Effect of water on Cu/Zn catalyst for hydrogenation of fatty methyl ester to fatty alcohol

The effect of water on Cu/Zn catalyst prepared by co-precipitation for hydrogenation of methyl laurate in a slurry phase was studied using a stirred autoclave reactor system. The catalysts were characterized by means of XRD, BET, H 2 -TPR, SEM and TEM. The results indicate that catalytic activity de...

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Published inThe Korean journal of chemical engineering Vol. 26; no. 6; pp. 1574 - 1579
Main Authors Huang, Hui, Cao, Guiping, Fan, Chunling, Wang, Shaohong, Wang, Shujia
Format Journal Article
LanguageEnglish
Published Boston Springer US 01.11.2009
한국화학공학회
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Abstract The effect of water on Cu/Zn catalyst prepared by co-precipitation for hydrogenation of methyl laurate in a slurry phase was studied using a stirred autoclave reactor system. The catalysts were characterized by means of XRD, BET, H 2 -TPR, SEM and TEM. The results indicate that catalytic activity decreases with increased amount of water in methyl laurate. Correlating with the results from the above characterization, it is found that the main causes for the water deactivation of the Cu/Zn catalyst were the water occlusion of active catalyst sites by the low solubility of water in the substrate and the promotion of crystal growth, as well as the Cu/Zn catalyst agglomeration in the presence of water.
AbstractList The effect of water on Cu/Zn catalyst prepared by co-precipitation for hydrogenation of methyl laurate in a slurry phase was studied using a stirred autoclave reactor system. The catalysts were characterized by means of XRD, BET, H 2 -TPR, SEM and TEM. The results indicate that catalytic activity decreases with increased amount of water in methyl laurate. Correlating with the results from the above characterization, it is found that the main causes for the water deactivation of the Cu/Zn catalyst were the water occlusion of active catalyst sites by the low solubility of water in the substrate and the promotion of crystal growth, as well as the Cu/Zn catalyst agglomeration in the presence of water.
The effect of water on Cu/Zn catalyst prepared by co-precipitation for hydrogenation of methyl laurate in a slurry phase was studied using a stirred autoclave reactor system. The catalysts were characterized by means of XRD, BET, H2-TPR, SEM and TEM. The results indicate that catalytic activity decreases with increased amount of water in methyl laurate. Correlating with the results from the above characterization, it is found that the main causes for the water deactivation of the Cu/Zn catalyst were the water occlusion of active catalyst sites by the low solubility of water in the substrate and the promotion of crystal growth, as well as the Cu/Zn catalyst agglomeration in the presence of water. KCI Citation Count: 16
Author Wang, Shaohong
Wang, Shujia
Cao, Guiping
Huang, Hui
Fan, Chunling
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Issue 6
Keywords Water
Deactivation
Fatty Alcohol
Cu/Zn Catalyst
Language English
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한국화학공학회
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Snippet The effect of water on Cu/Zn catalyst prepared by co-precipitation for hydrogenation of methyl laurate in a slurry phase was studied using a stirred autoclave...
The effect of water on Cu/Zn catalyst prepared by co-precipitation for hydrogenation of methyl laurate in a slurry phase was studied using a stirred autoclave...
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SubjectTerms Biotechnology
Catalysis
Chemistry
Chemistry and Materials Science
Industrial Chemistry
Industrial Chemistry/Chemical Engineering
Materials Science
Reaction Engineering
화학공학
Title Effect of water on Cu/Zn catalyst for hydrogenation of fatty methyl ester to fatty alcohol
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Volume 26
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