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An “ideal lignin” facilitates full biomass utilization

机译:“理想的木质素”有助于充分利用生物质

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Lignin, a major component of lignocellulosic biomass, is crucial to plant growth and development but is a major impediment to efficient biomass utilization in various processes. Valorizing lignin is increasingly realized as being essential. However, rapid condensation of lignin during acidic extraction leads to the formation of recalcitrant condensed units that, along with similar units and structural heterogeneity in native lignin, drastically limits product yield and selectivity. Catechyl lignin (C-lignin), which is essentially a benzodioxane homopolymer without condensed units, might represent an ideal lignin for valorization, as it circumvents these issues. We discovered that C-lignin is highly acid-resistant. Hydrogenolysis of C-lignin resulted in the cleavage of all benzodioxane structures to produce catechyl-type monomers in near-quantitative yield with a selectivity of 90% to a single monomer.
机译:木质素是木质纤维素生物质的主要组成部分,对植物的生长和发育至关重要,但在各种过程中却是有效利用生物质的主要障碍。越来越多地意识到使木质素增值变得至关重要。然而,在酸性萃取过程中木质素的快速缩合导致形成顽固的缩合单元,再加上天然木质素中的相似单元和结构异质性,极大地限制了产物的产率和选择性。儿茶素木质素(C-木质素)本质上是不带缩合单元的苯并二恶烷均聚物,可能代表了理想的木质素增值产品,因为它规避了这些问题。我们发现C-木质素高度耐酸。 C-木质素的氢解导致所有苯并二恶烷结构的裂解,以接近定量的产率产生对炔基型单体,对单一单体的选择性为90%。

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