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首页> 外文期刊>Chemical science >Establishing lignin structure-upgradeability relationships using quantitative 1H–13C heteronuclear single quantum coherence nuclear magnetic resonance (HSQC-NMR) spectroscopy
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Establishing lignin structure-upgradeability relationships using quantitative 1H–13C heteronuclear single quantum coherence nuclear magnetic resonance (HSQC-NMR) spectroscopy

机译:使用定量1H–13C异核单量子相干核磁共振(HSQC-NMR)光谱学建立木质素结构与可升级性的关系

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Lignin depolymerization could provide an attractive renewable aromatic feedstock for the chemical industry. Past studies have suggested that lignin structural features such as ether content are correlated to lignin's upgradeability. An obstacle to the development of a conclusive causal relationship between lignin structure and upgradeability has been the difficulty to quantitatively measure lignin structural features. Here, we demonstrated that a modified HSQC-NMR method known as HSQC _(0) can accurately quantify lignin functionalities in extracted lignin using several synthetic polymer models. We then prepared a range of isolated lignin samples with a wide range of ether contents (6–46%). By using a simple ether cleavage model, we were able to predict final depolymerization yields very accurately (<4% error), conclusively demonstrating the direct causal relationship between ether content and lignin activity. The accuracy of this model suggests that, unlike in native lignin, ether linkages no longer appear to be randomly distributed in isolated lignin.
机译:木质素解聚可以为化学工业提供有吸引力的可再生芳族原料。过去的研究表明,木质素的结构特征(如醚含量)与木质素的可升级性有关。木质素结构和可升级性之间因果关系发展的障碍是难以定量测量木质素结构特征。在这里,我们证明了改进的HSQC-NMR方法HSQC _(0)可以使用几种合成聚合物模型准确地定量提取的木质素中的木质素功能。然后,我们准备了一系列分离的木质素样品,其中的醚含量范围很广(6-46%)。通过使用简单的醚裂解模型,我们能够非常准确地预测最终的解聚收率(误差<4%),最终证明了醚含量与木质素活性之间的直接因果关系。该模型的准确性表明,与天然木质素不同,醚键似乎不再随机分布在分离的木质素中。

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