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Ionic liquids: Efficient solvent and medium for the transformation of renewable lignocellulose 被引量:3

Ionic liquids: Efficient solvent and medium for the transformation of renewable lignocellulose
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摘要 Carbon-enriched lignocelluloses are regarded as the perfect alternative for nonrenewable fossil fuel, and have a great potential to alleviate the increasing energy crisis and climate change. However, the tightly covalent structure and strong intra and in- ter-molecular hydrogen bonding in lignocellulose make it high recalcitrance to transformation due to the poor solubility in wa- ter or common organic solvents. Dissolution and transformation of lignocellulose and its constituents in ionic liquids have therefore attracted much attention recently due to the tunable physical-chemical properties. Here, ionic liquids with excellent dissolving capability for biomass and its ingredients were examined. The technologies for lignocellulose biorefining in the presence of ionic liquid solvents or catalysts were also summarized. Some pertinent suggestions for the future catalytic conver- sion and unitization of this sustained carbon-rich resource are proposed. Carbon-enriched lignocelluloses are regarded as the perfect alternative for nonrenewable fossil fuel, and have a great potential to alleviate the increasing energy crisis and climate change. However, the tightly covalent structure and strong intra and in- ter-molecular hydrogen bonding in lignoceUulose make it high recalcitrance to transformation due to the poor solubility in wa- ter or common organic solvents. Dissolution and transformation of lignocellulose and its constituents in ionic liquids have therefore attracted much attention recently due to the tunable physical-chemical properties. Here, ionic liquids with excellent dissolving capability for biomass and its ingredients were examined. The technologies for lignocellulose biorefining in the presence of ionic liquid solvents or catalysts were also summarized. Some pertinent suggestions for the future catalytic conver- sion and unitization of this sustained carbon-rich resource are proposed.
出处 《Science China Chemistry》 SCIE EI CAS 2012年第8期1500-1508,共9页 中国科学(化学英文版)
基金 financial support of the National Natural Science Foundation of China (20876055, 21076085) the Natural Science Foundation of Guangdong Province (S2011020001472) the Fundamental Research Funds for the Central Universities, SCUT
关键词 木质纤维素 离子液体 有机溶剂 可再生 改造 介质 物理化学性质 木素纤维素 ionic liquids, lignocellulose, dissolution, biorefinery
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