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Effect of Copper Precursors to the Activity for Dimethyl Ether Synthesis from Syngas over Cu-ZnO/gamma-Al2O3 Bifunctional Catalysts

Authors
Baek, Seung-ChanKang, Suk-HwanBae, Jong WookLee, Yun-JoLee, Dong-HyunLee, Kwan-Young
Issue Date
6월-2011
Publisher
AMER CHEMICAL SOC
Citation
ENERGY & FUELS, v.25, no.6, pp.2438 - 2443
Indexed
SCIE
SCOPUS
Journal Title
ENERGY & FUELS
Volume
25
Number
6
Start Page
2438
End Page
2443
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/112292
DOI
10.1021/ef200504p
ISSN
0887-0624
Abstract
The effect of precursors, such as copper nitrate, acetate, and chloride, on the bifunctional Cu-ZnO/gamma-Al2O3 catalysts was investigated for the direct dimethyl ether (DME) synthesis from syngas. The catalysts were characterized by measuring the reducibility and the surface area of metallic copper, together with their acidity. The well-dispersed copper particles with a high reducibility as well as a large amount of weak acidic sites on the bifunctional Cu-ZnO/gamma-Al2O3 catalysts, prepared from a copper acetate precursor, are responsible for its high catalytic activity. The quantity of the acidic sites is a more crucial factor for obtaining a high DME yield than the surface area of metallic copper on the bifunctional catalyst.
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