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首页> 外文期刊>Green chemistry >Valorization of native sugarcane bagasse lignin to bio-aromatic esters/monomers via a one pot oxidation-hydrogenation process
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Valorization of native sugarcane bagasse lignin to bio-aromatic esters/monomers via a one pot oxidation-hydrogenation process

机译:通过一种氧化氢化过程对生物芳族酯/单体的天然甘蔗Bagasse Lignin的算法

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摘要

The development of viable biorefinery routes for the valorization of lignocellulosics into usable products remains a challenge. Despite the significant progress in lignin valorization using the lignin-first approach or lignin-stabilization strategy, a number of issues still remain including poor monomer yield with grasses and the use of toxic chemicals and H-2 with high pressure. Herein, we report a highly effective oxidation-hydrogenation catalytic process for the complete depolymerization of sugarcane bagasse using Pd/C in the presence of atmospheric pressure O-2 and alcohol as a solvent. Under the optimum reaction conditions, 31.7 wt% of ferulic acid (FA) and p-coumaric acid (pCA) derived aromatic esters and 25.8 wt% of other four aromatic monomers were obtained based on the lignin content. In this one step approach, molecular O-2 adsorbed on the catalyst surface enhanced the formation of atomic hydrogen by alcohol oxidation, and hence improved the efficiency of the overall reductive depolymerization process. A linear correlation between the pCA content and its corresponding ester was obtained irrespective of the biomass source or whether the lignin is in the native or technical form. Another feature of this process is the separation of methylated mono-sugar derivatives and a cellulose-rich solid fraction that is readily fermentable. A plausible reaction mechanism was hypothesized which indicates that the carbon defect on the surface and the enhanced oxygen content are strongly correlated with the high activity of the Pd/C catalyst.
机译:可行的生物骨质术路线的发展,使木质纤维素瓣成可用产品仍然是一项挑战。尽管使用木质素 - 首发方法或木质素稳定策略在木质素算入中取得了重大进展,但仍然存在许多问题,包括具有草的差的单体产量,以及具有高压的毒性化学品和H-2。在此,我们在大气压O-2和醇作为溶剂的情况下,在存在大气压O-2和醇的情况下,通过PD / C进行高效的氧化 - 氢化催化方法。在最佳反应条件下,基于木质素含量,获得31.7wt%的阿魏酸(Fa)和P-Co-香豆酸(PCA)衍生的芳族酯和25.8wt%的其他四种芳族单体。在该步骤方法中,吸附在催化剂表面上的分子O-2通过醇氧化增强了原子氢的形成,因此提高了总还原剂解聚过程的效率。无论生物质源还是木质素是原生物或技术形式的,获得PCA含量与其相应酯之间的线性相关性。该方法的另一个特征是分离甲基化的单糖衍生物和富含纤维素的固体级分,其易于发酵。假设一种可粘性的反应机理,表明表面上的碳缺陷和增强的氧含量与PD / C催化剂的高活性强烈相关。

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