Ethanol: A Promising Green Solvent for the Deconstruction of Lignocellulose

Growing energy demand, environmental impact, energy security issues, and rural economic development have encouraged the development of sustainable renewable fuels. Nonfood lignocellulosic biomass is a suitable source for sustainable energy because the biomass feedstocks are low cost, abundant, and c...

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Veröffentlicht in:ChemSusChem 2018-10, Vol.11 (20), p.3559-3575
Hauptverfasser: Tekin, Kubilay, Hao, Naijia, Karagoz, Selhan, Ragauskas, Arthur J.
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Sprache:eng
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Zusammenfassung:Growing energy demand, environmental impact, energy security issues, and rural economic development have encouraged the development of sustainable renewable fuels. Nonfood lignocellulosic biomass is a suitable source for sustainable energy because the biomass feedstocks are low cost, abundant, and carbon neutral. Recent thermochemical conversion studies are frequently directed at converting biomass into high‐quality liquid fuel precursors or chemicals in a single step. Supercritical ethanol has been selected as a promising solvent medium to deconstruct lignocellulosic biomass because ethanol has extraordinary solubility towards lignocellulosic biomass and can be resourced from cellulosic ethanol facilities. This review provides a critical insight into both catalytic and noncatalytic strategies of lignocellulose deconstruction. In this context, the supercritical ethanol deconstruction pathways are thoroughly reviewed; GC‐MS, 1D and 2D NMR spectroscopy, and elemental analysis strategies towards liquid biomass deconstruction products are also critically presented. This review aims to provide readers a broad and accurate roadmap of novel biomass to biofuel conversion techniques. Green roadmap: Ethanol is a green solvent suitable for lignocellulose deconstruction. To provide a broad and accurate roadmap of biomass to biofuel conversion techniques, lignocellulose conversion into liquid biorenewable precursors with ethanol as the reaction solvent is reviewed.
ISSN:1864-5631
1864-564X
DOI:10.1002/cssc.201801291