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PDMS/PEI膜渗透汽化分离正丁醇/乙醇/水的性能及渗透通量关联模型研究 被引量:2

Performance of PDMS/PEI membrane in separating butanol/ethanol/water system by pervaporation and correlation model of permeation flux
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摘要 采用聚二甲基硅氧烷/聚醚酰亚胺(PDMS/PEI)膜渗透汽化分离正丁醇/乙醇/水体系,考察进料温度、进料组成等条件对膜渗透汽化分离性能的影响;采用Arrhenius型半经验渗透通量关联模型描述PDMS-PEI膜分离正丁醇/乙醇/水体系膜通量变化。结果表明,当原料液中正丁醇质量分数分别为4.0%、4.5%和5.0%时,正丁醇/乙醇/水三元体系中正丁醇渗透通量分别至少提高14.2%、17.7%和23.4%。渗透通量关联模型能较好地描述PDMS-PEI膜分离正丁醇/乙醇/水体系膜渗透通量变化。 The butanol/ethanol/water system is separated by pervaporation method via a polydimethylsiloxane/polyetherimide( PDMS/PEI) membrane.The influences of temperature and composition of feedstock and other operation conditions on the membrane pervaporation separation performance are investigated. The membrane permeation flux changes of butanol/ethanol/water system separated by PDMS/PEI membrane are correlated by Arrhenius-type permeation flux model.The results show that the individual pervaporation flux of butanol increases at least by 14. 2%,17. 7% and 23. 4% when the mass percentages of butanol in the raw ternary system are 4. 0%,4. 5% and 5. 0%respectively.The permeation flux correlation model describes well the membrane permeation flux changes when using PDMS/PEI membrane to separate the butanol/ethanol/water system.
作者 韦超广 戚律 周元冲 徐荣 张琪 钟璟 WEI Chao-guang;QI Lv;ZHOU Yuan-chong;XU Rong;ZHANG Qi;ZHONG Jing(School of Petrochemical Engineering, Changzhou University, Changzhou 213164, China)
出处 《现代化工》 CAS CSCD 北大核心 2017年第12期88-92,共5页 Modern Chemical Industry
基金 国家自然科学基金(21276029) 常州大学校基金(zmf15020101)
关键词 渗透汽化 PDMS/PEI膜 正丁醇/乙醇/水 通量模型 pervaporation PDMS/PEI membrane butanoL/ethanoL/water flux model
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  • 1徐玲芳,相里粉娟,陈祎玮,金万勤,徐南平.模拟的发酵液组分对聚二甲基硅氧烷/陶瓷复合膜渗透汽化性能的影响[J].化工学报,2007,58(6):1466-1472. 被引量:9
  • 2Gheshlaghi R, Scharer J M, Moo-Young M, Chou C P. Metabolic pathways of clostridia for producing butanol. Biotechnol. Adv., 2009, 27:764.
  • 3Qureshi N, Ezeji T C. Butanol, 'a superior biofuel ' production from agricultural residues (renewable biomass) : recent progress in technology. Bio fuels. Bioprod. Biore f. , 2008, 2:319.
  • 4Badr H R, Toledo R, Hamdy M K, Continuous acetone-ethanol-butanol fermentation by immobilized cells of clostridium acetobutylicum. Biomass. Bioenergy. , 2001, 2:119.
  • 5Huang Z, Guan H, Tan W L, Qiao X Y, Santi K. Pervaporation study of aqueous ethanol solution through zeolite incorporated multilayer poly ( vinyl alcohol ) membranes: effect of zeolites. J. Membr. Sci., 2006, 276: 260.
  • 6Tokay B, Falconer J L, Noble R D. Alcohol and water adsorption and capillary condensation in MFI zeolite membranes. J. Membr. Sci., 2009, 334:23.
  • 7Huang J C, Meagher M M. Pervaporation recovery of nbutanol from aqueous solutions and ABE fermentation broth using thin film silicalite filled silicone composite membranes. J. Membr. Sci., 2001, 19:231.
  • 8Milestone N B, Bibby D M. Adsorption of alcohols by adsorption on silicalites. J. Chem. Technol. Biotechnol. , 1981, 31:732.
  • 9Meagher N M M, Hutkins R W. Recovery of butanol from model solutions and fermentation broth using a silicalite/ silicon membrane. J. Memb. Sci. , 1999, 158:115.
  • 10Vroon Z A E P, Keizer K, Gilde M J, Verweij H, Burggraaf A J. Transport properties of alkane through ceramic thin zeolite MFI membranes. J. Membr. Sci. , 1996, 113:293.

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