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Separation of the ethanol/water azeotropic mixture using ionic liquids and deep eutectic solvents

机译:使用离子液体和深共熔溶剂分离乙醇/水共沸混合物

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Two ethanolamine-based ionic liquids (ILs) and two choline chloride-based deep eutectic solvents (DESs) were synthesized and evaluated as entrainers for the separation of the ethanol/water azeotropic mixture. Isobaric vapor-liquid equilibrium data of the ternary system ethanol/water/IL or DES were measured using an ebulliometer at 101.3 kPa. The ILs examined were 2-hydroxy ethylammonium acetate and 2-hydroxy ethylammonium hexanoate, while the DESs were choline chloride:urea (1:2) and choline chloride:triethylene glycol (1:3). In all cases, an increase of the relative volatility and, consequently, a displacement of the azeotropic point was observed. Depending on the entrainer, concentrations of about 5.5-9% (w/w) were adequate for the complete elimination of the azeotrope. Recoverability and biodegradation tests were carried out for all ILs and DESs. DESs were found to be biodegradable, while ILs exhibited lower biodegradation capacity than DESs. Furthermore, analysis with H-1 NMR proved that all entrainers can be recycled and reused. Finally, thermodynamic modeling of the ethanol/water/IL or DES mixtures was performed with the UNIQUAC and NRTL models. The results for both models were found to be in good agreement with the experimental data. (C) 2015 Elsevier B.V. All rights reserved.
机译:合成了两种乙醇胺基离子液体(ILs)和两种氯化胆碱基深共熔溶剂(DESs),并作为夹带剂对乙醇/水共沸混合物的分离进行了评估。使用沸腾仪在101.3 kPa下测量三元系统乙醇/水/ IL或DES的等压气液平衡数据。检测的IL是乙酸2-羟基乙基铵和己酸2-羟基乙基铵,而DES则是氯化胆碱:尿素(1:2)和氯化胆碱:三甘醇(1:3)。在所有情况下,都观察到相对挥发度增加,因此共沸点发生位移。取决于夹带剂,约5.5-9%(w / w)的浓度足以完全消除共沸物。对所有IL和DES进行了可回收性和生物降解测试。发现DES是可生物降解的,而IL显示出比DES低的生物降解能力。此外,H-1 NMR分析证明所有夹带剂都可以回收和再利用。最后,使用UNIQUAC和NRTL模型对乙醇/水/ IL或DES混合物进行热力学建模。两种模型的结果均与实验数据吻合良好。 (C)2015 Elsevier B.V.保留所有权利。

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