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Rapid synthesis of high-selective Al-rich beta zeolite membrane via an organic template-free route for pervaporation dehydration of water-n-butanol mixtures

[Display omitted] •Al-rich beta zeolite membranes were rapidly fabricated via an organic template-free route.•Growth process of Al-rich beta zeolite membrane transformed from high-silica beta seed crystals was studied.•A continuous and compact Al-rich beta zeolite membrane was obtained with the help...

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Bibliographic Details
Published in:Separation and purification technology 2023-03, Vol.308, p.122969, Article 122969
Main Authors: Li, Yuqin, Li, Yu, Yang, Zhengquan, Xu, Wenkai, Gui, Tian, Wu, Xiaowei, Zhu, Meihua, Chen, Xiangshu, Kita, Hidetoshi
Format: Article
Language:English
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Summary:[Display omitted] •Al-rich beta zeolite membranes were rapidly fabricated via an organic template-free route.•Growth process of Al-rich beta zeolite membrane transformed from high-silica beta seed crystals was studied.•A continuous and compact Al-rich beta zeolite membrane was obtained with the help of NaF.•The membrane showed a high selectivity even for dehydration of a 95 wt% n-BuOH/H2O mixture. The high-selective Al-rich beta zeolite membranes were rapidly fabricated on porous α-alumina supports via an organic template-free and fluoride-containing route. The growth process of Al-rich beta zeolite membrane transformed from high-silica beta seed crystals was investigated in details. With the help of NaF, the high-silica seed with a Si/Al ratio of ∼ 25 gradually dissolved into an amorphous layer, and then more AlO4 gathered on the amorphous layer and rearranged with SiO4 to form Al-rich beta crystals with a Si/Al ratio of ∼ 2.7. A continuous and compact membrane layer was obtained for a short crystallization time of 48 h by conventional heating. The synthesized Al-rich beta zeolite membrane with strong hydrophilicity was applied in the dehydration of organic solvents for the first time. The membrane exhibited a permeation flux of 2.84 kg m-2h−1 and a high separation factor of 17,900 for a 90 wt% n-BuOH/H2O mixture at 348 K. Even in a 95 wt% n-BuOH/H2O mixture, the membrane showed a high selectivity together with the water content in permeate of 99.93 wt%, indicating that the Al-rich beta zeolite membrane was a promising candidate for dehydration of organic solvents.
ISSN:1383-5866
1873-3794
DOI:10.1016/j.seppur.2022.122969