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Photooxidation of wool dye and TCP in aqueous solution using an innovative TiO?mesh electrode

机译:羊毛染料和TCP在水溶液中的光氧化作用,采用创新的TiO网格电极

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摘要

An innovative titanium dioxide (TiO?) mesh electrode was prepared by anodisation, in which 0.5 M sulphuric acid was used as electrolyte and titanium (Ti) metal mesh was anodised in a two stage anodic process. The innovated mesh electrode was examined using Raman spectroscopy to determine the formation of TiO?layer when different potentials of 120 V, 140 V, 160 V, and 180 V were applied in anodisation. Microporous surface of the electrode was also examined using scanning electron microscopy. The photocatalytic (PC) oxidation and photoelectrocatalytic (PEC) oxidation were studied using the new electrode for treating synthetic wastewater solutions of dye and trichlorophenol (TCP) respectively. The colour removal efficiency of 68% was achieved using the 160V-mesh electrode for treating wool dye solution after 80minutes reaction time. However, it was found that a significant substrate adsorption on the surface of the mesh electrode could not be avoided when pH was below pH[sub IEP] of TiO?=6.3. In this condition, electrostatic adsorption occurred between the anionic substrate molecules and positively charged TiO?surface. The adsorbed substrate anion occupied most active sites of TiO?on the mesh electrode surface and significantly reduced the performance efficiency of photo-oxidation, when the TiO?mesh electrode was reused. The experiment demonstrated that TCP adsorption on the mesh electrode could be significantly eliminated, when pH of TCP solution was adjusted to above 7. When raising pH in TCP photodegradation eliminated substrate adsorption, it was confirmed that PC oxidation with application of a potential bias could enhance the photo-oxidation rate and a repeatable photo-oxidation rate could be maintained when the same mesh electrode was reused in its following tests.
机译:通过阳极氧化制备创新的二氧化钛(TiO 2)网状电极,其中0.5 M硫酸用作电解质,钛(Ti)金属网在两步阳极工艺中进行阳极氧化。当用120 V,140 V,160 V和180 V的不同电势进行阳极氧化处理时,使用拉曼光谱法检查创新的网状电极以确定TiO2层的形成。还使用扫描电子显微镜检查了电极的微孔表面。使用新型电极分别处理染料和三氯苯酚(TCP)的合成废水溶液,研究了光催化(PC)氧化和光电催化(PEC)氧化。反应时间为80分钟后,使用160V网状电极处理羊毛染料溶液可实现68%的脱色效率。然而,发现当pH低于TiO 2的pH [sub IEP] = 6.3时,不能避免在网状电极表面上明显的基质吸附。在这种条件下,在阴离子基质分子和带正电的TiO2表面之间发生了静电吸附。当再次使用TiO2网状电极时,吸附的基质阴离子占据了网状电极表面上TiO2的大部分活性位,并显着降低了光氧化性能。实验表明,将TCP溶液的pH值调节至7以上,可显着消除TCP吸附在网状电极上。当TCP光降解过程中提高pH值可消除基质吸附时,证实施加电位偏压可增强PC氧化当同一网状电极在以下测试中重复使用时,可以保持光氧化速率和可重复的光氧化速率。

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  • 作者

    Li, XZ; Yue, PT; Mak, CL;

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  • 年度 2000
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  • 正文语种 en
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