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- W2886980168 abstract "The authors developed eco-friendly non-chromium catalysts for acetaldehyde production through bioethanol dehydrogenation, consisting of copper and calcium silicate. Acetaldehyde selectivity was higher over copper calcium silicate catalysts with a CuO content of 40 wt % or more, because the number of acid sites on the calcium silicate was reduced, which helped prevent formation of byproducts. It was found that high ethanol conversion (39%–57%) and high acetaldehyde selectivity (91%–95%) could be achieved simultaneously at high temperature and high weight hourly space velocity conditions. Furthermore, it was shown that stable acetaldehyde production could be maintained over 20 h of time-on-stream. These catalysts were prepared from commercially available precursors and could be used in place of conventional copper chromite catalysts." @default.
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- W2886980168 date "2018-08-09" @default.
- W2886980168 modified "2023-10-13" @default.
- W2886980168 title "Acetaldehyde Production from Ethanol by Eco-Friendly Non-Chromium Catalysts Consisting of Copper and Calcium Silicate" @default.
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- W2886980168 doi "https://doi.org/10.1021/acs.iecr.8b02498" @default.
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