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Ultrasonic enhancement of membrane-based deoxygenation and simultaneous influence on polymeric hollow fiber membrane

机译:超声增强膜基脱氧并同时影响聚合物中空纤维膜

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摘要

This study made an attempt at applying ultrasonic technique to membrane-based deoxygenation process. The mass transfer performance of immersed hollow fiber membrane modules in removing dissolved oxygen from water with or without ultrasonic irradiation was evaluated. Moreover, to understand the influence of ultrasonic irradiation on the membrane, the surface structure of the irradiated membrane was observed by field emission scanning electron microscopy (FESEM). It was found that the mass transfer was greatly improved by ultrasound stimulation in both PP and PVDF membrane module. The mass transfer coefficient increased significantly with the increase of ultrasonic intensity, and up to 2.0 of the enhancement factor was obtained. In addition, the mass transfer improvement depended on the operating vacuum degree as well as the altitude of the immersed membrane module in the reservoir, due to the local difference in ultrasonic intensity. The microscopic images shed fight on the changes of membrane structure under ultrasonic treatment. Either PP or PVDF membrane was affected by ultrasonic irradiation, the surface of PP membrane was more easily transformed and damaged than PVDF. In conclusion, ultrasonic irradiation can be applied to membrane-based deoxygenation for the enhancement of mass transfer, but cautions should be taken to choose proper membrane material, ultrasonic intensity and irradiated duration to avoid membrane damage.
机译:这项研究尝试将超声技术应用于基于膜的脱氧过程。评价了浸入的中空纤维膜组件在有或没有超声波照射下从水中除去溶解氧的传质性能。此外,为了了解超声辐射对膜的影响,通过场发射扫描电子显微镜(FESEM)观察了被辐射膜的表面结构。发现在PP和PVDF膜组件中通过超声刺激极大地改善了传质。传质系数随超声强度的增加而显着增加,并获得高达2.0的增强因子。另外,由于超声强度的局部差异,传质的改善取决于工作真空度以及储液器中浸没膜组件的高度。显微图像证明了在超声处理下膜结构的变化。 PP或PVDF膜都受到超声波辐射的影响,PP膜的表面比PVDF更容易变形和损坏。总之,超声辐照可以应用于基于膜的脱氧,以增强传质,但应注意选择合适的膜材料,超声强度和辐照时间,以免破坏膜。

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