2013Acta Petrolei Sinica(Petroleum Processing Section)Requires access

Preparation of NaY Membrane in Fluorine Containing System

XU Longn

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Abstract

NaY zeolite membrane with high pervaporation performance was synthesized in fluorine containing system by the method of secondary hydrothermal growth.The crystallization of NaY zeolite and the pervaporation performance of NaY membrane synthesized in fluorine containing system were compared with those synthesized in fluorine-free system.Crystallization time and n(SiO2)/n(Al2O3) of the system were also optimized.The as-synthesized NaY zeolite layers were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM) and energy-dispersive X-ray spectroscopy(EDX).The results showed that the addition of NH4F in synthesis system suppressed the formation of P-type zeolite,which was bedded in the zeolite membrane as the impurity phase.Five NaY zeolite membranes prepared under optimized synthesis conditions of n(SiO2)/n(Al2O3) of 25,crystallization time of 6.5 h,showed a high average flux of(5.3±0.3) kg/(m2·h) and a good average separation factor of 63±3 for a mixture of water and ethanol with the mass ratio of 10/90 at 75℃,which were higher than those of NaY zeolite membranes prepared in fluorine-free system.

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What this paper is about

NaY zeolite membrane with high pervaporation performance was synthesized in fluorine containing system by the method of secondary hydrothermal growth.The crystallization of NaY zeolite and the pervaporation performance of NaY membrane synthesized in fluorine containing system were compared with those synthesized in fluorine-free system.Crystallization time and n(SiO2)/n(Al2O3) of the system were also optimized.The as-synthesized NaY zeolite layers were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM) and energy-dispersive X-ray spectroscopy(EDX).The results showed that the addition of NH4F in synthesis system suppressed the formation of P-type zeolite,which was bedded in the zeolite membrane as the impurity phase.Five NaY zeolite membranes prepared under optimized synthesis conditions of n(SiO2)/n(Al2O3) of 25,crystallization time of 6.5 h,showed a high average flux of(5.3±0.3) kg/(m2·h) and a good average separation factor of 63±3 for a mixture of water and ethanol with the mass ratio of 10/90 at 75℃,which were higher than those of NaY zeolite membranes prepared in fluorine-free system.

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Available abstract

NaY zeolite membrane with high pervaporation performance was synthesized in fluorine containing system by the method of secondary hydrothermal growth.The crystallization of NaY zeolite and the pervaporation performance of NaY membrane synthesized in fluorine containing system were compared with those synthesized in fluorine-free system.Crystallization time and n(SiO2)/n(Al2O3) of the system were also optimized.The as-synthesized NaY zeolite layers were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM) and energy-dispersive X-ray spectroscopy(EDX).The results showed that the addition of NH4F in synthesis system suppressed the formation of P-type zeolite,which was bedded in the zeolite membrane as the impurity phase.Five NaY zeolite membranes prepared under optimized synthesis conditions of n(SiO2)/n(Al2O3) of 25,crystallization time of 6.5 h,showed a high average flux of(5.3±0.3) kg/(m2·h) and a good average separation factor of 63±3 for a mixture of water and ethanol with the mass ratio of 10/90 at 75℃,which were higher than those of NaY zeolite membranes prepared in fluorine-free system.

Key concepts: Pervaporation, Zeolite, Crystallization, Membrane, Scanning electron microscope, Hydrothermal synthesis, Fluorine, Chemical engineering

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