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Operational conditions of a membrane filtration reactor coupled with photocatalytic oxidation

机译:膜过滤反应器结合光催化氧化的操作条件

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Membrane separation was employed in a novel photocatalytic oxidation slurry reactor to conserve catalyst.This paper reports some critical operational conditions of this reactor.While fine-bubble aeration served to suspend the catalyst,introducing an intermittent coarse bubbling under the membrane during operation was vital to counteract TiO2 catalyst entrapment on membrane surface.Circulation flow in the reactor was also found to have certain effect on counteracting the dropping out of catalyst.A submerged membrane module with a pore size of 0.1 mu m successfully conserved the powdered catalysts within the reactor after 2 days' preluding filtration.As for pollutant removal,membrane filtration and circulation flow had no effect,whereas increase in gas holdup had.Running the reactor to treat model pollutant dissolved in tap water revealed that calcium carbonate both deactivated the catalyst and contributed to membrane fouling,suggesting that water hardness and alkalinity deserves appropriate treatment to warrant a good performance of such a reactor.
机译:在新型光催化氧化淤浆反应器中采用膜分离以节省催化剂。本文报道了该反应器的一些关键操作条件。虽然细气泡曝气起到了悬浮催化剂的作用,但在操作过程中在膜下引入间歇性的粗大起泡对于降低催化剂的寿命至关重要。抑制了TiO2催化剂在膜表面的截留,还发现反应器中的循环流对抵消催化剂的滴落有一定的作用,孔径为0.1μm的浸没式膜组件成功地将粉末状催化剂保存在反应器中2对于污染物去除,膜过滤和循环流没有影响,而气体滞留量增加。运行反应器处理溶解于自来水中的模型污染物表明,碳酸钙既使催化剂失活,又导致膜结垢。 ,建议水硬度和碱度应适当适当的处理以确保这种反应堆的良好性能。

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