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作 者:Qian Yang Lin Zhang Xiao Xie Qiong Sun Jianguang Feng Hongzhou Dong Na Song Liyan Yu Lifeng Dong
机构地区:[1]College of Materials Science and Engineering,Qingdao University of Science and Technology,Qingdao,266042,China [2]Qingdao University of Science&Technology Analytical&Testing Center,Qingdao,266042,China [3]Department of Physics,Hamline University,St.Paul,55104,USA
出 处:《Frontiers of Chemical Science and Engineering》2023年第9期1183-1195,共13页化学科学与工程前沿(英文版)
基 金:This work was partially supported by the National Natural Science Foundation of China(Grant Nos.21776147,21606140,61604086,21905153 and 51472174);the Postdoc Applied Research Project Funding of Qingdao(Grant No.04000669);the International Science&Technology Cooperation Program of China(Grant No.2014DFA60150);the Department of Science and Technology of Shandong Province(Grant Nos.ZR2018BB066 and 2016GGX104010);the Qingdao Municipal Science and Technology Bureau(Grant No.19-6-1-91-nsh);the Department of Education of Shandong Province(Grant Nos.J16LA14 and J17KA013).Also,Dong Lifeng thanks financial support from the Malmstrom Endowed Fund at Hamline University.
摘 要:Improving the performance of reverse osmosis membranes remains great challenge to ensure excellent NaCl rejection while maintaining high water permeability and chlorine resistance. Herein, temperature-responsive intelligent nanocontainers are designed and constructed to improve water permeability and chlorine resistance of polyamide membranes. The nanocontainer is synthesized by layer-by-layer self-assembly with silver nanoparticles as the core, sodium alginate and chitosan as the repair materials, and polyvinyl alcohol as the shell. When the polyamide layer is damaged by chlorine attack, the polyvinyl alcohol shell layer dissolves under temperature stimulation of 37 ℃, releasing inner sodium alginate and chitosan to repair broken amide bonds. The polyvinyl alcohol shell responds to temperature in line with actual operating environment, which can effectively synchronize the chlorination of membranes with temperature response and release inner materials to achieve self-healing properties. With adding temperature-responsive intelligent nanocontainers, the NaCl rejection of thin film composite membrane decreased by 15.64%, while that of thin film nanocomposite membrane decreased by only 8.35% after 9 chlorination cycles. Effective repair treatment and outstanding chlorine resistance as well as satisfactory stability suggest that temperature-responsive intelligent nanocontainer has great potential as membrane-doping material for the targeted repair of polyamide reverse osmosis membranes.
关 键 词:reverse osmosis NANOCONTAINER SELF-HEALING chlorine resistance water permeability
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