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Enhanced dye wastewater degradation efficiency using a flowing aqueous film photoelectrocatalytic reactor

机译:使用流动水膜光电催化反应器提高染料废水的降解效率

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A TiO_2/Ti flowing aqueous film photoelectrocatalytic (PEC) reactor was developed and successfully applied to degrade Reactive Brilliant Blue X-BR (RBB) and textile effluent. The high treatment efficiency achieved by flowing aqueous film PEC process was attributed to the enhanced light utilization resulting from the significantly reduced path length (down to average approximately 78 μm level). The dye wastewater was kept circulating (7.7 L h~(-1)) during the experiments to continuously refresh the aqueous film on the TiO_2/Ti photoanode and promote the mass transfer of the target pollutants and the degradation products in the bulk solution. Using a 20-150 mg L~(-1)RBB solution as the model system, flowing aqueous film PEC removed color by 83-44% in one hour, much higher than the 75-12% by conventional PEC. Results also suggested that flowing aqueous film PEC was particularly superior to conventional PEC for treatment of a high concentration solution. The feasibility of the TiO_2/Ti flowing aqueous film PEC reactor was investigated by treating industrial textile effluent. A color and total organic carbon (TOC) removal of 75% and 50% respectively, were achieved in two hours. Thus, in the present study, we propose a new concept for the design of a PEC reactor applicable to industrial wastewater treatment.
机译:研制了一种TiO_2 / Ti流动水膜光电催化反应器,并成功地用于降解活性艳蓝X-BR(RBB)和纺织废水。通过水膜PEC流动工艺实现的高处理效率归因于光程的显着缩短(光路长度平均降低至平均约78μm),从而提高了光利用率。实验过程中,染料废水保持循环(7.7 L h〜(-1)),以连续刷新TiO_2 / Ti光阳极上的水膜,并促进目标污染物和降解产物在整体溶液中的传质。使用20-150 mg L〜(-1)RBB溶液作为模型系统,流动的水膜PEC在1小时内可去除83-44%的颜色,远高于传统PEC的75-12%。结果还表明,在处理高浓度溶液时,流动水膜PEC特别优于常规PEC。通过处理工业纺织品废水,研究了TiO_2 / Ti流动水膜PEC反应器的可行性。在两个小时内分别达到了75%和50%的有色和总有机碳(TOC)去除率。因此,在本研究中,我们提出了适用于工业废水处理的PEC反应器设计的新概念。

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