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Degradation of Tannic Acid Using TiO2 Nanotubes as Electrocatalyst

机译:TiO2纳米管作为电催化剂降解单宁酸

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Structured TiO2 nanotubes were grown on 2 mm thick titanium sheet by anodization of titanium in ethylene glycol medium containing 0.025 M NaF. The morphology of TiO2 nanotubes (TNT) was characterized using field emission scanning electron microscope. The potential of TNT as anode and also as photocatalyst for the degradation of tannic acid was studied. The mineralization of tannic acid was measured in terms Total Organic Carbon (TOC). Only 50% of TOC could be removed by exposing the tannic acid solution to UV-radiation (photolysis), whereas it was improved to 70% by electrooxidation (EO) using TNT as anode. Maximum degradation of 83% was achieved when electrooxidation was conducted under the influence of UV-radiation (photoelectrocatalytic process (PEC)). Among the electrolytes tried, Na2SO4 was observed to be very effective for the degradation of tannic acid. The kinetics of tannic acid degradation by photoelectrocatalytic process was found to follow zero-order rate expression.
机译:通过在含0.025 M NaF的乙二醇介质中对钛进行阳极氧化,在2 mm厚的钛板上生长结构化的TiO2纳米管。使用场发射扫描电子显微镜表征了TiO2纳米管(TNT)的形貌。研究了TNT作为阳极和光催化剂降解单宁酸的潜力。单宁酸的矿化度以总有机碳(TOC)表示。将单宁酸溶液暴露于紫外线辐射(光解)只能除去50%的TOC,而使用TNT作为阳极的电氧化(EO)可以将其提高到70%。当在紫外线辐射(光电催化过程(PEC))的影响下进行电氧化时,可实现83%的最大降解。在尝试使用的电解质中,观察到Na2SO4对单宁酸的降解非常有效。发现单宁酸被光电催化降解的动力学遵循零级速率表达。

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