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Synthesis of high performance SAPO-34 zeolite membrane by a novel two-step hydrothermal synthesis plus dry gel conversion method

机译:新型两步水热合成加干凝胶转化法合成高性能SAPO-34分子筛膜

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High performance SAPO-34 zeolite membranes were prepared by a novel two-step method, hydro thermal synthesis + dry gel conversion method. A short hydrothermal synthesis was used to coat a thin gel layer on the porous ceramic support and the gel layer was converted into zeolite membrane in the following dry gel conversion treatment. XRD and SEM were used to monitor this two-step synthesis process. The final membrane thickness was determined by the hydrothermal synthesis time (or gel layer thickness), and no further growth occurred in the dry gel conversion treatment, since no mother liquor provided nutrients for membrane growth. Membrane thickness was reduced from 7 mu m (hydrothermal synthesis) to 2 mu m (two-step method). The obtained SAPO-34 zeolite membranes have CO2 permeances 13-16 x 10(-7) mol/(m(2) s Pa) and CO2-CH4 selectivity 40-60 at 4.0 MPa pressure drop. (C) 2016 Elsevier Inc. All rights reserved.
机译:通过新型的两步法,水热合成+干凝胶转化法制备了高性能的SAPO-34沸石膜。短时间的水热合成用于在多孔陶瓷载体上涂覆薄凝胶层,并且在随后的干凝胶转化处理中将凝胶层转化成沸石膜。 XRD和SEM被用来监控这一两步合成过程。最终的膜厚度由水热合成时间(或凝胶层厚度)确定,并且在干凝胶转化处理中没有进一步的生长发生,因为没有母液为膜的生长提供营养。膜厚度从7微米(水热合成)减少到2微米(两步法)。所获得的SAPO-34沸石膜在4.0 MPa压降下的CO2渗透率为13-16 x 10(-7)mol /(m(2)s Pa),CO2-CH4选择性为40-60。 (C)2016 Elsevier Inc.保留所有权利。

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