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Glycerol Acetals and Ketals as Bio-based Solvents: Positioning in Hansen and COSMO-RS spaces, Volatility and Stability towards Hydrolysis and Autoxidation

机译:甘油缩醛和缩酮作为生物基溶剂:在Hansen和COSMO-RS空间中的位置,挥发性和对水解和自氧化的稳定性

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摘要

Four recently launched cyclic glycerol acetals or ketals are evaluated as bio-based solvents. Three of them are industrially available and result from the condensation of glycerol with formaldehyde, acetone and isobutyl methyl ketone. The fourth is under development and is prepared by the reaction of glycerol with benzaldehyde under heterogeneous acidic catalysis. Their solvent properties are evaluated through Hansen and COSMO-RS (COnductor-like Screening MOdel for Real Solvents) approaches, in comparison to traditional petrochemical solvents. Dioxolane- and dioxane-type isomers have close solubility parameters; however the nature of the starting aldehyde/ketone significantly impacts the solvency properties. Stability to hydrolysis depends heavily on both the aldehyde/ketone part and on the size of the ring. In acidic medium, acetals are found to be more stable than ketals and glycerol-based ketals are more stable than ethylene glycol-based ketals. In the case of benzaldehyde glycerol acetal, it is shown that the 6-member ring isomer (dioxane-type) is approximately 8 times more stable than the 5-member ring counterpart (dioxolane-type) at low pH. Stability towards autoxidation by O2 is high for formaldehyde and acetone-derived acetals and drops for the other two compounds. Glycerol acetals and ketals are promising potential alternatives to some harmful solvents such as glycol ethers and aniline.
机译:四个最近推出的环状甘油缩醛或缩酮被评估为生物基溶剂。它们中的三个可在工业上获得,并且是甘油与甲醛,丙酮和异丁基甲基酮的缩合反应产生的。第四种正在开发中,是通过甘油与苯甲醛在非均相酸性催化下反应制备的。与传统的石油化学溶剂相比,通过Hansen和COSMO-RS(用于实际溶剂的类似导体的屏蔽模型)方法评估了它们的溶剂性能。二氧戊环和二氧六环类型的异构体具有相近的溶解度参数。然而,起始醛/酮的性质会显着影响溶解性。水解的稳定性在很大程度上取决于醛/酮部分和环的大小。在酸性介质中,发现缩醛比缩酮更稳定,甘油基缩酮比乙二醇基缩酮更稳定。在苯甲醛甘油缩醛的情况下,表明在低pH下6元环异构体(二恶烷型)比5元环对应物(二恶烷型)稳定约8倍。对于甲醛和丙酮衍生的乙缩醛,O2对自氧化的稳定性很高,而对于其他两种化合物,则降低。甘油缩醛和缩酮有望成为某些有害溶剂(如乙二醇醚和苯胺)的潜在替代品。

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