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Rapid preparation of high-silica CHA-type zeolite membranes and their separation properties

机译:高二氧化硅Cha型沸石膜的快速制备及其分离性能

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High-silica CHA-type zeolite membranes (HS-CHA membranes) have attracted considerable attention as zeolite membranes with high permeability, separation performance, and stability. However, long hydrothermal reaction times are required to form HS-CHA membranes. Therefore, in this study we investigated more rapid preparation methods to produce high performance HS-CHA membranes for practical applications. In our preparation process, FAU-type zeolite and N,N,N-trimethtyl-1-adamantammonium hydroxide were used as a raw material and structure-directing agent, respectively, through the secondary growth of seed crystals. As a result, the HS-CHA membranes could be prepared in a 5-h hydrothermal reaction. The permeation properties of the membranes were determined for pervaporation for either ethanol (EtOH), 2-propanol (IPA), or acetic acid (AcOH) solution containing water at 348 K. The permeation flux and separation factor of 80 wt% IPA solution with the use of the HS-CHA zeolite membrane with a Si/Al ratio of 11 were 20 kg m(-2) h(-1) and 1128, respectively. Furthermore, the gas separation performances of the HS-CHA membranes for binary mixtures of CO2 and CH4 were evaluated. For an equimolar mixture of the gases at 313 K, the CO2 permeance and the selectivity were 1.5 x 10(-6) mot M-2 S-1 Pa-1 and 115, respectively.
机译:高二氧化硅CHA型沸石膜(HS-CHA膜)吸引了具有高渗透性,分离性能和稳定性的沸石膜的相当大的关注。然而,长的水热反应时间需要形成HS-CHA膜。因此,在这项研究中,我们研究了更快速的制备方法,以生产高性能HS-CHA膜进行实际应用。在我们的制备方法中,通过晶种的二次生长,使用FAU型沸石和N,N,N,N-TiMethtyl-1-氢氧化铵作为原料和结构引导剂。结果,HS-CHA膜可以制备在5-H水热反应中。测定膜的渗透性,用于在348K下含有水的乙醇(EtOH),2-丙醇(IPA)或乙酸(AcOH)溶液的蒸发剂。渗透通量和分离因子为80wt%IPA溶液使用具有Si / Al比为11的HS-CHA沸石膜分别为20kg m(-2)h(-1)和1128。此外,评价了CO 2和CH4的二元混合物的HS-CHA膜的气体分离性能。对于313k的气体的等摩尔混合物,CO 2渗透率和选择性分别为1.5×10(6)mOT m-2 S-1 PA-1和115。

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