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Comparison of lignin and cellulose solubilities in ionic liquids by COSMO-RS analysis and experimental validation.

机译:通过COSMO-RS分析和实验验证比较木质素和纤维素在离子液体中的溶解度。

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摘要

In this work, the solubilities of lignin and cellulose in ionic liquids (ILs) have been analyzed and compared by COSMO-RS simulation. The excess enthalpy of the IL+lignin/cellulose mixtures is evaluated as reference property to describe the affinity of lignin and cellulose for different ionic liquids, in terms of the intermolecular interactions contributing to their mixing properties. Thus, the anion plays the main role in the dissolution process of both lignin and cellulose, in which the hydrogen bonding forces are the major interactions. The most promising anions for the cellulose and lignin dissolution are acetate, formate and chloride, whereas different cations can be employed. Computational results indicated that a rational combination of the anions and cations allows designing ILs able to dissolve with different selectivity lignin and cellulose. Some of these solutions are tested in the laboratory to validate the model employed and the regenerated solids are analyzed by FTIR spectroscopy.
机译:在这项工作中,已通过COSMO-RS模拟分析并比较了木质素和纤维素在离子液体(ILs)中的溶解度。将IL +木质素/纤维素混合物的过量焓评估为参考性能,以描述木质素和纤维素对不同离子液体的亲和​​力,因为分子间的相互作用有助于它们的混合性能。因此,阴离子在木质素和纤维素的溶解过程中起主要作用,其中氢键合力是主要的相互作用。用于纤维素和木质素溶解的最有希望的阴离子是乙酸根,甲酸根和氯离子,而可以使用不同的阳离子。计算结果表明,阴离子和阳离子的合理组合可以设计能够以不同选择性溶解木质素和纤维素的IL。其中一些解决方案已在实验室进行了测试,以验证所使用的模型,并通过FTIR光谱分析再生的固体。

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