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Recent advances in the production of polyols from lignocellulosic biomass and biomass-derived compounds

机译:由木质纤维素生物质和生物质衍生的化合物生产多元醇的最新进展

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摘要

The conversion of renewable, non-edible and resource-abundant lignocellulose to fuels, chemicals and materials has received significant attention as it holds the possibility of using carbon neutral technologies to combat global changes. Considering the relatively high oxygen content in cellulose, it is more desirable to be transformed into oxygenated chemicals rather than hydrocarbon fuels in view of atom efficiency. Among the oxygen-rich chemicals from biomass, polyols, such as ethylene glycol and propylene glycol, are widely used in polymer synthesis, food industry and manufacturing of pharmaceuticals. Hydrolysis, coupled with hydrogenation and hydrogenolysis serves as an effective approach to transform biomass to polyols. This review summarizes the recent advances in biomass upgrading reactions for the production of polyols with a special emphasis on the formation of glycols.
机译:可再生,不可食用和资源丰富的木质纤维素向燃料,化学品和材料的转化备受关注,因为它具有使用碳中和技术应对全球变化的可能性。考虑到纤维素中相对较高的氧含量,鉴于原子效率,更希望将其转化为含氧化合物而不是烃类燃料。在来自生物质的富氧化学品中,多元醇(例如乙二醇和丙二醇)被广泛用于聚合物合成,食品工业和药物制造。水解,加氢和氢解是将生物质转化为多元醇的有效方法。这篇综述总结了用于生产多元醇的生物质提质反应的最新进展,特别强调了乙二醇的形成。

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