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首页> 外文期刊>Biofuels, bioproducts & biorefining: Biofpr >Organosolv fractionating pre-treatment of lignocellulosic biomass for efficient enzymatic saccharification: chemistry, kinetics, and substrate structures
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Organosolv fractionating pre-treatment of lignocellulosic biomass for efficient enzymatic saccharification: chemistry, kinetics, and substrate structures

机译:有机溶胶分馏木质纤维素生物质的预处理,用于高效酶糖化:化学,动力学和衬底结构

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摘要

Pre-treatment to increase cellulose enzymatic hydrolyzability is a prerequisite step for bioconversion of lignocellulosic biomass. The final objective of pre-treatment is to increase cellulose accessibility to cellulase enzymes, which can be done by either removing hemicelluloses or delignification or modifying lignin structure. Organosolv fractionating pre-treatment (OFP) achieves a fractionation of biomass in a one-pot process with greatly increased cellulose digestibility. In this review, the research progress in recent years on the acid and alkali-catalyzed OFP processes has been discussed, in terms of the process modes, chemistry, pre-treatment kinetics as well as substrate structures. It is concluded that OFP not only improves cellulose digestibility but also shows great promise as an entry to biomass biorefining for co-producing various chemicals and fuels; however, the economic feasibility of the OFP process has to be improved by reducing the energy consumption for solvent recovery and developing more products with higher added values. Finally, the challenge and perspective of OFP are further discussed. (C) 2017 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:预处理以增加纤维素酶水解性是木质纤维素生物质生物转化的前提步骤。预处理的最终目标是增加对纤维素酶的纤维素酶可用性,其可以通过除去半纤维素或脱氨酸或改性木质素结构来完成。有机溶胶分馏预处理(OFP)在一个盆栽过程中实现了生物质的分馏,具有大大增加的纤维素消化率。在本文中,已经讨论了近年来对酸和碱催化的OFP工艺的研究进展,就在工艺模式,化学,预处理动力学以及衬底结构方面已经讨论过酸和碱催化的OFP工艺。结论是,OFP不仅改善了纤维素消化率,而且表现出很好的希望作为对生物量生物制造各种化学品和燃料的生物量生物的进入;然而,通过降低溶剂恢复的能量消耗并开发具有更高附加值的产品的能耗,必须改善OFP过程的经济可行性。最后,进一步讨论了OFP的挑战和视角。 (c)2017化学工业协会和约翰瓦利和儿子有限公司

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