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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Influence of the hydrothermal synthetic parameters on the pervaporative separation performances of CHA-type zeolite membranes
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Influence of the hydrothermal synthetic parameters on the pervaporative separation performances of CHA-type zeolite membranes

机译:水热合成参数对CHA型沸石膜渗透汽化分离性能的影响

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The hydrothermal synthesis of intermediate-silica CHA-type zeolite membranes from the precursor mixtures containing single K~+ alkali cations was studied in detail under different conditions, including the influencing factors of silica source, the crystallization temperature, water concentration and gel alkalinity of the initial gels. Additionally, CHA-type zeolite membranes were also prepared tentatively by the inter-zeolitic transformation method. The pervaporation (PV) measurements on these resulting CHA-type membranes for the dehydration of alcohol aqueous solutions were performed to investigate the quality of these membranes. As a result of these pervaporative studies, the optimal synthetic recipe was formulated with an optimized crystallization temperature spanning from 130 to 150 ℃. The PV data showed that the separation performances of CHA membranes obtained were strongly dependent on the type of silica source employed with Ludox HS-30 being the optimal silica source. Furthermore, synthetic temperature had a strong influence on the morphology of the resultant CHA membranes. Under the optimized synthetic condition, the total permeation flux and separation factor of a representative membrane were 2.20 kg/m~2 h and 3900, respectively, for the separation of 10 wt.% H2O/EtOH mixtures at 75 ℃. The CHA membranes were characterized by X-ray diffraction, field emission-scanning electron microscopy and energy dispersive X-ray spectroscopy.
机译:在不同条件下,研究了由单一的K〜+碱金属阳离子组成的前驱体混合物水热合成二氧化硅沸石膜的工艺条件,包括二氧化硅源的影响因素,结晶温度,水的浓度和凝胶碱度。初始凝胶。另外,还通过分子间转化法初步制备了CHA型沸石膜。对所得的CHA型膜进行酒精水溶液脱水的全蒸发(PV)测量,以研究这些膜的质量。这些渗透蒸发研究的结果是,制定了最佳合成配方,并在130至150℃的范围内优化了结晶温度。 PV数据表明,获得的CHA膜的分离性能在很大程度上取决于所用二氧化硅源的类型,其中Ludox HS-30是最佳二氧化硅源。此外,合成温度对所得CHA膜的形态有很大影响。在优化的合成条件下,在75℃下分离出10 wt。%H2O / EtOH混合物时,代表性膜的总渗透通量和分离系数分别为2.20 kg / m〜2 h和3900。 CHA膜通过X射线衍射,场发射扫描电子显微镜和能量色散X射线光谱进行了表征。

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