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Study of the rectangular cross-flow flat-sheet membrane module for desalination by vacuum membrane distillation

机译:矩形横流平板膜组件的真空膜蒸馏脱盐研究

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This work presents a study of the heat and mass transfer performance of desalination in a laboratory scale rectangular cross-flow flat-sheet membrane module by vacuum membrane distillation (VMD) experiments. Results show that the traditional Nusselt and Sherwood correlations, which are frequently employed in the membrane distillation literature, are not suitably used to estimate the heat and mass transfer coefficients in the VMD system for Reynolds numbers ranging from 150 to 1400. In this study, it was observed that approximately 30% of the experimental data fit well with semi-empirical correlations whose empirical constants are a = 2.76 x 10(-3),b = 0.97 and c = 3.7909. The heat transfer process is limited by the resistances in the feed boundary layer and the membrane. The heat transfer resistance in the membrane increases when that in the feed boundary layer decreases and vice versa. More than 50% of the heat transfer resistances occur in the liquid feed phase at feed flow rates below 1200 mL/min, whereas the remaining occur in the membrane itself. At feed flow rates that exceed 1200 mL/min, the heat transfer resistance in the membrane becomes dominant. The Knudsen-viscous resistance controls the mass transfer through the membrane while the mass transfer resistance in the liquid feed phase is absent. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作通过真空膜蒸馏(VMD)实验研究了实验室规模的矩形错流平板膜组件中脱盐的传热和传质性能。结果表明,膜蒸馏文献中经常采用的传统Nusselt和Sherwood相关性不适用于估计VMD系统中150到1400雷诺数的传热和传质系数。在本研究中,据观察,大约30%的实验数据与经验常数为a = 2.76 x 10(-3),b = 0.97和c = 3.7909的半经验相关性非常吻合。传热过程受到进料边界层和膜中电阻的限制。当进料边界层中的传热阻力减小时,膜中的传热阻力增大,反之亦然。进料流速低于1200 mL / min时,超过50%的传热阻力出现在液体进料阶段,而其余的发生在膜本身中。当进料流速超过1200 mL / min时,膜中的传热阻力将占主导地位。在液体进料相中不存在传质阻力的情况下,克努森-粘滞阻力控制了通过膜的传质。 (C)2016 Elsevier B.V.保留所有权利。

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