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Optimization of dewetting conditions for hollow fiber membranes in vacuum membrane distillation

机译:真空膜蒸馏中空纤维膜除湿条件的优化

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Membrane distillation (MD) is a thermal separation process that uses a hydrophobic membrane as a barrier between a liquid phase and a gas phase. Accordingly, MD can only be applied under the conditions where the membrane is not wetted by the feed solution. In this study, a technique to remove water inside the pores of the wetted membranes, or "dewetting," was developed to mitigate the problems of membrane wetting in MD process. High-temperature air was applied to the wetted membranes using a specially designed device. The dewetting efficiency was analyzed by measuring the liquid entry pressure, water flux, and salt rejection. The response surface methodology (RSM) was applied to explore the optimum conditions for dewetting of MD membranes. Results indicated that dewetting should be done under proper conditions. If the temperature and dewetting time were insufficient, the dewetting was incomplete. On the other hand, the membrane was partially deformed if the temperature was too high and the dewetting time was too long. Based on the RSM results, the optimum conditions for the temperature and time ranged from 60 to 70 degrees C and from 8 to 12.5 min, respectively.
机译:膜蒸馏(MD)是一种热分离工艺,它使用疏水膜作为液相和气相之间的屏障。因此,MD只能在膜不被进料溶液润湿的条件下施加。在这项研究中,开发了一种去除湿膜孔内水分或“去湿”的技术,以减轻MD过程中膜湿润的问题。使用专门设计的设备将高温空气施加到湿膜上。通过测量液体进入压力,水通量和脱盐率来分析去湿效率。应用响应表面方法(RSM)来探索MD膜去湿的最佳条件。结果表明应在适当条件下进行除湿。如果温度和润湿时间不足,则润湿不完全。另一方面,如果温度太高并且去湿时间太长,则膜部分变形。根据RSM结果,温度和时间的最佳条件分别为60到70摄氏度和8到12.5分钟。

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