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Lignin Hydrolysis and Phosphorylation Mechanism during Phosphoric Acid–Acetone Pretreatment: A DFT Study

机译:磷酸-丙酮预处理过程中木质素的水解和磷酸化机理:DFT研究

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摘要

The study focused on the structural sensitivity of lignin during the phosphoric acid–acetone pretreatment process and the resulting hydrolysis and phosphorylation reaction mechanisms using density functional theory calculations. The chemical stabilities of the seven most common linkages (β-O-4, β-β, 4-O-5, β-1, 5-5, α-O-4, and β-5) of lignin in H3PO4, CH3COCH3, and H2O solutions were detected, which shows that α-O-4 linkage and β-O-4 linkage tend to break during the phosphoric acid–acetone pretreatment process. Then α-O-4 phosphorylation and β-O-4 phosphorylation follow a two-step reaction mechanism in the acid treatment step, respectively. However, since phosphorylation of α-O-4 is more energetically accessible than phosphorylation of β-O-4 in phosphoric acid, the phosphorylation of α-O-4 could be controllably realized under certain operational conditions, which could tune the electron and hole transfer on the right side of β-O-4 in the H2PO4 functionalized lignin. The results provide a fundamental understanding for process-controlled modification of lignin and the potential novel applications in lignin-based imprinted polymers, sensors, and molecular devices.
机译:该研究着重于木质素在磷酸-丙酮预处理过程中的结构敏感性,以及使用密度泛函理论计算得出的水解和磷酸化反应机理。木质素在H3PO4中最常见的七个键(β-O-4,β-β,4-O-5,β-1、5-5,α-O-4和β-5)的化学稳定性,检测到CH3COCH3和H2O溶液,这表明在磷酸-丙酮预处理过程中,α-O-4键和β-O-4键趋于断裂。然后,在酸处理步骤中,α-O-4磷酸化和β-O-4磷酸化分别遵循两步反应机理。但是,与磷酸中的β-O-4的磷酸化相比,α-O-4的磷酸化在能量上更容易接近,因此可以在一定的操作条件下可控地实现α-O-4的磷酸化,从而可以调节电子和空穴H2PO4 -官能化木质素中β-O-4的右侧转移。结果为木质素的工艺控制修饰和在木质素基印迹聚合物,传感器和分子装置中的潜在新应用提供了基本的了解。

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