首页|Catalytic performance of Zn-containing MFI zeolites in acetone-to-aromatics reactions

Catalytic performance of Zn-containing MFI zeolites in acetone-to-aromatics reactions

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MFI metallosilicates AlMFI and FeMFI were prepared by hydrothermal synthesis,and Zn species were introduced into these MFI-type zeolites by ion exchange.Acetone-to-aromatics(ATA)reactions were carried out using the MFI-type zeolites before and after Zn ion exchange treatment.We examined the effects of zeolite Br0nsted acid strength,Zn species,and Zn dose on(1)selective production of benzene-toluene-xylene(BTX)from acetone,and(2)catalyst lifetime.AlMFI selectively produced BTX due to its strong Br0nsted acidity,and the introduction of Zn further enhanced its BTX selectivity.In contrast,FeMFI showed high selectivity for light olefins even after Zn ion exchange treatment.Increasing the Zn dose added to AlMFI did not improve its BTX selectivity but did suppress the catalytic deactivation rate.Together,the effects of Zn addition and AlMFI's strong Br0nsted acidity resulted in highly selective BTX production and long catalyst lifetimes in the ATA reaction.

Zn-containing MFI zeoliteAcetone-to-aromatics reactionBTX synthesisBronsted acid strengthCatalyst lifetime

Risako Betsuno、Yuma Hotta、Yuichiro Hirota

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Department of Life Science and Applied Chemistry,Nagoya Institute of Technology,Gokiso-cho,Showa-ku,Nagoya,466-8555,Japan

Division of Chemical Engineering,Graduate School of Engineering Science,Osaka University,1-3 Machikaneyama,Toyonaka,Osaka,560-8531,Japan

2022

Microporous and mesoporous materials

Microporous and mesoporous materials

EISCI
ISSN:1387-1811
年,卷(期):2022.341
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