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首页> 外文期刊>Journal of Molecular Liquids >Extraction of ethanol from mixtures with n-hexane by deep eutectic solvents of choline chloride plus levulinic acid, plus ethylene glycol, or plus malonic acid
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Extraction of ethanol from mixtures with n-hexane by deep eutectic solvents of choline chloride plus levulinic acid, plus ethylene glycol, or plus malonic acid

机译:用氯化胆碱加乙酰乙二醇的深共晶溶剂从N-己烷中萃取乙醇。

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The separation of azeotropic mixtures is a great challenge for concentrating a desired chemical compound because it cannot be attained by a simple distillation process. Liquid-liquid extraction can be an alternative process to resolve the separation problem if an appropriate solvent is selected to effectively partition the mixture. In this work, the feasibilities of three different deep eutectic solvents (DESs) for breaking azeotropes of n-hexane and ethanol mixture were examined by means of liquid-liquid extraction. Choline chloride (ChCI) was chosen as a base compound and three hydrogen bond donors (HBDs) of levulinic acid, ethylene glycol, and malonic acid were added at their eutectic ratio to form DESs. Liquid-liquid equilibrium experiments for an azeotropic n-hexane + ethanol system were carried out to determine binodal compositions and, then, evaluate the compositions at both liquid phases at 298.2 K and atmospheric pressure by employing the prepared DESs. Refractive index, density, and viscosity at the binodal compositions were measured to provide properties required for extraction process establishment. The measured tie-lines were compared with the predicted results calculated by COSMO-SAC model. Moreover, the ability for extracting ethanol was evaluated with distribution coefficient and selectivity. It was found that the distribution coefficient and selectivity values are high enough to support a scaling-up process by a liquid-liquid extraction. (C) 2020 Elsevier B.V. All rights reserved.
机译:共沸混合物的分离是浓缩所需的化合物的巨大挑战,因为它不能通过简单的蒸馏过程获得。如果选择合适的溶剂以有效地分配混合物,则液体液萃取可以是分解分离问题的替代方法。在这项工作中,通过液液萃取检查三种不同深共晶溶剂(Dess)用于破坏正己烷和乙醇混合物的共沸物的可行性。选择胆碱(CHCI)作为碱化合物,并以乙酰丙二醇,乙二醇和丙二酸的三种氢键供体(HBD)加入其共晶比以形成DES。进行了共沸的正己烷+乙醇体系的液液平衡实验,以确定二十进醛组合物,然后,通过采用制备的DES来评价298.2K和大气压的两种液相中的组合物。测量二孔组合物的折射率,密度和粘度以提供提取工艺建立所需的性能。将测量的系数与由COSMO-SAC模型计算的预测结果进行比较。此外,用分配系数和选择性评价萃取乙醇的能力。发现分布系数和选择性值足够高,以通过液液提取来支持缩放过程。 (c)2020 Elsevier B.v.保留所有权利。

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