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TiO_2 membranes for concurrent photocatalytic organic degradation and corrosion protection

机译:TiO_2膜可同时进行光催化有机降解和腐蚀防护

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Organic contaminants and corrosion in water treatment effluents are a current global problem and the development of effective methods to facilitate the removal of organic contaminants and corrosion control strategies are required to mitigate this problem. TiO_2 nanomaterials that are exposed to UV light can generate electron-hole pairs, which undergo redox reactions to produce hydroxyl radicals from adsorbed molecular oxygen. They hydroxyl radicals are able to oxidize organic contaminants in water. This same process can be used in conjunction to protect metals from corrosion via cathodic polarization. In this work, TiO_2 nanomaterials were synthesized and electrophoretically deposited on conductive substrates to serve as films or membranes. An illuminated TiO_2 film on a conductive surface served as the photoanode and assisted in the cathodic protection of stainless steel (SS304) and the degradation of organic pollutants, in this case glucose. This proof-of-concept relied on photoelectrochemical experiments conducted using a potentiostat and a xenon lamp illumination source. The open-circuit potential changes that determine whether a metal is protected from corrosion under illumination was observed; and the electrical characteristics of the TiO_2 film or membrane under dark and arc lamp illumination conditions were also analyzed. Furthermore, the effect of organic contaminants on the photocathodic protection mechanism and the oxidation of glucose during this process were explored.
机译:水处理废水中的有机污染物和腐蚀是当前的全球性问题,因此需要开发有效的方法来促进有机污染物的去除和腐蚀控制策略以减轻该问题。暴露在紫外线下的TiO_2纳米材料可以产生电子-空穴对,这些电子-空穴对会发生氧化还原反应,从而从吸附的分子氧产生羟基自由基。它们的羟基自由基能够氧化水中的有机污染物。可以将相同的过程结合使用,以防止金属通过阴极极化受到腐蚀。在这项工作中,合成了TiO_2纳米材料并将其电泳沉积在导电基材上以用作薄膜或膜。导电表面上的发光TiO_2薄膜用作光电阳极,并有助于不锈钢(SS304)的阴极保护和有机污染物(在这种情况下为葡萄糖)的降解。该概念证明依赖于使用恒电位仪和氙气灯照明源进行的光电化学实验。观察到的开路电势变化确定了金属是否受到光照保护。并分析了在黑暗和弧光照明条件下TiO_2薄膜或薄膜的电学特性。此外,在此过程中,还探讨了有机污染物对光阴极保护机理和葡萄糖氧化的影响。

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