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Separation of toluene from a toluene/n-heptane mixture using ethylene glycol containing deep eutectic solvents

机译:使用含有深层共晶溶剂的乙二醇将甲苯与甲苯/正庚烷混合物分离

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Deep eutectic solvents (DESs) were synthesized and used to separate toluene from n-heptane. DES3 and DES4 were synthesized using choline chloride, urea, and ethylene glycol with a molar ratio of 1: 2: 1 and methyltriph-enylphosphonium bromide and ethylene glycol with a 1: 3 ratio, respectively. While dynamic viscosity of DES2 ranged from 575.9 to 73.8 over temperatures 293.2 to 323.2 K, respectively, that of DES3 ranged from 219.5 to 39.44 [mPa center dot s]. The viscosity of both DES3 and DES4 follows the Arrhenius equation with respect to temperature from 293.2 to 323.2 K. The liquid-liquid equilibrium (LLE) of the pseudoternary system of toluene, n-heptane, and DES3 were performed at temperature of 303.2 K at ambient pressure. Another LLE of the pseudoternary system of toluene, n-heptane, and DES4 were was obtained over a temperature range of 298.2-313.2 K with a 10 K interval at atmospheric pressure. The experimental LLE data were correlated using the non-random two-liquid (NRTL) model. DESs were not detected in the raffinate phase, and as a result no further separation process for DES was necessary in the toluene separation process. The values of selectivity in the presence of DES 4 changed in a range from 24.4 to 147.5, however, those in the presence of DES3 from 4.1 to 18.7 at 313.2 K. The values of selectivity of toluene with DES applied in this study were far higher than those with other conventional solvents.
机译:合成深共晶溶剂(DES)并用于将甲苯与正庚烷分离。使用氯化胆碱,尿素和乙二醇合成DES3和DES4,摩尔比为1:2:1和甲基三苯基鏻溴和乙二醇,分别为1:3的比例。虽然DES2的动态粘度范围为575.9至73.8,其温度分别为293.2至323.2 k,DES3的范围为219.5至39.44 [MPA中心点S]。 DES3和DES4的粘度跟随Arhenius方程相对于293.2至323.2K的温度。甲苯,正庚烷的假液系统的液 - 液平衡(LLE)在303.2k的温度下进行环境压力。在298.2-313.2K的温度范围内,在大气压下,在298.2-313.2K的温度范围内获得甲苯,正庚烷和DES4的甲苯的另一个lecle。使用非随机双液(NRTL)模型相关的实验性lele数据。在萃余液相中未检测到DES,结果在甲苯分离过程中不需要进一步的分离过程。 DES 4存在下的选择性值在24.4至147.5的范围内变化,然而,在313.2k中,在4.1至18.7的情况下存在于313.2k中的那些。在本研究中应用DES的甲苯的选择性值远远高于比其他常规溶剂的那些。

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