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典型文献
Breakthroughs on tailoring membrane materials for ethanol recovery by pervaporation
文献摘要:
Bioethanol,as a clean and renewable fuel,has gained increasing attention due to its major environmental benefits.Pervaporation(PV)is a promising and competitive technique for the recovery of ethanol from bioethanol fermentation systems due to the advantages of environmental friendliness,low energy con-sumption and easy coupling with fermentation process.The main challenge for the industrial application of ethanol perm-selective membranes is to break the trade-off effect between permeability and selectiv-ity.As membrane is the heart of the pervaporation separation process,this article attempts to provide a comprehensive survey on the breakthroughs of ethanol perm-selective PV membranes from the perspec-tives of tailoring membrane materials to enhance PV separation performance.The research and develop-ment of polymeric and organic/inorganic hybrid membranes are reviewed to explore the fundamental structure-property-performance relationships.It is found that mixed matrix membranes with well-designed membrane structures offer the hope of better control overphysi-/chemical micro-environment and cavity/pore size as well as size distribution,which may provide both high permeability and membrane selectivity to break the trade-off effect.The tentative perspective on the possible future directions of ethanol perm-selective membranes is also briefly discussed,which may provide some insights in developing a new generation of high-performance PV membranes for ethanol recovery.
文献关键词:
作者姓名:
Xia Zhan;Xueying Zhao;Zhongyong Gao;Rui Ge;Juan Lu;Luying Wang;Jiding Li
作者机构:
Key Laboratory of Cleaner Production and Integrated Resource Utilization of China National Light Industry,Beijing Technology and Business University,Beijing 100048,China;The Institute of Medicinal Plant Development,The Chinese Academy of Medical Sciences(CAMS)and Peking Union Medical College(PUMC),Beijing 100193,China;Beijing Key Laboratory of Lignocellulosic Chemistry,Beijing Forestry University,Beijing 100083,China;The State Key Laboratory of Chemical Engineering,Department of Chemical Engineering,Tsinghua University,Beijing 100084,China
引用格式:
[1]Xia Zhan;Xueying Zhao;Zhongyong Gao;Rui Ge;Juan Lu;Luying Wang;Jiding Li-.Breakthroughs on tailoring membrane materials for ethanol recovery by pervaporation)[J].中国化学工程学报(英文版),2022(12):19-36
A类:
Breakthroughs,Bioethanol,perm,overphysi
B类:
tailoring,materials,recovery,by,pervaporation,clean,renewable,fuel,has,gained,increasing,attention,due,major,environmental,benefits,Pervaporation,PV,promising,competitive,technique,from,bioethanol,fermentation,systems,advantages,friendliness,low,energy,sumption,easy,coupling,process,main,challenge,industrial,application,selective,membranes,trade,effect,between,permeability,heart,separation,this,article,attempts,provide,comprehensive,survey,breakthroughs,tives,enhance,performance,research,polymeric,inorganic,hybrid,are,reviewed,explore,fundamental,property,relationships,It,found,that,mixed,matrix,well,designed,structures,offer,hope,better,control,chemical,micro,cavity,pore,size,distribution,which,may,both,high,selectivity,tentative,perspective,possible,future,directions,also,briefly,discussed,some,insights,developing,generation
AB值:
0.494231
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