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  5. Upgrading Lignocellulosic Products to Drop‐In Biofuels via Dehydrogenative Cross‐Coupling and Hydrodeoxygenation Sequence

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Article
en
2015

Upgrading Lignocellulosic Products to Drop‐In Biofuels via Dehydrogenative Cross‐Coupling and Hydrodeoxygenation Sequence

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en
2015
Vol 8 (16)
Vol. 8
DOI: 10.1002/cssc.201500754

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Dean Toste
Dean Toste

University of California, Berkeley

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Sanil Sreekumar
Madhesan Balakrishnan
Konstantinos A. Goulas
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Abstract

Abstract Life‐cycle analysis (LCA) allows the scientific community to identify the sources of greenhouse gas (GHG) emissions of novel routes to produce renewable fuels. Herein, we integrate LCA into our investigations of a new route to produce drop‐in diesel/jet fuel by combining furfural, obtained from the catalytic dehydration of lignocellulosic pentose sugars, with alcohols that can be derived from a variety of bio‐ or petroleum‐based feedstocks. As a key innovation, we developed recyclable transition‐metal‐free hydrotalcite catalysts to promote the dehydrogenative cross‐coupling reaction of furfural and alcohols to give high molecular weight adducts via a transfer hydrogenation–aldol condensation pathway. Subsequent hydrodeoxygenation of adducts over Pt/NbOPO 4 yields alkanes. Implemented in a Brazilian sugarcane biorefinery such a process could result in a 53–79 % reduction in life‐cycle GHG emissions relative to conventional petroleum fuels and provide a sustainable source of low carbon diesel/jet fuel.

How to cite this publication

Sanil Sreekumar, Madhesan Balakrishnan, Konstantinos A. Goulas, Görkem Günbaş, Amit A. Gokhale, Lin Louie, Adam Grippo, Corinne D. Scown, Alexis Bell, Dean Toste (2015). Upgrading Lignocellulosic Products to Drop‐In Biofuels via Dehydrogenative Cross‐Coupling and Hydrodeoxygenation Sequence. , 8(16), DOI: https://doi.org/10.1002/cssc.201500754.

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Publication Details

Type

Article

Year

2015

Authors

10

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/cssc.201500754

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