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Toward mild synthesis of functional chemicals from lignin-derived phenolics via emerging catalytic technology

机译:通过新兴催化技术实现木质素衍生酚类物质功能化学品的温和合成

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Efficient translation of renewable biomass into fine commodity chemicals and fuel is vital for a more sustainable economy and carbon-neutral society. Phenolics represent one of the most important intermediates in the transformation of lignin into bio-based bulk chemicals. Currently, (partial) hydrodeoxygenation is a promising strategy for upgrading phenolics to value-added products. Never-theless, conventionally thermo-catalytic hydrodeoxygenation is generally accompanied by high reaction temperatures and external hydrogen supply, which to some extent leads to costly expenditure and operational complexity. In this paper, we focus on the recent ad-vances in the synthesis of industrially relevant bulk chemicals from lignin-derived phenolics via three novel technologies of electrocata-lytic hydrogenation, non-thermal plasma-assisted catalysis, and photocatalytic hydrogenation. Meanwhile, the reaction condition adopted, physicochemical properties, and reaction mechanisms of employed catalytic systems are presented and discussed. Last, some personal perspectives on the existing challenges and future research directions in this promising area are highlighted.
机译:将可再生生物质有效地转化为精细商品化学品和燃料对于更可持续的经济和碳中和社会至关重要。酚类化合物是木质素转化为生物基大宗化学品的最重要中间体之一。目前,(部分)加氢脱氧是将酚类物质升级为增值产品的一种有前途的策略。然而,传统的热催化加氢脱氧通常伴随着高反应温度和外部氢气供应,这在一定程度上导致了昂贵的支出和操作复杂性。本文重点介绍了近年来通过电催化裂解加氢、非热等离子体辅助催化和光催化加氢三种新技术从木质素衍生酚类合成工业相关大宗化学品的进展。同时,对所采用的催化体系的反应条件、理化性质和反应机理进行了介绍和讨论。最后,重点介绍了个人对这一前景广阔的领域所面临的挑战和未来研究方向的看法。

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