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High value-added monomer chemicals and functional bio-based materials derived from polymeric components of lignocellulose by organosolv fractionation

机译:通过有机溶胶分级,高附加值的单体化学品和衍生自木质纤维素聚合物组分的功能性生物基材料

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Organosolv fractionation (OF) is a promising method for lignocellulosic biomass biorefining to produce biofuels, biochemicals, and biomaterials. The fractionated polymeric components may be good feedstocks to produce bio-based materials such as green polymers via chemical or biological conversion. However, related work to specify the bio-based materials production via organosolv fractionation of lignocellulosic biomass is relatively scarce. In this work we have provided a comprehensive review of typical organosolv fractionation for isolating cellulose, hemicelluloses, and lignin, as well as the high value-added monomer chemicals and functional materials derived from the fractionated components and their potential applications developed in recent years, primarily including the modified cellulose fibers for polymer materials, cellulose nanocrystals (CNCs), polysaccharide-derived platform precursors for synthesis of bio-based polymers, lignin-derived dispersants, surfactants, carbon materials, and hemicellulose-derived functional materials, etc. This work suggests that organosolv fractionation of lignocellulosic biomass could be a good entry to biomass refinery for high value-added and functional materials production. However, there are still many challenges that should be overcome in terms of the fundamental, technical, and economic aspects for the organosolv fractionation process, formation of precursor compounds, synthesis of the bio-based materials, design of product properties and functions, and the integration of the entire process. (C) 2019 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:有机溶液分馏(OF)是木质纤维素生物质生物量生物素,以产生生物燃料,生物化学料和生物材料的有希望的方法。分离的聚合物组分可以是良好的原料,以通过化学或生物转化产生生物基材料,例如绿色聚合物。然而,通过木质纤维素生物质的有机溶胶水分分馏来指定生物基材料的相关工作相对稀缺。在这项工作中,我们为分离纤维素,半纤维素和木质素的典型有机溶液分馏进行了全面的审查,以及近年来衍生自分馏组分的高附加值单体化学品和功能性材料,主要是包括用于聚合物材料的改性纤维素纤维,纤维素纳米晶体(CNC),用于合成生物基聚合物,木质素衍生的分散剂,表面活性剂,碳材料和半纤维素衍生的功能材料等的多糖衍生的平台前体。这项工作表明木质纤维素生物量的细胞溶胶水分离可以是对生物量炼油厂的良好进入,用于高增值和功能材料生产。然而,在有机溶胶分馏过程的基本,技术和经济方面,对前体化合物形成的基础,技术和经济方面来说,仍有许多挑战,应该克服,前体化合物,生物基材料的合成,产品性能和功能的设计,以及整合整个过程。 (c)2019年化学工业协会和约翰瓦里和儿子有限公司

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