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首页> 外文期刊>The Korean journal of chemical engineering >Hydrotropic effect and thermodynamic analysis on the solubility and mass transfer coefficient enhancement of ethylbenzene
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Hydrotropic effect and thermodynamic analysis on the solubility and mass transfer coefficient enhancement of ethylbenzene

机译:乙苯溶解度和传质系数提高的水溶效应和热力学分析

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Concentrated aqueous solutions of a large number of hydrotropic agents, urea, nicotinamide, and sodium salicylate, have been employed to enhance the aqueous solubilities of poorly water soluble organic compounds. The influence of a wide range of hydrotrope concentrations (0-3.0 mol·L-1) and different system temperatures (303-333 K) on the solubility of ethylbenzene has been studied. The solubility of ethylbenzene increases with increase in hydrotrope concentration and also with system temperature. Consequent to the increase in the solubility of ethylbenzene, the mass transfer coefficient was also found to increase with increase in hydrotrope concentration at 303 K. The enhancement factor, which is the ratio of the value in the presence and absence of a hydrotrope, is reported for both solubility and mass transfer coefficient of ethylbenzene. The Setschenow constant, K_s, a measure of the effectiveness of a hydrotrope, was determined for each case. To ascertain the hydrotropic aggregation behavior of ethylbenzene, thermodynamic parameters such as Gibb's free energy, enthalpy, and entropy of ethylbenzene were determined.
机译:大量的水溶助剂,尿素,烟酰胺和水杨酸钠的浓缩水溶液已被用来增强水溶性差的有机化合物的水溶性。研究了大范围的水溶助长剂浓度(0-3.0mol·L-1)和不同的系统温度(303-333 K)对乙苯溶解度的影响。乙苯的溶解度随着水溶助长剂浓度的增加以及系统温度的增加而增加。由于乙苯溶解度的增加,还发现传质系数随303 K时水溶助长剂浓度的增加而增加。据报道,增强因子是存在和不存在水溶助长剂时的值之比。乙苯的溶解度和传质系数对于每种情况,都确定了Setschenow常数K_s(衡量水溶助长剂的有效性)。为了确定乙苯的水溶聚集行为,确定了吉布的自由能,焓和乙苯的熵等热力学参数。

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