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IntroductionPersonal information Name: Zhongwei Ding Sex: male Birthday: July, 6, 1968 E-Mail:dingzw@mail.buct.edu.cn Tel: 86-10-64423603 (O) 86-10-64714280 (H) FAX: 86-10-64436781 Mail address: No. 15 Bei San Huan Dong Lu
Education l Ph.D. in Chemical Engineering, Dissertation: Study on the Module Performance and Dynamic Process of Membrane Distillation l M.A. in Chemical Engineering, l B.A. in Organic Chemical Technology,
Employment l 2008 – now, Professor, l 2002 – 2008, Associate Professor, l 1994-2002, Lecturer, l 2000,7-2000,9, visitor to UNESCO center for membrane science and technology, the l 2005,7-2000,8, visitor to UNESCO center for membrane science and technology, the EducationWork ExperienceSocial PositionSocial ActivitiesResearchCurrent Research Interests l Membrane science and technology, especially on membrane distillation and gas separation by membrane TeachingTeaching l 1994 – now, Unit Operation of Chemical Technology for B.A. students, Beijing University of Chemical Technology PostgraduatesFundingVertical ProjectHorizontal ProjectPublicationsPublished papers and books Books 1. Zhigang Lei, Biaohua Chen, Zhongwei Ding, Special Distillation Process, Chapter Six (P241-317), Elsevier, 2005(in English) 2. 丁忠伟主编,化工原理学习指导,化学工业出版社,北京:2006,2014(in Chinese) 3. 丁忠伟主编,化工原理(上,下),高等教育出版社, 北京:2014(in Chinese) 4. 杨祖荣主编,丁忠伟参编,化工原理,化学工业出版社,北京:2010,2014(in Chinese) 5. 杨祖荣主编,丁忠伟参编,化工原理,高等教育出版社,北京:2007,2011(in Chinese) Papers (in English)
1. Liyun, Ding Zhongwei, Liuliying, etc, Modeling and experimental study of membrane wetting in microporous hollow fiber membrane contactors,the Canadian Journal of Chemical Engineering, 2015, Vol 93(7): 1254(corresponding author) 2. Dongjie Lin, Zhongwei Ding, Liying Liu, Runyu Ma. Experimental study of vapor permeation of C5-C7 alkane through PDMS membrane,Chemical Engineering Research and Design, 2012 , 90:2023-2033 (corresponding author) 3. Dongjie Lin, Zhongwei Ding, Liying Liu, Ma Runyu. Modeling spiral-wound membrane modules with applications for gas/vapor permeation,Computers and Chemical Engineering, 2012 , 44 :20-33 (corresponding author) 4. Dongjie Lin, Zhongwei Ding, Liying Liu, Runyu Ma. A method to obtain gas-PDMS membrane Interaction parameters for UNIQUAC model,Chinese Journal of Chemical Engineering, 2013, 21(5) :485-493 (corresponding author) 5. Lin Dongjie, Ding Zhongwei, Liu Liying, Ma Runyu. Gas Permeation through Polydimethylsiloxane Membranes:Comparison of Three Model Combinations. Chemical Engineering & Technology (Sci).2012,35(10):1833-1841. (corresponding author) 6. Zhongwei Ding, Liying Liu, Zhe Liu, Runyu Ma,The use of intermittent gas bubbling to control membrane fouling in concentrating TCM extract by membrane distillation, Journal of Membrane Science, 2011, 372(1-2) 172-181(corresponding author) 7. Zhongwei Ding, Liying Liu, Zhe Liu, Runyu Ma, Fouling resistance in concentrating TCM extract by direct contact membrane distillation, Journal of Membrane Science, 2010, 362(1-2)317–325(corresponding author) 8. Liying Liu, Zhongwei Ding, Yan Lu, Runyu Ma, Modeling the bubbling enhanced microfiltration for submerged hollow fiber membrane module, Desalination, 2010, 256(1-3)77-83(corresponding author) 9. Zhongwei Ding, Rongrong Zhang, Bingwen Long, Liying Liu, Haifeng Tu, Solubilities of m-phthalic acid in petroleum ether and its binary solvent mixture of alcohol + petroleum ether, Fluid Phase Equilibria, 2010, 292 (1-2) 96-103 10. Yan Lu, Zhongwei Ding, Liying Liu, Zhijun Wang, Runyu Ma, The influence of bubble characteristics on the performance of submerged hollow fiber membrane module used in mircrofiltration. Separation and Purification Technology, 2008, 61(1)89-95(corresponding author) 11. Zhongwei Ding, Liying Liu, Jianfei Yu, Runyun Ma, Zurong Yang, Concentrating the extract of traditional Chinese medicine by direct contact membrane distillation, Journal of Membrane Science, 2008, 310 (12): 539-549 12. Zhongwei Ding, Liying Liu, Zhaoman Li, Runyu Ma, Zurong Yang, Experimental study of ammonia removal from water by membrane distillation (MD): The comparison of three configurations, Journal of Membrane Science, 2006,286(1-2)93-103 13. Zhongwei Ding, Liying Liu, Runru Ma, Study on the effect of flow maldistribution on the performance of hollow fiber module used in membrane distillation, Journal of Membrane Science, 2003,215(1-2)11-23 14. Zhongwei Ding, Liying Liu, Mohamed S. E1-Bourawi, Runyu Ma, Analysis of solar- powered membrane distillation system, Desalination, 2005, 172(1)27-40 15. Zhongwei Ding, Runyu Ma, Fane A G, A new model for mass transfer in direct contact membrane distillation, Desalination., 2003, 151(3), 217-227 16. M.S. El-Bourawi, Z. Ding, R. Ma, M. Khayet, A framework for better understanding membrane distillation separation process, Journal of Membrane Science, 2006,285(1-2)4-29 17. Liying Liu, Lijun Li, Zhongwei Ding, Runyu Ma, Zurong Yang, Mass transfer enhancement in coiled hollow fiber membrane module, Journal of Membrane Science, 2005,264(1-2)113-121 (corresponding author) 18. Liying Liu, Zhongwei Ding, Lijing Chang, Runyu Ma, Zurong Yang, Ultrasonic enhancement of membrane based deoxygenation and simultaneous influence on polymeric hollow fiber membrane, Separation and Purification Technology, 2007, 56 : 133–142 (corresponding author) 19. Jianwei Li, Zhigang Lei, Zhongwei Ding, Chengyue Li, Biaohua Chen, Azeotropic distillation: A review of mathematical models, Separation and purification reviews, 2004, 34(1)87-129 20. M.S. El-Bourawi, M. Khayet, R. Ma, Z.Ding et al, Application of vacuum membrane distillation for ammonia removal, Journal of Membrane Science, 2007,301(1-2)200-209 21. Yu, Qin; Li, Xu; Liying, Liu; Zhongwei, Ding. Zeolitic Imidazolate Framework Membranes with a High H2 Permeance Fabricated on a Macroporous Support with Novel Spherical Porous Hybrid Materials. Ind. Eng. Chem. Res., 2021, 60, 1387–1395.(corresponding author) 22. Yu, Qin; Li, Xu; Liying, Liu; Xiaoyu, Deng; Yucheng, Gao; Zhongwei, Ding. Ultrathin Porous Amine-based Solid Adsorbent Incorporated Zeolitic Imidazolate Framework-8 Membrane for Gas Separation. RSC Adv., 2021, 11, 28863-28875. (corresponding author) AwardsPatentHonor RewardAdmissions Information |