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Lignin valorization and cleavage of arylether bonds in chemical processing of wood: a mini-review

机译:木质素木材载玻片载玻片和裂解木材中的化学加工:迷你评论

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Lignin valorization is strongly dependent on a right strategy for converting lignin into value-added products. Conversion of lignin into monomeric degradation products is one of the important avenues. In this study, chemical mechanisms and monomeric product compositions in hydrolysis (acidic and alkaline), hydrogenolysis, catalytic oxidation, electrochemical oxidation and reduction, photochemical and enzymatic degradation of native and technical lignins, and lignin model compounds are comparatively analyzed. The effect of the structure of a phenylpropane unit in lignin on the chemical reactivity of alpha-O-4 and beta-O-4 bonds in cleavage reactions is also described. Published experimental data suggest some form of activation to be a necessary prerequisite for the splitting of a beta-O-4 bond in all chemical reactions under consideration, the nature of which is dependent on the reagents and reaction conditions. Thus, in catalytic oxidation processes, a benzyl hydroxyl group is converted into carbonyl group at the first stage. Chemical transformation involving the alpha-position in a phenylpropane unit is a usual trigger of further lignin depolymerization. The yield of monomeric products of hydrogenolysis of native lignin is close to the theoretical one, reaching 23% in softwood and 51% in hardwood; in alkaline hydrolysis as well as oxygen and nitrobenzene oxidation of native lignin, the trend is the same that is explained in this study. On the other hand, the yield of monomeric products from isolated samples and technical lignins is much lower. A loss of arylether bonds in the process of lignin separation from wood and in wood pulping explains this difference.
机译:木质素贪得无类主义强烈依赖于将木质素转化为增值产品的正确策略。木质素转化为单体降解产物是重要的途径之一。在该研究中,水解(酸性和碱性)的化学机制和单体产物组合物,氢解,催化氧化,电化学氧化和天然和技术木质素的微生物和酶促降解,以及木质素模型化合物进行了相互分析。还描述了苯基丙烷单元在木质素中对α-O-4和β-O-4粘合反应中β-O-4键的化学反应性的影响。已发表的实验数据表明某种形式的激活是在考虑所有化学反应中分裂β-O-4键的必要先决条件,其性质取决于试剂和反应条件。因此,在催化氧化方法中,将苄基羟基转化为第一阶段的羰基。涉及苯丙烷单元中的α-位置的化学转化是常规触发进一步的木质素解聚。天然木质素的氢解的单体产物的产量接近理论上,软木达到23%,硬木51%;在碱性水解以及天然木质素的氧气和硝基苯氧化中,该研究中解释的趋势是相同的。另一方面,来自分离的样品和技术木质素的单体产物的产量远低得多。在木质和木材制浆中的木质素分离过程中丧失芳基键解释了这种差异。

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