Department of Chemical Engineering, Lakehead University, Thunder Bay, ON, P7B 5E1, Canada.
Department of Civil Engineering, Lakehead University, Thunder Bay, ON, P7B 5E1, Canada.
Water Res. 2019 Mar 15;151:260-270. doi: 10.1016/j.watres.2018.12.047. Epub 2018 Dec 27.
The effects of extreme cold water temperature, elevated cleaning water temperature, cleaning time on membrane performance, and pore size distribution were studied using flat-sheet polyvinylidene fluoride (PVDF) membranes. Extreme cold water temperature led to a decrease in membrane permeability, and membrane pore size shrinkage. The use of periodical warm water (35 °C) membrane conditioning could almost completely recover the membrane permeability and pore size structure loss caused by extreme cold water temperature, while the use of room temperature (23±1 °C) conditioning recovered majority of the membrane permeability and structure loss caused by extreme cold water temperature. Changes in membrane performance correlate well with changes in membrane structure. Membranes periodically conditioned in warmer water temperature showed a higher permeability than that periodically conditioned at room temperature from a long-term operation of three months. The results suggest the change in PVDF membrane performance and structure caused by extreme cold water temperature is almost completely reversible after periodical warm water conditioning, and thus the use of warm water conditioning and/or chemical cleaning will benefit the recovery of membrane performance and structure change caused by extreme cold water temperature in cold regions.
采用平板聚偏氟乙烯(PVDF)膜研究了极冷水温、升高的清洗水温、清洗时间对膜性能和孔径分布的影响。极冷水温会导致膜渗透性能下降和膜孔径收缩。周期性使用温水(35°C)膜处理几乎可以完全恢复极冷水温引起的膜渗透性能和孔径结构损失,而室温(23±1°C)处理则可以恢复极冷水温引起的大部分膜渗透性能和结构损失。膜性能的变化与膜结构的变化密切相关。在三个月的长期运行中,周期性在较高水温下处理的膜的渗透性高于周期性在室温下处理的膜。结果表明,极冷水温引起的 PVDF 膜性能和结构的变化在周期性温水处理后几乎完全可逆,因此在寒冷地区,使用温水处理和/或化学清洗将有助于恢复极冷水温引起的膜性能和结构变化。