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Experimental study of evaporation and crystallization of brine droplets under different temperatures and humidity levels

机译:不同温度和湿度下卤水液滴蒸发和结晶的实验研究

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摘要

The evaporation of brine droplets has critical impacts on the zero-liquid-discharge thermal desalination process. A good understanding of the evaporation of brine droplets provides guidelines for the design of thermal desalination systems, and offers insights for applications when solvent droplet evaporation processes are involved. In this study, brine droplets with different salt mass concentrations were placed in a chamber with controlled temperature and relative humidity. The evaporation and crystallization processes were then visualized through a high speed camera by employing the pendant droplet method. The results showed that the evaporation rate increases with the decrease of relative humidity, the increase of temperature, and the decrease of salt mass concentration. After the evaporation was finished, we can observe that the crystal grew along the filament during the evaporation and remained on it. A salt shell was formed at the outside, while the droplet still contained some amount of brine inside, when the evaporation rate was low. Consequently, the evaporation mechanism was changed once the salt shell was formed, the water molecules needed to overcome the pressure difference inside and outside the salt shell, and diffused through the shell for further evaporation. A multi-variable fitted quadratic regression model was developed with R~2 = 0.974 to describe the relationship among the evaporation rate, mass concentration, relative humidity and temperature. Because the regression model was based on experimental data with temperature varying from 30 ℃ to 60 ℃, a predicted result of brine droplet's evaporation rate with various mass concentrations under 75 ℃ and 0% RH showed a good agreement with the experiment data. Therefore the developed regression model can be extended for high temperature (< 100 ℃, no boiling) applications.
机译:盐水液滴的蒸发对零液体排放热脱盐过程具有关键影响。对盐水液滴蒸发的深入了解为热脱盐系统的设计提供了指导,并为涉及溶剂液滴蒸发过程的应用提供了见识。在这项研究中,将具有不同盐质量浓度的盐水液滴放在温度和相对湿度受控的室内。然后,采用悬滴法通过高速照相机观察蒸发和结晶过程。结果表明,蒸发速率随着相对湿度的降低,温度的升高和盐质量浓度的降低而增加。蒸发完成后,我们可以观察到晶体在蒸发过程中沿着长丝生长并保留在其上。当蒸发速率低时,在外部形成盐壳,而液滴内部仍包含一定量的盐水。因此,一旦形成盐壳,蒸发机制就发生了变化,克服盐壳内部和外部的压力差所需的水分子会扩散通过壳进一步蒸发。建立了多变量拟合二次回归模型,R〜2 = 0.974,描述了蒸发速率,质量浓度,相对湿度和温度之间的关系。由于回归模型基于温度在30℃至60℃之间变化的实验数据,因此在75℃和0%RH的条件下,各种质量浓度的盐水滴蒸发速率的预测结果与实验数据吻合良好。因此,所开发的回归模型可以扩展到高温(<100℃,无沸腾)应用。

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  • 来源
    《International communications in heat and mass transfer》 |2020年第1期|104427.1-104427.11|共11页
  • 作者

  • 作者单位

    Department of Mechanical Engineering The University of Texas Rio Grande Valley Edinburg TX 78539 USA Jiangsu Province Engineering Laboratory of High Efficient Energy Storage Technology and Equipment China University of Mining and Technology Xuzhou 221116 China School of Electrical and Power Engineering China University of Mining and Technology Xuzhou 221116 China;

    Department of Mechanical Engineering The University of Texas Rio Grande Valley Edinburg TX 78539 USA;

    Department of Manufacturing and Industrial Engineering The University of Texas Rio Grande Valley Edinburg TX 78539 USA;

    Jiangsu Province Engineering Laboratory of High Efficient Energy Storage Technology and Equipment China University of Mining and Technology Xuzhou 221116 China School of Electrical and Power Engineering China University of Mining and Technology Xuzhou 221116 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Brine droplet evaporation; Zero-liquid-discharge; Pendant droplet method; Multi-variable fitted regression model;

    机译:盐水滴蒸发;零液体排放;吊坠滴法;多变量拟合回归模型;

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