陶瓷支撑的有机复合膜及其在渗透汽化中的应用(英文)

来源 :Chinese Journal of Chemical Engineering | 被引量 : 0次 | 上传用户:pennate
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Pervaporation(PV),as an environmental friendly and energy-saving separation technology,has been received increasing attention in recent years.This article reviews the preparation and application of macroporous ceramic-supported polymer composite pervaporation membranes.The separation materials of polymer/ceramic composite membranes presented here include hydrophobic polydimethylsiloxane(PDMS) and hydrophilic poly(vinyl alcohol)(PVA),chitosan(CS) and polyelectrolytes.The effects of ceramic support treatment,polymer solution properties,interfacial adhesion and incorporating or blending modification on the membrane structure and PV performance are discussed.Two in-situ characterization methods developed for polymer/ceramic composite membranes are also covered in the discussion.The applications of these composite membranes in pervaporation process are summarized as well,which contain the bio-fuels recovery,gasoline desulfuration and PV coupled proc-ess using PDMS/ceramic composite membrane,and dehydration of alcohols and esters using ceramic-supported PVA or PVA-CS composite membrane.Finally,a brief conclusion remark on polymer/ceramic composite mem-branes is given and possible future research is outlined. Pervaporation (PV), as an environmental friendly and energy-saving separation technology, has been received prior attention in recent years. This article reviews the preparation and application of macroporous ceramic-supported polymer composite pervaporation membranes. The separation materials of polymer / ceramic composite membranes presented here include hydrophobic polydimethylsiloxane (PDMS) and hydrophilic poly (vinyl alcohol) (PVA), chitosan (CS) and polyelectrolytes. These effects of ceramic support treatment, polymer solution properties, interfacial adhesion and incorporating or blending modification on the membrane structure and PV performance is discussed. Two in-situ characterization methods developed for polymer / ceramic composite membranes are also covered in the discussion. These applications of these composite membranes in pervaporation process are summarized as well. Which contains the bio-fuels recovery, gasoline desulfuration and PV coupled proc-ess using PDMS / ceramic composite membrane , and dehydration of alcohols and esters using ceramic-supported PVA or PVA-CS composite membrane. Finaally, a brief conclusion remark on polymer / ceramic composite mem-branes is given and possible future research is outlined.
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