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首页> 外文期刊>Angewandte Chemie >Protection Group Effects During alpha,gamma-Diol Lignin Stabilization Promote High-Selectivity Monomer Production
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Protection Group Effects During alpha,gamma-Diol Lignin Stabilization Promote High-Selectivity Monomer Production

机译:保护群效应在α,γ-二醇木质素稳定化促进高选择性单体生产

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摘要

Protection groups were introduced during biomass pretreatment to stabilize lignin's ,-diol group during its extraction and prevent its condensation. Acetaldehyde and propionaldehyde stabilized the ,-diol without any aromatic ring alkylation, which significantly increased final product selectivity. The subsequent hydrogenolysis catalyzed by Pd/C generated lignin monomers at near-theoretical yields based on Klason lignin (48% from birch, 20% from spruce, 70% from high-syringyl transgenic poplar), and with high selectivity to a single 4-n-propanolsyringol product (80%) in the case of the poplar. Unlike direct hydrogenation of native wood, hydrogenolysis of protected lignin with Ni/C also led to high selectivity to this single product (78%), paving the way to high-selectivity lignin upgrading with base metal catalysts. The use of extracted lignin facilitated valorization of polysaccharides, leading to high yields of all three major biomass polymers to a single major product.
机译:在生物质预处理期间引入了保护基团以在提取过程中稳定木质素的 - 二醇组,并防止其冷凝。 乙醛和丙醛稳定,无需任何芳环烷基化的 - 二醇,这显着增加了最终产品选择性。 在基于Klason Lignin的近乎理论产率的Pd / C产生的木质素单体催化的后续氢解(从桦树48%,来自云杉,70%来自高铁肾上腺素转基因杨树70%),选择性高4- 在杨树的情况下,N-Pharanolsyringol产品(80%)。 与天然木材的直接氢化不同,用Ni / C的受保护木质素的氢解也导致对该单一产品的选择性高(78%),铺平了用贱金属催化剂的高选择性木质素升级。 使用提取的木质素促进多糖的储度,导致所有三种主要生物质聚合物的高产率为单个主要产物。

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