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Gold-catalyzed conversion of lignin to low molecular weight aromatics

机译:金催化木质素转化为低分子量芳烃

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摘要

A heterogeneous catalyst system, employing Au nanoparticles (NPs) and Li–Al (1 : 2) layered double hydroxide (LDH) as support, showed excellent activity in aerobic oxidation of the benzylic alcohol group in β-O-4 linked lignin model dimers to the corresponding carbonyl products using molecular oxygen under atmospheric pressure. The synergistic effect between Au NPs and the basic Li–Al LDH support induces further reaction of the oxidized model compounds, facilitating facile cleavage of the β-O-4 linkage. Extension to oxidation of γ-valerolactone (GVL) extracted lignin and kraft lignin using Au/Li–Al LDH under similar conditions produced a range of aromatic monomers in high yield. Hydrolysis of the Au/Li–Al LDH oxidized lignin was found to increase the degree of lignin depolymerization, with monomer yields reaching 40% for GVL extracted lignin. Based on these results, the Au/Li–Al LDH + O2 catalyst system shows potential to be an environmentally friendly means of depolymerizing lignin to low molecular weight aromatics under mild conditions.
机译:一种采用金纳米颗粒(NPs)和Li-Al(1:2)层状双氢氧化物(LDH)作为载体的非均相催化剂体系,在有氧氧化β-O-4连接的木质素模型二聚体中的苄醇基团方面显示出出色的活性。在大气压下使用分子氧将其生成相应的羰基产物。 Au NPs和基本的Li–Al LDH载体之间的协同作用诱导了氧化的模型化合物的进一步反应,从而促进了β-O-4键的容易裂解。在相似的条件下,使用Au / Li–Al LDH将γ-戊内酯(GVL)提取的木质素和牛皮纸木质素的氧化作用扩展,产生了一系列芳族单体,收率很高。发现水解Au / Li-Al LDH氧化的木质素会增加木质素的解聚度,而GVL提取的木质素的单体收率达到40%。根据这些结果,Au / Li–Al LDH + O2催化剂体系显示出在温和条件下将木质素解聚为低分子量芳烃的环保手段。

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