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Influence of the Compensating Cation Nature on the Water Adsorption Properties of Zeolites

机译:阳离子补偿性对沸石吸水性能的影响

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摘要

The influence of the compensating cation (Na , Li , Mg ) nature on the water adsorption properties of LTA and FAU-type zeolites was investigated. Cation exchanges were performed at 80 °C for 2 h using 1 M aqueous solutions of lithium chloride (LiCl) or magnesium chloride (MgCl ). XRF and ICP-OES analyses indicate that the cation exchange yields reach values between 59 to 89% depending on the number of exchange cycles and the nature of the zeolite and cation, while both zeolites structures are preserved during the process, as shown by XRD and solid state NMR analyses. Nitrogen adsorption-desorption experiments indicate a higher available microporous volume when sodium cations are replaced by smaller monovalent lithium cations or by divalent magnesium cations because twice less cations are needed compared to monovalent cations. Up to 15% of gain in the available microporous volume is obtained for FAU-type zeolites exchanged with magnesium cation. This improvement facilitates the adsorption of water with an increase in the water uptake up to 30% for the LTA and FAU type zeolites exchanged with magnesium. These exchanged zeolites are promising for uses in water decontamination because a smaller amount is needed to trap the same amount of water compared to their sodium counterparts.
机译:研究了补偿阳离子(Na,Li,Mg)性质对LTA和FAU型沸石的吸水性能的影响。使用1 M氯化锂(LiCl)或氯化镁(MgCl 2)水溶液在80°C下进行2小时阳离子交换。 XRF和ICP-OES分析表明,根据交换循环的次数以及沸石和阳离子的性质,阳离子交换收率达到59%到89%之间的值,而在此过程中两种沸石的结构均得以保留,如XRD和固态NMR分析。氮吸附-解吸实验表明,当钠阳离子被较小的一价锂阳离子或二价镁阳离子代替时,由于微孔体积要比一价阳离子少两倍,因此可利用的微孔体积更高。与镁阳离子交换的FAU型沸石可获得的可用微孔体积最多可增加15%的增益。对于与镁交换的LTA和FAU型沸石,这种改进促进了水的吸附,并且吸水率增加了30%。这些交换的沸石有望用于水净化,因为与钠的对应物相比,需要更少的量来捕集相同量的水。

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