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On the mechanism of the unwanted acetylation of polysaccharides by 1,3-dialkylimidazolium acetate ionic liquids: part 2-the impact of lignin on the kinetics of cellulose acetylation

机译:用1,3-二烷基咪唑乙酸钙离子液体的不希望的乙酰乙酰化机理:第2部分 - 木质素对纤维素乙酰化动力学的影响

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摘要

Cellulose acetylation has been reported as a side reaction of cellulose treatment with the ionic liquid 1-ethyl-3-methylimidazolium acetate ([EMIm][OAc]) (Karatzos et al. in Cellulose 19:307-312, 2012) and other 1,3-dialkylimidazolium acetate ionic liquids. 1-Acetylimidazole (AcIm), an [EMIm][OAc] impurity, has been found to be the actual acetylating agent (Zweckmair et al. in Cellulose 22:3583-3596, 2015), and the degree of acetylation was relatively low, below a DS of approx. 0.1%. Higher degrees of cellulose acetylation (DS > 10%) have been observed when the entire wood was mixed with [EMIm][OAc] instead of cellulosic pulp only (Abushammala et al. in Carbohydr Polym 134:609-616, 2015). In this paper, we explore the impact of wood constituents, mainly lignin, on cellulose acetylation using AcIm. The results demonstrate that lignin itself can be readily acetylated upon mixing with AcIm, and-noteworthy-that lignin presence significantly accelerates cellulose acetylation. The initial rate of cellulose acetylation by AcIm increased from 1.8 to 4.7%/h when only 1% of lignin, based on cellulose mass, was added. A mechanistic study employing cellulose and lignin model compounds showed lignin to be more susceptible to acetylation than cellulose and to act as an intermediate acetyl group source for further cellulose acetylation in a catalytic scenario.
机译:已经报道纤维素乙酰化作为纤维素处理与离子液体1-乙基-3-甲基咪唑鎓乙酸钡(Karatzos等人)的副反应(Karatzos等人。在纤维素19:307-312,2012)和其他1 ,3-二烷基咪唑醋酸铵离子液体。已经发现1-乙酰咪唑(ACIM),[eAM] [OAC]杂质是实际的乙酰化剂(Zweckmair等人。在纤维素22:3583-3596,2015)中,乙酰化程度相对较低,低于DS大约。 0.1%。当整个木材与[emim] [OAC]混合而不是纤维素纸浆时,已经观察到较高的纤维素乙酰化(DS> 10%)(Abushammala等人。在本文中,我们探讨了木材成分,主要是木质素的影响,acim纤维素乙酰化。结果表明,在用acim混合时可以容易地致乙酰化,并且值得注意的是,木质素存在显着加速纤维素乙酰化。加入乙酰乙酰化的初始速率从基于纤维素质量的仅1%的木质素增加1.8%至4.7%/ h。采用纤维素和木质素模型化合物的机械研究显示木质素比纤维素更容易敏感,并且用作催化方案中进一步纤维素乙酰化的中间乙酰基源。

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