Copper catalyzed alkaline aerobic lignin depolymerization: effect of botanical origin and industrial extraction process on reactivity supported through characterization†

Antonio Hernández-Mañas, Alex Martínez-Martin, Johan Madignier, Pascal Fongarland, Frédérique Bertaud, Léa Vilcocq and Laurent Djakovitch
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Abstract

Different lignins, differing in their botanical origin or the extraction method, were subjected to aerobic catalytic depolymerisation in basic aqueous media using a copper-based catalyst (CuO/TiO2) towards aromatic compounds. Lignins were obtained from different kinds of biomass, including hardwood, softwood and wheat straw, and using different extraction methods such as kraft, soda or organosolv. Extensive characterization (elemental analysis; 1H, 13C, 31P and HSQC NMR; FTIR-ATR; DLS and SEC) revealed structural differences between lignin samples. For example, organosolv softwood lignin shows a higher degree of β-O-4 linkages, while organosolv wheat straw lignin presents higher structural degradation. These changes resulted in differences during the catalytic aerobic depolymerisation. The structural properties were correlated with the reaction results. Thus, the average molecular weight is directly related to the observed degree of conversion, and the β-O-4 content is correlated with the yields of aromatic compounds obtained. It was also observed that the catalytic effect of the CuO/TiO2 catalyst is more pronounced when the non-catalytic reaction shows low yields of aromatics. Finally, despite higher reactivity, hardwood lignin did not produce high yields of aromatic compounds due to the rapid degradation of the products.

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Abstract Image

铜催化碱性有氧木质素解聚:植物来源和工业提取工艺对反应性的影响(通过表征得到支持
在碱性水介质中,使用铜基催化剂(CuO/TiO2)对芳香族化合物进行有氧催化解聚,不同木质素的植物来源或提取方法各不相同。木质素来自不同种类的生物质,包括硬木、软木和小麦秸秆,并采用了不同的提取方法,如牛皮纸法、苏打法或有机溶剂法。广泛的表征(元素分析;1H、13C、31P 和 HSQC NMR;FTIR-ATR;DLS 和 SEC)揭示了木质素样品之间的结构差异。例如,有机溶胶软木木质素的 β-O-4 连接程度更高,而有机溶胶小麦秸秆木质素的结构降解程度更高。这些变化导致了催化有氧解聚过程中的差异。结构特性与反应结果相关。因此,平均分子量与观察到的转化程度直接相关,β-O-4 的含量与获得的芳香族化合物的产量相关。还观察到,当非催化反应中芳烃产率较低时,CuO/TiO2 催化剂的催化作用更为明显。最后,尽管硬木木质素具有较高的反应活性,但由于其产物降解速度较快,因此并没有产生高产率的芳香族化合物。
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