Department of Chemical Engineering and R&D Centre for Membrane Technology, Chung Yuan University, Taoyuan 320, Chinese Taiwan.
Water Sci Technol. 2010;62(2):347-52. doi: 10.2166/wst.2010.740.
This paper reports experiments using a flat-sheet module with 0.18 approximately 0.45 microm ePTFE (expanded polytetrafluoroethylene) and PVDF (polyvinylidene fluoride) membranes to show the effects of membrane properties, salt concentration and fluid hydrodynamics on the permeate flux and salt rejection of DCMD (direct contact membrane distillation). A theoretical prediction of the permeate flux was carried out, and was in close agreement with the experimental results. In addition, the energy integration of the process was also analyzed in order to evaluate module design to increase energy efficiency. According to the simulated results of the energy integration design, a combination of simultaneous cooling of the permeate stream and an additional heat exchanger to lower the temperature of the permeate stream not only enhances the MD flux, but also reduces energy consumption.
本文报道了使用具有 0.18 至 0.45 微米 ePTFE(膨体聚四氟乙烯)和 PVDF(聚偏二氟乙烯)膜的平板模块进行的实验,以展示膜性能、盐浓度和流体动力学对 DCMD(直接接触膜蒸馏)渗透通量和盐截留率的影响。对渗透通量进行了理论预测,与实验结果非常吻合。此外,还分析了该过程的能量集成,以评估模块设计以提高能源效率。根据能量集成设计的模拟结果,同时冷却渗透流和增加换热器以降低渗透流温度的组合不仅可以提高 MD 通量,还可以降低能耗。