Investigation of the Reaction Pathways of Biomass‐Derived Oxygenate Conversion into Monoalcohols in Supercritical Methanol with CuMgAl‐Mixed‐Metal Oxide

Invited for this month's cover is the group of George Huber at the University of Wisconsin‐Madison. The cover picture shows the chemical intermediates and final products for the catalytic conversion of wood into C2–C6 alcohols over a CuMgAl oxide catalyst in methanol. The Full Paper itself is a...

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Veröffentlicht in:ChemSusChem 2018-12, Vol.11 (23), p.3995-3995
Hauptverfasser: Galebach, Peter H., Thompson, Sean, Wittrig, Ashley M., Buchanan, J. Scott, Huber, George W.
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container_end_page 3995
container_issue 23
container_start_page 3995
container_title ChemSusChem
container_volume 11
creator Galebach, Peter H.
Thompson, Sean
Wittrig, Ashley M.
Buchanan, J. Scott
Huber, George W.
description Invited for this month's cover is the group of George Huber at the University of Wisconsin‐Madison. The cover picture shows the chemical intermediates and final products for the catalytic conversion of wood into C2–C6 alcohols over a CuMgAl oxide catalyst in methanol. The Full Paper itself is available at 10.1002/cssc.201801816. “This pathway is very unlike any other…” This and more about the story behind the research that inspired the Cover image is presented in the Cover Profile. Read the full text of the corresponding research at 10.1002/cssc.201801816. View the Front Cover here: 10.1002/cssc.2012694.
doi_str_mv 10.1002/cssc.201802695
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subjects Alcohols
Catalytic converters
Conversion
Methanol
Organic chemistry
Supercritical fluids
title Investigation of the Reaction Pathways of Biomass‐Derived Oxygenate Conversion into Monoalcohols in Supercritical Methanol with CuMgAl‐Mixed‐Metal Oxide
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