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首页> 外文期刊>Processes >The Influence of Cation Treatments on the Pervaporation Dehydration of NaA Zeolite Membranes Prepared on Hollow Fibers
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The Influence of Cation Treatments on the Pervaporation Dehydration of NaA Zeolite Membranes Prepared on Hollow Fibers

机译:阳离子处理对中空纤维制备的NaA分子筛膜的全蒸发脱水的影响

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NaA zeolite membrane is an ideal hydrophilic candidate for organic dehydrations; however, its instability in salt solutions limits its application in industries as the membrane intactness was greatly affected due to the replacement of cation ions. In order to explore the relationship between the structural variation and the cation types, the obtained NaA zeolite membranes were treated by various monovalent and divalent cations like Ag + , K + , Li + , NH 4 + , Zn 2+ , Mg 2+ , Ba 2+ and Ca 2+ . The obtained membranes were subsequently characterized by contact angle, scanning electron microscopy (SEM), pervaporation (PV), and vapor permeation (VP). The results showed that all of the hydrophilicities of the exchanged membrane were reduced, and the membrane performance varied with cation charges and sizes. For the monovalent cations, the membrane performance was largely determined by the cation sizes, where the membrane remained intact. On the contrary, for the divalent cation treatments, the membrane separation was generally reduced due to the presence of cation vacancies, resulting in some unbalanced stresses between the dispersive interaction and electrostatic forces, thereby damaging the membrane intactness. In the end, a set of gas permeation experiments were conducted for the two selected cation-treated membranes (K + and Ag + ) using H 2 , CO 2 , N 2 and CH 4 , and a much higher decreasing percentage (90% for K + ) occurred in comparison with the permeation drop (10%) in the PV dehydration, suggesting that the vaporization resistance of phase changing for the PV process was more influential than the water vapor transport in the pore channel.
机译:NaA沸石膜是用于有机脱水的理想亲水性候选材料。但是,它在盐溶液中的不稳定性限制了它在工业中的应用,因为膜的完整性由于阳离子的替换而受到很大影响。为了探索结构变异与阳离子类型之间的关系,将获得的NaA沸石膜用各种单价和二价阳离子进行处理,例如Ag +,K +,Li +,NH 4 +,Zn 2+,Mg 2+, Ba 2+和Ca 2+。随后通过接触角,扫描电子显微镜(SEM),渗透汽化(PV)和蒸汽渗透(VP)表征获得的膜。结果表明,交换膜的所有亲水性均降低,且膜性能随阳离子电荷和尺寸的变化而变化。对于一价阳离子,膜的性能主要取决于阳离子的大小,而膜仍保持完整。相反,对于二价阳离子处理,由于阳离子空位的存在,通常减少了膜的分离,从而导致分散相互作用和静电力之间的一些不平衡应力,从而破坏了膜的完整性。最后,使用H 2,CO 2,N 2和CH 4对两种选择的阳离子处理过的膜(K +和Ag +)进行了一套气体渗透实验,并且降低的百分比更高(90%与PV脱水中的渗透率下降(10%)相比,发生了K +),这表明PV过程中相变的抗汽化性比孔通道中的水蒸气传输更具影响力。

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