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Catalytic depolymerisation of isolated lignins to fine chemicals using a Pt/alumina catalyst: part 1-impact of the lignin structure

机译:使用Pt /氧化铝催化剂将孤立的木质素催化解聚为精细化学品:木质素结构的第1部分影响

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Four lignin preparations with different contents of alkyl-aryl ether bonds were depolymerised using an alumina supported platinum catalyst. The results showed that the proportion of beta-O-4 linkages is the crucial factor for both the yield and the nature of the monomeric products. Highly condensed lignin generated mainly non-alkylated phenolic products while uncondensed lignin generated mainly phenolic products retaining the 3-carbon side-chain. These phenolic products with the 3-carbon chain still attached were considerably less abundant than the maximum potential yield calculated from selective cleavage of alkyl-aryl ether bonds by thioacidolysis, demonstrating that the scope for improved yield remains. Although the catalytic conversion yield rose with an increasing content of labile ether linkages in the lignin structure, optimisation of the catalytic depolymerisation was increasingly required to minimize side reactions. Gel permeation chromatography showed that the products converged towards the same molecular weight distribution regardless of the starting material. The full potential of the highly uncondensed lignin was reached only after the minimisation of condensation reactions during the catalytic conversion.
机译:使用氧化铝负载的铂催化剂使四种具有不同烷基-芳基醚键含量的木质素制剂解聚。结果表明,β-O-4键的比例是影响单体产物收率和性质的关键因素。高度缩合的木质素主要产生未烷基化的酚类产物,而未缩合的木质素主要产生保留3-碳侧链的酚类产物。这些仍带有3-碳链的酚类产物比通过硫代酸解作用选择性裂解烷基-芳基醚键所计算出的最大潜在产率要低得多,这表明仍存在提高产率的范围。尽管随着木质素结构中不稳定醚键含量的增加,催化转化率也随之提高,但为了使副反应最小化,越来越需要优化催化解聚反应。凝胶渗透色谱法表明,不管起始原料如何,产物都收敛于相同的分子量分布。仅在催化转化过程中缩合反应最小化之后,才能达到高度未缩合的木质素的全部潜力。

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