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作 者:Hengfei Zhang Yibin Wei Shufeng Niu Hong Qi
机构地区:[1]State Key Laboratory of Material-Oriented Chemical Engineering,Membrane Science and Technology Research Center,Nanjing Tech University,Nanjing 210009,China [2]Hongyi Ceramic Membranes Research Institute,Nanjing Hongyi Ceramic Nanofiltration Membranes Co.,Ltd.,Nanjing 210009,China
出 处:《Chinese Journal of Chemical Engineering》2021年第8期67-75,共9页中国化学工程学报(英文版)
基 金:supported by the National Natural Science Foundation of China(21490581);China Petroleum&Chemical Corporation(317008-6);Guangxi Innovation Driven Development Foundation(AA17204092).
摘 要:Monometallic doping has proved its superiority in improving either permselectivity or H_(2) permeability of organosilica membranes for H_(2)/CO_(2) separation,but it is still challenging to break the trade-off effect.Herein,we report a series of Pd-Nb bimetallic doped 1,2-bis(triethoxysilyl)ethane(Pd-Nb-BTESE,PNB)membranes with different metal doping routes for simultaneously improving H_(2) permeance and H_(2)/CO_(2) permselectivity by the synergetic effects of Pd and Nb.The doped Pd can exist in the BTESE network as nanoparticles while the doped Nb is incorporated into BTESE network forming Nb-O-Si covalent bonds.The metal doping routes significantly influence the microstructure of PNB networks and gas separation performance of the PNB membranes.We found that the PNB membrane with Pd doping priority(PNB-Pd)exhibited the highest surface area and pore volume,comparing with Nb doping priority(PNB-Nb)or Pd-Nb simultaneous doping(PNB-PdNb).The PNB-Pd membrane could not only exhibit an excellent H_(2) permeance of~10^(−6) mol·m^(−2)·s^(−1)·Pa^(−1) but also a high H_(2)/CO_(2) permselectivity of 17.2.Our findings may provide novel insights into preparation of bimetallic doped organosilica membranes with excellent H_(2)/CO_(2) separation performance.
关 键 词:HYDROGEN SEPARATION Membranes Bimetallic doping ORGANOSILICA
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