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Title

Advances in the Synthesis of Ferrierite Zeolite.

Authors

Xu, Hao; Zhu, Jie; Zhu, Longfeng; Zhou, Enmu; Shen, Chao; Masu, Hyuma

Abstract

As one of the most important porous materials, zeolites with intricate micropores have been widely employed as catalysts for decades due to their large pore volume, high surface area, and good thermal and hydrothermal stabilities. Among them, ferrierite (FER) zeolite with a two-dimensional micropore structure is an excellent heterogeneous catalyst for isomerization, carbonylation, cracking, and so on. In the past years, considering the important industrial application of FER zeolite, great efforts have been made to improve the synthesis of FER zeolite and thus decrease the synthesis cost and enhance catalytic performance. In this review, we briefly summarize the advances in the synthesis of FER zeolite including the development of synthesis routes, the use of organic templates, organotemplate-free synthesis, the strategies of morphology control, and the creation of intra-crystalline mesopores. Furthermore, the synthesis of hetero-atomic FER zeolites such as Fe-FER and Ti-FER has been discussed.

Subjects

ZEOLITES; FERRIERITE; POROUS materials; HETEROGENEOUS catalysts; MESOPOROUS materials; SURFACE area; MICROPORES

Publication

Molecules, 2020, Vol 25, Issue 16, p3722

ISSN

1420-3049

Publication type

Academic Journal

DOI

10.3390/molecules25163722

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