水沸点标高及其与盐浓度关系的研究及其在蒸发器设计中的应用

R. Das, A. Mukherjee, Ishita Sinha, Arghyadeep De, Kunal Roy, A. Sirkar
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引用次数: 0

摘要

溶液的沸点随着非挥发性溶质浓度的增加而增加,因为溶质的加入使溶剂的蒸气压降低。因此,溶液需要加热到更高的温度,以使蒸汽压等于沸点处的外部压力。实验表明,溶液上方溶剂的沸点与纯溶剂的沸点的变化与溶质的摩尔浓度成正比。由于蒸发器处理的是沸腾溶液,特别是非挥发性溶质溶液,因此在设计蒸发器时,任何与传热有关的问题都必须考虑沸点升高的影响。在本实验研究中,由于存在单独的钠和钾盐(如NaCl、NaOH、KCl、KNO3)以及由NaCl & NaOH和KCl& KNO3组成的混合物,水的沸点升高与盐的浓度和盐的溶解度有关。相关性是基于克拉修斯-克拉珀兰关系和拉乌尔定律的结合,考虑了从1.4到16 wt. %的盐浓度范围。相关性考虑了两个因素,即盐与水之间的相互作用和阳离子的共同作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studies on Boiling Point Elevation of Water and it’s Correlation with Salt Concentrations for Application in Evaporator Design
The boiling point of a solution increases with the increase of non-volatile solute concentration as the vapor pressure of solvent reduces due to addition of solute in it. Thus the solution need to be heated to a higher temperature in order to get the vapor pressure to become equal to the external pressure at the boiling point. Experiment shows that the change in boiling point of the solvent above a solution from that of the pure solvent is directly proportional to the molal concentration of the solute. Since evaporators dealing with boiling solutions, and in particular with solutions with non-volatile solutes, any problems related with heat transfer on it must account for the effect of boiling point elevation in designing the evaporator. In this experimental studies the boiling point elevations of water due to presence of individual sodium and potassium salts like NaCl, NaOH, KCl, KNO3 as well as mixtures consisting of both NaCl & NaOH and KCl& KNO3 have been correlated to salt concentrations and solubility of the salts. The correlations are based on combination of Clasius-Clapeyran relation with Raoult’s law considering wide range of salt concentrations from 1.4 to 16 wt. %. The correlation takes care of two factors namely interaction between the salts and water common ion effect of the cations together.
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