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Evaluating Lignin-Rich Residues from Biochemical Ethanol Production of Wheat Straw and Olive Tree Pruning by FTIR and 2D-NMR

机译:通过FTIR和2D-NMR从小麦秸秆和橄榄树修剪的生化乙醇生产中评估富含木质素的残基

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Lignin-rich residues from the cellulose-based industry are traditionally incinerated for internal energy use. The future biorefineries that convert cellulosic biomass into biofuels will generate more lignin than necessary for internal energy use, and therefore value-added products from lignin could be produced. In this context, a good understanding of lignin is necessary prior to its valorization. The present study focused on the characterization of lignin-rich residues from biochemical ethanol production, including steam explosion, saccharification, and fermentation, of wheat straw and olive tree pruning. In addition to the composition and purity, the lignin structures (S/G ratio, interunit linkages) were investigated by spectroscopy techniques such as FTIR and 2D-NMR. Together with the high lignin content, both residues contained significant amounts of carbohydrates, mainly glucose and protein. Wheat straw lignin showed a very low S/G ratio associated withp-hydroxycinnamates (p-coumarate and ferulate), whereas a strong predominance of S over G units was observed for olive tree pruning lignin. The main interunit linkages present in both lignins wereβ-O-4′ethers followed by resinols and phenylcoumarans. These structural characteristics determine the use of these lignins in respect to their valorization.
机译:传统上,将纤维素工业中富含木质素的残渣焚烧以供内部能源使用。未来的将纤维素生物质转化为生物燃料的生物精炼厂将产生更多的木质素,而不是内部能源使用所必需的,因此可以生产木质素的增值产品。在这种情况下,必须先对木质素进行很好的了解,然后再对其进行价格评估。本研究的重点是表征麦秸和橄榄树修剪过程中生化乙醇生产中富含木质素的残留物,包括蒸汽爆炸,糖化和发酵。除了组成和纯度外,还通过光谱技术(例如FTIR和2D-NMR)研究了木质素结构(S / G比,单元间键)。木质素含量高,两个残基都含有大量碳水化合物,主要是葡萄糖和蛋白质。小麦秸秆木质素显示出与对羟基肉桂酸酯(对香豆酸酯和阿魏酸酯)相关的非常低的S / G比,而在橄榄树修剪木质素中​​,S占G单位的比例明显高于S。两种木质素中存在的主要单元间键是β-O-4'醚,其次是树脂醇和苯基香豆素。这些结构特征决定了这些木质素在其增值方面的用途。

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