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Valorization of wood biomass-lignin via selective bond scission: A minireview

机译:木材生物量 - 木质素的算命通过选择性债券公开:MINIREVIEW

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摘要

Non-food biomass are examined for the production of fuel and chemicals, since petroleum is becoming less accessible. Among wood biomasses, the most underutilized component-lignin with highly crosslinked and randomly polymerized aromatic ether units becomes robust and recalcitrant to current chemical processing. Increased attentions to develop catalytic methods for lignin depolymerization are observed recently, as lignin can be the largest natural source of aromatics. The existing technologies of drastic reaction conditions do nonselective random bond cleavage yielding large variety of small molecules with less yields. Recently, selective bond scission (C-C or C-O) via catalytic thermal and photochemical routes have been discovered which include hydrogenolysis by transition metal complexes, metals on different supports, bimetallic catalysts with synergistic effect; bond activation with photoredox catalysts, etc. This mini review discusses recent progress in selective bond scission techniques with homogeneous and heterogeneous catalytic systems for the final goal of lignin valorization to value-added products.
机译:由于石油变得越来越不可接近,检查了燃料和化学品的生产中的非食物生物量。在木材生物质中,具有高度交联和随机聚合的芳族醚单元的最低化的组分 - 木质素变得坚固且顽固地对当前的化学加工。最近观察到增加对木质素解聚的催化方法的引入增加,因为木质素可以是最大的芳烃来源。剧烈反应条件的现有技术进行非选择性随机键切割,产生大量少量产率。最近,已经发现了通过催化热和光化学途径的选择性粘合(C-C或C-O),其包括通过过渡金属配合物,不同载体上的金属氢解,具有协同效应的双金属催化剂;粘附激活光致毒剂催化剂等。该迷你评论讨论了最近具有均匀和异质催化系统的选择性粘合技术的进展,用于降增值的木质素载体的最终目标。

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