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Improved para-Xylene Selectivity in meta-Xylene Isomerization Over ZSM-5 Crystals with Relatively Long b-Axis Length

ZSM‐5 zeolite crystals with controllable b‐axis length (sheet‐like, S‐ZSM‐5; chain‐like, C‐ZSM‐5) have been synthesized by using urea and starch as additives in the starting aluminosilicate gels. X‐ray diffraction (XRD) patterns and scanning electron microscopy (SEM) images show that these zeolite s...

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Bibliographic Details
Published in:ChemCatChem 2013-06, Vol.5 (6), p.1517-1523
Main Authors: Liu, Yan, Zhou, Xiaozhao, Pang, Xinmei, Jin, Yinying, Meng, Xiangju, Zheng, Xiaoming, Gao, Xionghou, Xiao, Feng-Shou
Format: Article
Language:English
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Summary:ZSM‐5 zeolite crystals with controllable b‐axis length (sheet‐like, S‐ZSM‐5; chain‐like, C‐ZSM‐5) have been synthesized by using urea and starch as additives in the starting aluminosilicate gels. X‐ray diffraction (XRD) patterns and scanning electron microscopy (SEM) images show that these zeolite samples have good crystallinity. Transmission electron microscopy (TEM) images show that there is a strong chemical interaction between the stacked crystals in C‐ZSM‐5 samples. N2 sorption isotherms indicate that C‐ZSM‐5 crystals are mesoporous. Catalytic tests for the formation of p‐xylene from m‐xylene isomerization show that, compared with other zeolite catalysts, C‐ZSM‐5 catalysts give both high conversion and improved p‐xylene selectivity, which are attributed to the combination of relatively long b‐axis length and the present mesoporosity in the crystals. The improvement of p‐xylene selectivity in catalytic m‐xylene isomerisation is of great importance for selective industrial production of p‐xylene in the future. Join the chain gang: Chain‐like ZSM‐5 crystals that are synthesized in the presence of starch show higher p‐xylene selectivity in m‐xylene isomerization than normal, mesoporous, and sheet‐like ZSM‐5 crystals.
ISSN:1867-3880
1867-3899
DOI:10.1002/cctc.201200691