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Fouling Reduction by Ozone-Enhanced Backwashing Process in Ultrafiltration of Petroleum-Based Oil in Water Emulsion

机译:通过臭氧增强的反冲洗过程进行污染,在水乳剂中超滤的超滤

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Ultrafiltration membrane has been successfully applied for oily waste water treatment. However, one significant drawback of membrane technology is fouling which is responsible for permeate flux decline as well as reducing membrane performance. One method commonly used to reduce fouling is a backwashing process. The backwashing is carried out by a push of reversed flow from permeate side to the feed side of a membrane to remove fouling on file membrane pore and release fouling release fouling layer on the external side. However, for adsorptive fouling, the backwashing process was not effective. On the other hand, Ozone demonstrated great perfor:mance for reducing organics fouling. Hence this research was focused on backwashing process with ozone for removing fouling due to ultrafiltration of petroleum based oil emulsion. Gasoline and diesel oil were selected as dispersed phase, while as continuous phase was water added with Tween 80 as a surfactant. This research found that the Ozone backwashing was effective to improve flux recovery. In ultrafiltration of gasoline emulsion, the flux recovery after Ozone backwashing was in the range of 42-74%. For ultrafiltration of diesel oil emulsion, the permeate flux recovery was about 35-84%. In addition, foulant deposition was proposed and predicting that foulant deposition for ultrafiltration of gasoline-in-water emulsion was surfactant as the top layer and the oil was underneath the surfactant. On the other hand, for ultrafiltration of diesel oil-in-water emulsion, the oil was predicted as a top layer above the surfactant foulant.
机译:超滤膜已成功应用于油性废水处理。然而,膜技术的一个显着缺点是污染,其负责渗透助焊剂的下降以及还原膜性能。一种常用于减少结垢的方法是反洗过程。通过从渗透物侧向膜的进料侧推动反向流动进行反擦洗以除去锉膜孔的污垢,并在外侧释放污垢释放污垢层。然而,对于吸附污垢,洗涤过程无效。另一方面,臭氧显示出伟大的性能:用于减少有机物污垢的植物。因此,该研究专注于用臭氧进行反洗方法,以消除由于石油基油乳液超滤而去除污染。选择汽油和柴油作为分散相,而作为连续相的水作为表面活性剂加入水。本研究发现,臭氧反洗是有效改善助焊剂恢复。在汽油乳液的超滤中,臭氧洗涤后的助焊剂恢复在42-74%的范围内。对于柴油乳液的超滤,渗透通量回收率约为35-84%。此外,提出并预测污垢沉积,并预测汽油 - 水乳液超滤的污垢沉积是表面活性剂,因为顶层,油在表面活性剂下面。另一方面,对于柴油水包油乳液的超滤,将油预测为表面活性剂污染物上方的顶层。

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