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Towards a molecular understanding of cellulose dissolution in ionic liquids: anion/cation effect synergistic mechanism and physicochemical aspects

机译:分子对纤维素在离子液体中的溶解的理解:阴离子/阳离子效应协同机理和理化方面

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摘要

Cellulose is one of the most abundant bio-renewable materials on the earth and its conversion to biofuels provides an appealing way to satisfy the increasing global energy demand. However, before carrying out the process of enzymolysis to glucose or polysaccharides, cellulose needs to be pretreated to overcome its recalcitrance. In recent years, a variety of ionic liquids (ILs) have been found to be effective solvents for cellulose, providing a new, feasible pretreatment strategy. A lot of experimental and computational studies have been carried out to investigate the dissolution mechanism. However, many details are not fully understood, which highlights the necessity to overview the current knowledge of cellulose dissolution and identify the research trend in the future. This perspective summarizes the mechanistic studies and microscopic insights of cellulose dissolution in ILs. Recent investigations of the synergistic effect of cations/anions and the distinctive structural changes of cellulose microfibril in ILs are also reviewed. Besides, understanding the factors controlling the dissolution process, such as the structure of anions/cations, viscosity of ILs, pretreatment temperature, heating rate, etc., has been discussed from a structural and physicochemical viewpoint. At the end, the existing problems are discussed and future prospects are given. We hope this article would be helpful for deeper understanding of the cellulose dissolution process in ILs and the rational design of more efficient and recyclable ILs.
机译:纤维素是地球上最丰富的生物可再生材料之一,其转化为生物燃料提供了一种吸引人的方式,可以满足日益增长的全球能源需求。但是,在进行酶解为葡萄糖或多糖的过程之前,需要对纤维素进行预处理以克服其顽固性。近年来,已发现各种离子液体(ILs)是纤维素的有效溶剂,提供了一种新的可行的预处理策略。已经进行了许多实验和计算研究来研究溶出机理。然而,许多细节尚未完全理解,这突出了概述当前纤维素溶解知识并确定未来研究趋势的必要性。该观点总结了纤维素在IL中溶解的机理研究和微观见解。还综述了阳离子/阴离子协同作用和ILs中纤维素微纤维的独特结构变化的最新研究。此外,已经从结构和物理化学的角度讨论了理解控制溶解过程的因素,例如阴离子/阳离子的结构,IL的粘度,预处理温度,加热速率等。最后,讨论了存在的问题并给出了未来的展望。我们希望本文对深入了解IL中纤维素的溶解过程以及合理设计更高效和可回收的IL有所帮助。

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