Selectivity Control during the Single-Step Conversion of Aliphatic Carboxylic Acids to Linear Olefins
Version
Published
Date Issued
2018
Author(s)
Yeap, Jher Hau
Héroguel, Florent
Rozmysłowicz, Bartosz
Luterbacher, Jeremy S.
Type
Article
Language
English
Abstract
We have studied the single-step catalytic conversion of biomass-derived aliphatic carboxylic acids to linear olefins via tandem hydrogenation/dehydration reactions. Hexanoic acid was converted to a mixture of hexenes (92.0% selectivity) over silica–alumina supported Cu nanoparticles. Remarkably, we observed a rapid selectivity switch to 99.8% hexane once carboxylic acids were fully consumed, with similar results using butanoic acid derived from biomass using consolidated bioprocessing. Based on intermediate, desorption, and in situ spectroscopy studies, we propose that the presence of a small amount of carboxylic acid on the catalyst surface leads to a dramatic decrease in overhydrogenation of olefins.
Publisher DOI
Journal
ACS Catalysis
ISSN
2155-5435
Publisher URL
Volume
8
Issue
11
Publisher
ACS
Submitter
ZimmerD
Citation apa
Yeap, J. H., Héroguel, F., Shahab, R., Rozmysłowicz, B., Studer, M. H.-P., & Luterbacher, J. S. (2018). Selectivity Control during the Single-Step Conversion of Aliphatic Carboxylic Acids to Linear Olefins. In ACS Catalysis (Vol. 8, Issue 11). ACS. https://arbor.bfh.ch/handle/arbor/40154
