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通过八面沸石的沸石间转化合成菱沸石的研究。

Study on the Synthesis of Chabazite Zeolites via Interzeolite Conversion of Faujasites.

作者信息

Dang Long Van, Nguyen Thu Thi Minh, Do Dang Van, Le Son Thanh, Pham Trong Dinh, Le Anh Thi Mai

机构信息

VNU-University of Science, Vietnam National University, Hoan Kiem, Hanoi 100000, Vietnam.

出版信息

J Anal Methods Chem. 2021 Mar 29;2021:5554568. doi: 10.1155/2021/5554568. eCollection 2021.

Abstract

The interzeolite conversion of faujasite (FAU-type) zeolites to chabazite (CHA-type) zeolite in the presence of N,N,N-trimethyladamantammonium and N,N,N-dimethylethylcyclohexylammonium cations was investigated over a large compositional range by carefully controlling the reaction mixture compositions. Highly crystalline CHA zeolites were also obtained by the transformation of several zeolite types including EMT, LTL, LEV, RTH, and MFI frameworks. The formation of CHA zeolite from FAU zeolite precursors was substantially faster than that from zeolite L with a similar composition. High-silica CHA zeolites were also produced successfully using a mixture of TMAda with a number of less expensive organic structure-directing agents. The CHA zeolite materials have been synthesized with high crystallinity and with a Si/Al ratio ranging from 5 to 140. Our data support the importance of structural similarity between the zeolite precursors, nucleation/crystallization processes, and the zeolite product in the interzeolite conversion compared to conventional amorphous aluminosilicate gels. Our synthetic methods could be used to prepare other 8-membered ring zeolites such as AEI and AFX frameworks, potential candidates for selective catalytic reduction of NOx, light olefin production, and CO abatement.

摘要

通过仔细控制反应混合物组成,在较大的组成范围内研究了在N,N,N-三甲基金刚烷铵和N,N,N-二甲基乙基环己基铵阳离子存在下,八面沸石(FAU型)沸石向菱沸石(CHA型)沸石的沸石间转化。通过包括EMT、LTL、LEV、RTH和MFI骨架在内的几种沸石类型的转化,也获得了高结晶度的CHA沸石。由FAU沸石前驱体制备CHA沸石的速度比由具有相似组成的L型沸石快得多。使用TMAda与多种较便宜的有机结构导向剂的混合物也成功制备了高硅CHA沸石。已合成出具有高结晶度且硅铝比范围为5至140的CHA沸石材料。与传统的无定形硅铝酸盐凝胶相比,我们的数据支持了沸石前驱体、成核/结晶过程和沸石产物之间的结构相似性在沸石间转化中的重要性。我们的合成方法可用于制备其他8元环沸石,如AEI和AFX骨架,它们是选择性催化还原NOx、生产轻质烯烃和减少CO的潜在候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d858/8024103/22ca1a58783d/JAMC2021-5554568.001.jpg

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