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Recent Advances in Catalytic Conversion of Ethanol to Chemicals

ACS Catalysis · 2014 · Vol. 4(4) · pp. 1078–1090
Junming SunYong Wang

Abstract

With increased availability and decreased cost, ethanol is potentially a promising platform molecule for the production of a variety of value-added chemicals. In this review, we provide a detailed summary of recent advances in catalytic conversion of ethanol to a wide range of chemicals and fuels. We particularly focus on catalyst advances and fundamental understanding of reaction mechanisms involved in ethanol steam reforming (ESR) to produce hydrogen, ethanol conversion to hydrocarbons ranging from light olefins to longer chain alkenes/alkanes and aromatics, and ethanol conversion to other oxygenates including 1-butanol, acetaldehyde, acetone, diethyl ether, and ethyl acetate.

Catalysts for Methane ReformingCatalysis for Biomass ConversionCatalysis and Hydrodesulfurization StudiesOxygenateAcetaldehydeChemistryEthanolCatalysisAcetoneOrganic chemistryEthyl acetateDiethyl etherEthyl lactate

Funding

  • U.S. Department of Energy
  • Fuel Cells and Hydrogen Joint Undertaking
Citations
663
FWCI
19.36
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References
142
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