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真空抽吸涂晶法制备中空纤维NaA分子筛膜(英文) 被引量:4

Scale-up of NaA zeolite membranes on α-Al_2O_3 hollow fibers by a secondary growth method with vacuum seeding
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摘要 NaA zeolite membranes were prepared by secondary growth method on the outer surface of α-Al2O3 hollow fiber supports. Vacuum seeding method was used for planting zeolite seeds on the support surfaces. Hydrothermal crystallization was then carried out in a synthesis solution with molar ratio of Al2O3:Si O2:Na2O:H2O =1:2:2:120 at 100 °C for 4 h. Effects of seeding conditions on preparation of hollow fiber Na A zeolite membranes were extensively investigated. Moreover, hollow fiber membrane modules with packing membrane areas of ca.0.1 and 0.2 m2 were fabricated to separate ethanol/water mixture. It is found that the thickness of seed layer is obviously affected by seed suspension concentration, coating time and vacuum degree. Close-packing seed layer is required to obtain high-quality membranes. The optimized seeding conditions(seed suspension mass concentration of 0.5%–0.7%, coating time of 5 s and vacuum degree of 10 k Pa) lead to dense Na A zeolite layer with a thickness of 6–8 μm. Typically, an as-synthesized hollow fiber Na A zeolite membrane exhibits good pervaporation performance with a permeation flux of 7.02 kg·m-2·h-1and separation factor N 10000 for separation of 90%(by mass) ethanol/water mixture at 75 °C. High reproducibility has been achieved for batch-scale production of hollow fiber Na A zeolite membranes by the hydrothermal synthesis approach. NaA zeolite membranes were prepared by secondary growth method on the outer surface of α-Al2O3 hollow fiber supports. Vacuum seeding method was used for planting zeolite seeds on the support surfaces. Hydrothermal crystallization was then carried out in a synthesis solution with molar ratio of Al2O3:SiO2:Na2O:H2O = 1:2:2:120 at 100 ℃ for 4 h. Effects of seeding conditions on preparation of hollow fiber NaA zeolite membranes were extensively investigated. Moreover, hollow fiber membrane modules with packing membrane areas of ca. 0.1 and 0.2 m2 were fabricated to separate ethanol/water mixture. It is found that the thickness of seed layer is obviously affected by seed suspension concentration, coating time and vacuum degree. Close-packing seed layer is required to obtain high-quality membranes. The optimized seeding conditions (seed suspension mass concentration of 0.5%-0.7% coating time of 5 s and vacuum degree of 10 kPa) lead to dense NaA zeolite layer with a thickness of 6-8 gin. Typically, an as-synthesized hollow fiber NaA zeolite membrane exhibits good pervaporation performance with a permeation flux of 7.02 kg· m^- 2· h^- 1 and separation factor 〉 10000 for sepa- ration of 90%; (by mass) ethanol/water mixture at 75 ℃ High reproducibility has been achieved for batch-scale production of hollow fiber NaA zeolite membranes by the hydrothermal synthesis approach.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第7期1114-1122,共9页 中国化学工程学报(英文版)
基金 Supported by the National Basic Research Program of China(2009CB623403) the National Natural Science Foundation of China(21176117,21222602) the Key Project of Chinese Ministry of Education(212060) the Outstanding Young Fund of Jiangsu Province(BK2012040) the"Six Top Talents"of Jiangsu Province,the Natural Science Foundation of the Jiangsu Higher Education Institutions of China(09KJA530002) a project funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)
关键词 中空纤维膜组件 NAA分子筛膜 AL2O3 真空度 生长 次生 NAA分子筛膜 优化培养条件 JNaA zeolite membraneVacuum seeding methodHollow fiberPervaporation
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