氨基功能化离子液体捕集CO2的吸收-解吸机理,2014/08-2016/07,4万元,结项,主持
奖励荣誉
[1] 生物还原耦合化学吸收处理烟气中NOx的应用基础研究,2015. 9,浙江省自然科学奖二等奖。(排名第五)
[2] 华侨大学第二届教师“精彩一堂课”PPT大赛一等奖
[3] 华侨大学2014-2016学年优秀班主任
授权发明专利
荆国华,周小斌,吕碧洪,周作明. 一种用于捕集二氧化碳的两相胺吸收剂及其应用, 中国发明专利,授权专利号:ZL 2016 1 0545683. 8.
李伟,吕碧洪,夏银锋,李素静. 一种氨基乙酸功能性离子液体及其制备方法和应用, 中国发明专利,授权专利号:201410004344. X.
近期论文
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Bihong Lv, Kexuan Yang, Xiaobin Zhou, Zuoming Zhou, Guohua Jing *. 2-Amino-2-methyl-1-propanol based non-aqueous absorbent for energy-efficient and non-corrosive carbon dioxide capture. Applied Energy, 2020, 264, 114703.
Xiaohui Zhan, Bihong Lv *, Kexuan Yang, Guohua Jing, Zuoming Zhou. Dual-functionalized ionic liquid biphasic solvent for carbon dioxide capture: High-efficiency and energy saving. Environmental Science & Technology, 2020, 54(10), 6281-6288.
Kexuan Yang, Bihong Lv *, Huazhen Shen, Guohua Jing, Zuoming Zhou. Coupling life cycle assessment with scenario analysis for sustainable management of disperse blue 60#. Environmental Science and Pollution Research. 2020. DOI: 10.1007/s11356-020-08958-z.
Bihong Lv, Xiaobin Zhou, Zuoming Zhou, Guohua Jing *. Kinetics and thermodynamics of CO2absorption into a novel DETA-AMP-PMDETA biphasic solvent. ACS Sustainable Chemistry and Engineering, 2019, 7: 13400-13410.
Junhai Wu, Bihong Lv *, Xiaomin Wu, Zuomin Zhou, Guohua Jing. Aprotic heterocyclic anion-based dual-functionalized ionic liquid solutions for efficient CO2 uptake: Quantum chemistry calculation and experimental research. ACS Sustainable Chemistry and Engineering, 2019, 7(7): 7312-7323.
Bihong Lv, Kunxiang Wu, Zuoming Zhou, Guohua Jing * How did the corrosion inhibitor work in amino-functionalized ionic liquids for CO2 capture: Quantum chemical calculation and experimental. International Journal of Greenhouse Gas Control. 2019: 91 102846.
Bihong Lv, Junhai Wu, Chengrui Lin, Zuoming Zhou, Guohua Jing *. Kinetic and heat duty study of aprotic heterocyclic anion-based dual functionalized ionic liquid solutions for carbon capture. Fuel, 2019, 29: 116676.
Bihong Lv, Guohua Jing *, Yuhao Qian, Zuoming Zhou. An efficient absorbent of amine-based a mino acid-functionalized ionic liquids for CO2 capture: High capacity and regeneration ability. Ch emical Engineering Journal, 2016, 289: 212-218.
Bihong Lv, Yinfeng Xia, Cheng sun, Nan Liu, Wei Li, Sujing Li*. A novel hydrophilic amino a cid ionic liquid [C2OHmim][Gly] as aqueous sorbent for CO2 capture. International Journal of Gr eenhouse Gas Control, 2016, 46: 1-6.
Bihong Lv, Bingsong Guo, Zuoming Zhou, Guohua Jing *. Mechanisms of CO2 capture into monoethanolamine solution with different CO2 loading during the absorption/desorption processes. Environmental Science & Technology, 2015, 49(17): 10728-10735.
Bihong Lv, Zhaoren Yang, Fujun Pan, Zuomng Zhou, Guohua Jing *. Immobilization of carbonic anhydrase on carboxyl-functionalized ferroferric oxide for CO2 capture. International Journal of Biological Macromolecules, 2015, 79: 719-725.
Bihong Lv, Yun Shi, Cheng Sun, Nan Liu, Wei Li, Sujing Li*. CO2 capture by a highly-efficient aqueous blend of monoethanolamine and a hydrophilic amino acid ionic liquid [C2OHmim][Gly]. Chemical Engineering Journal, 2015, 270: 372-377.
Bihong Lv*, Cheng Sun, Nan Liu, Wei Li, Sujing Li*. Mass transfer and kinetics of CO2 absorption into aqueous monoethanolamine/1-hydroxyethy-3-methyl imidazolium glycinate solution. Chemical Engineering Journal, 2015, 280: 659-702.