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Statistical theory of vapor transport through hollow fiber membranes in vacuum membrane distillation: Effusion analogy

机译:真空膜蒸馏中空纤维膜蒸汽输送统计理论:效果类比

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This paper developed a new theory of vacuum membrane distillation, which can be readily applicable to other membrane distillation processes. Using the molecular kinetic theory and statistical mechanics, we derived that the driving force of the vapor flux is the gradient of the incidence rate, which is defined as the number of molecules colliding a flat wall per unit surface area per unit time. Knudsen and Brownian diffusion are seamlessly combined into one governing equation without any forceful assumptions. More importantly, the effect of the vacuum temperature on the mass and the heat flux is studied using the dependence of the incidence rate on temperature. It is concluded that the insensitiveness of the vapor flux on saline concentration and recycling of hot feed stream can be systematically used to design of membrane crystallization processes in the future. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文开发了一种新的真空膜蒸馏理论,可容易地适用于其他膜蒸馏过程。 使用分子动力学理论和统计力学,我们得出的蒸汽通量的驱动力是发病率的梯度,其定义为每单位时间每单位表面面积的平坦壁碰撞的分子数。 Knudsen和Brownian扩散无缝成一个控制方程,没有任何强有力的假设。 更重要的是,研究了真空温度对质量和热通量的影响,采用发生率在温度上的依赖性研究。 得出结论,蒸汽通量对盐水浓度和热进料流回收的不敏感性可以系统地用于将来设计膜结晶过程。 (c)2017年Elsevier B.V.保留所有权利。

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