天津大学

潘福生

发布日期:2024-04-06 浏览次数:

潘福生 教师名称:潘福生 教师拼音名称:Pan Fusheng 出生日期:1982-04-11 性别:男 职称:副教授 其他联系方式 邮箱:fspan@tju.edu.cn 基本信息 研究方向 获奖情况 论文成果 My research explores the the relationship between structure-performance of polymer and polymer-based hybrid materials. Bioinspired approaches, such as biomineralizaiton, bioadhension, are incorporated into the fabrication of novel separation materials. The solubility, diffusivity and permeability of small molecules in those materials are studied upon membranes for pervaporation and gas separation. Molecular dynamics simulation is used to probe the mass transfer process at molecular level.      Membrane-based wasterwater treatment and seawater desalination①Anti-fouling ultrafiltration membrane, ②RO seawater desalination. Membrane-based gas separation①gas dehumidification;②carbon dioxide capture. Membrane-based liquid separation ( Pervaporation)①gasoline desulfurization;②ethanol-water separation, ③ Removal of VOCs in water 暂无内容 [25] Fusheng Pan, Fubing Peng, Zhongyi Jiang, Diffusion behavior of benzene/ cyclohexane molecules in poly(vinyl alcohol)-graphite hybrid membranes by molecular dynamics simulation, Chemical Engineering Science, 2007, 62, 703-710. .2019 [24] Fusheng Pan, Fubing Peng, Lianyu Lu, Jingtao Wang, Zhongyi Jiang, Molecular simulation on penetrants diffusion at the interface region of organic-inorganic hybrid membranes, Chemical Engineering Science, 2008, 63, 1072-1080. .2019 [23] Fusheng Pan, Jing Ma, Li Cui, Zhongyi Jiang, Water vapor/propylene sorption and diffusion behavior in PVA-P(AA-AMPS) blend membranes by GCMC and MD simulation, Chemical Engineering Science, 2009, 64, 5192-5197..2019 [22] Fusheng Pan, Huiping Jia, Zhongyi Jiang, Xiaohong Zheng, Jingtao Wang, Li Cui, P(AA-AMPS)-PVA/polysulfone composite hollow fiber membranes for propylene dehumidification, Journal of Membrane Science, 2008, 323, 395-403. .2019 [21] Fusheng Pan, Huiping Jia, Zhongyi Jiang, Xiaohong Zheng, Enhanced dehumidification performance of PVA membranes by tuning the water state through incorporating organophosphorus acid, Journal of Membrane Science, 2008, 325, 727-734..2019 [20] Fusheng Pan, Huiping Jia, Shizhang Qiao, Zhongyi Jiang, Jingtao Wang, Baoyi Wang, Yurong Zhong, Bioinspired fabrication of high performance composite membranes with ultrathin defect-free skin layer, Journal of Membrane Science, 2009, 341, 279-285. .2019 [19] Fusheng Pan, Qinglai Cheng, Huiping Jia, Zhongyi Jiang, Facile approach to polymer-inorganic nanocomposite membrane through a biomineralization-inspired process, Journal of Membrane Science, 2010, 357, 171-177..2019 [18] Fusheng Pan, Huiping Jia, Qinglai Cheng, Zhongyi Jiang, Bio-inspired fabrication of composite membranes with ultrathin polymer-silica nanohybrid skin layer, Journal of Membrane Science, 2010, 362, 119-126. .2019 [17] Fusheng Pan, Ruisi Xing, Zhongyi Jiang, Analysis of pH-dependent Structure and Mass Transfer Characteristics of Polydopamine Membranes by Molecular Dynamics Simulation, Chinese Journal of Chemical Engineering, 2014, 22, 1092-1097.2019 [16] Cuihong Zhao, Zhongyi Jiang, Jing Zhao, Keteng Cao, Qian Zhang, Fusheng Pan*, High pervaporation dehydration performance of the composite membrane with an ultrathin Alginate/poly(acrylic acid)−Fe3O4 active layer, Industrial &Engineering Chemistry Research, 2014, 53, 1606−1616. .2019 [15] Keteng Cao, Zhongyi Jiang, Jing Zhao, Cuihong Zhao, Chengyun Gao, Fusheng Pan*, Baoyi Wang, Xingzhong Cao, Jing Yang, Enhanced water permeation through sodium alginate membranes by incorporating graphene oxides, Journal of Membrane Science, 2014, 469, 272–283.2019 [14] Chengyun Gao, Minhua Zhang, Zhongyi Jiang, Jiayou Liao, Xianmei Xie, Tinghong Huang, Jing Zhao, Jinshuan Bai, Fusheng Pan*, Preparation of highly water-selective membrane for dehydration of acetone by incorporating Potassium montmorillonite to construct ionized water channel, Chemical Engineering Science, 2015, 135, 461-471..2019 [13]Shengnan Yu, Zhongyi Jiang, He Ding, Fusheng Pan*,Baoyi Wang, Jing Yang, Xingzhong Cao, Elevated pervaporation performance of polysiloxane membrane using channels and active sites of metal organic framework CuBTC, Journal of Membrane Science, 2015, 481, 73-81. .2019 [12] Dong Yang, Sen Yang, Zhongyi Jiang, Shengnan Yu, Jilai Zhang, Fusheng Pan*, Xingzhong Cao, Baoyi Wang, Jing Yang, Polydimethyl siloxane-graphene nanosheets hybrid membranes with enhanced pervaporative desulfurization performance, Journal of Membrane Science, 2015, 487, 152-161..2019 [11] Keteng Cao, Zhongyi Jiang, Xiaoshan Zhang, Yamin Zhang, Jing Zhao, Ruisi Xing, Sen Yang, Chengyun Gao, Fusheng Pan*, Highly water-selective hybrid membrane by incorporating g-C3N4 nanosheets into polymer matrix, Journal of Membrane Science, 2015, 490, 72-83. .2019 [10] BoxinGao, ZhongyiJiang, CuihongZhao, HassanGomaa, FushengPan*, Enhanced pervaporative performance of hybrid membranes containing Fe3O4@CNT nanofillers, Journal of Membrane Science, 2015, 492, 230–241.2019 [9] Shengnan Yu, Zhongyi Jiang, Sen Yang, He Ding, Baofeng Zhou, Kun Gu, Dong Yang, Fusheng Pan*, Baoyi Wang, Sheng Wang, Xingzhong Cao, Highly swelling resistant membranes for model gasoline desulfurization, Journal of Membrane Science, 2016, 514, 440-449..2019 [8] Boxin Gao, Zhongyi Jiang, Guanhua Liu, Ruisi Xing, Hong Wu, Fusheng Pan*, Baoyi Wang, Xingzhong Cao, Enhanced pervaporative performance of hybrid membrane by incorporating amphiphilic carbonaceous material, Journal of Membrane Science, 2016, 520, 951–963..2019 [7] Guanhua Liu, Zhongyi Jiang, Xuanxuan Cheng, Cheng Chen, Hao Yang, Hong Wu, Fusheng Pan*, Peng Zhang, Xingzhong Cao, Elevating the selectivity of layer-by-layer membranes by in situ Bioinspired mineralization, Journal of Membrane Science, 2016, 520, 364–373..2019 [6] Xuanxuan Cheng, Fusheng Pan* , Manru Wang, Weidong Li, Yimeng Song , Guanhua Liu, Hao Yang , Boxin Gao, Hong Wu, Zhongyi Jiang*, Hybrid membranes for pervaporation separations, Journal of Membrane Science, 2017, 541, 329-346..2019 [5] Guanhua Liu, Zhongyi Jiang, Keteng Cao, Sankar Nair, Xuanxuan Cheng, Jing Zhao, Hassan Gomaa, Hong Wu, Fusheng Pan*, Pervaporation performance comparison of hybrid membranes filled with two-dimensional ZIF-L nanosheets and zero-dimensional ZIF-8 nanoparticles, Journal of Membrane Science, 2017, 523, 185–196..2019 Hong Wu, Zhongyi Jiang*, Baoyi Wang, Xingzhong Cao, Peng Zhang, Enhanced desulfurization performance and stability of Pebax membrane by incorporating Cu+ and Fe2+ ions co-impregnated carbon nitride, Journal of Membrane Science, 2017, 526, 94–105..2019 [4] He Ding, Fusheng Pan*, Ena Mulalic, Hassan Gomaa, Weidong Li, Hao Yang,.2019 [3] Guanhua Liu, Zhongyi Jiang, Cheng Chen, Lipeng Hou, Boxin Gao, Hao Yang, Hong Wu, Fusheng Pan*, Peng Zhang, Xingzhong Cao, Preparation of ultrathin, robust membranes through reactive layer-by-layer (LBL) assembly for pervaporation dehydration, Journal of Membrane Science, 2017, 537, 229-238..2019 [2] Xuanxuan Cheng, Zhongyi Jiang, Xiaopo Cheng, Song Guo, Lei Tang, Hao Yang , Hong Wu, Fusheng Pan*, Peng Zhang, Xingzhong Cao, Baoyi Wang, Bimetallic Metal-organic Frameworks Nanocages as Multi-functional Fillers for Water-selective Membranes, Journal of Membrane Science, 2017, Inpress..2019 [1] Fusheng Pan, He Ding, Weidong Li, Yimeng Song, Hao Yang, Hong Wu, Zhongyi Jiang, Baoyi Wang, Xingzhong Cao, Constructing facilitated transport pathway in hybrid membranes by incorporating MoS2 nanosheets, Journal of Membrane Science, 2017, Inpress..2019 教育经历 2006.9-2009.7 Tianjin University   Chemical Technology   PhD 2004.9-2006.8 Tianjin University   Chemical Technology   Master 2000.8-2004.7 Tianjin University   Chemical Engineering and Technology   Bachelor 工作经历 2015.11 -2016.11 |School of Chemical and Biomolecular Engineering|Georgia Institute of Technology|Visiting Scholar 2011.12 -2019.12 |School of Chemical Engineering and Technology|Tianjin University|Associate Professor 2009.9 -2011.12 |Department of Chemical Engineering|Tsinghua University|Postdoctor 团队成员 仿生与生物启发膜和膜过程团队 团队名称:仿生与生物启发膜和膜过程团队 团队介绍:基于仿生和生物启发思想,以水处理、新能源/清洁能源、二氧化碳捕集利用等为研究对象,以节能减排和资源高效利用为目标,制备高性能材料,用于绿色分离过程(膜分离)、绿色反应过程(酶催化、光催化)和绿色能量转化过程(燃料电池)强化。

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