Surface Modification of η–Al2O3 by SiO2 Impregnation to Enhance Methanol Dehydration Activity

Silica impregnated η‐Al2O3 catalysts (Si(number)Al) were prepared for methanol dehydration, with the number indicating the Si wt % added to η‐Al2O3. The Si(0.25)Al and Si(0.50)Al catalysts with the greatest number of acid sites had the highest methanol dehydration activities among the prepared catal...

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Published inBulletin of the Korean Chemical Society Vol. 38; no. 3; pp. 307 - 312
Main Authors Jo, Hoyong, Jung, Heon, Park, Jinwon, Jung, Kwang‐Deog
Format Journal Article
LanguageEnglish
Published Weinheim Wiley‐VCH Verlag GmbH & Co. KGaA 01.03.2017
대한화학회
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Summary:Silica impregnated η‐Al2O3 catalysts (Si(number)Al) were prepared for methanol dehydration, with the number indicating the Si wt % added to η‐Al2O3. The Si(0.25)Al and Si(0.50)Al catalysts with the greatest number of acid sites had the highest methanol dehydration activities among the prepared catalysts. Si addition up to 0.5 wt % increased the number of the acid sites, which was slightly decreased by further Si addition. The number of weak acid sites correlated well with the catalytic activity for methanol dehydration, but was not enough to explain the higher activity of the catalysts containing silica compared with η‐Al2O3. The acid sites of the Si(1.0)Al catalyst were less than those of the η‐Al2O3 catalyst but the two had similar activity. Si addition primarily increased the Lewis acid sites, although it generated a few new Brønsted acid sites and chemical hydrogen bonded sites. Nonetheless, it was apparent that the increase of Lewis acid sites was the main reason for the enhancement of η‐Al2O3 activity by SiO2 addition. On the other hand, the new Brønsted and Lewis acid sites and the chemical hydrogen bonded sites created by Si addition should not be neglected.
Bibliography:http://onlinelibrary.wiley.com/doi/10.1002/bkcs.11081/abstract
G704-000067.2017.38.2.039
ISSN:1229-5949
0253-2964
1229-5949
DOI:10.1002/bkcs.11081