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Assessment of a COD analytical method based on the photoelectrocatalysis of a TiO2 nanotube array sensor

机译:基于光电催化的TiO2纳米管阵列传感器的COD分析方法的评估

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This work mainly describes assessment of a photoelectrocatalytic method to determine chemical oxygen demand (COD) in refractory and low-concentration organics using a highly effective TiO2 nanotube array sensor in a thin-cell reactor. Twenty organic compounds, including recalcitrant organics from six categories, were used as model compounds to evaluate the accuracy of the method. The correlation between theoretical oxygen demand (ThCOD) and response COD was studied. The linear regression equation COD = α x ThCOD was obtained, where α is the slope of the regression equation representing the conformity between the actual COD value and the theoretical value. Results of the photoelectrochemical method used in the present paper show excellent conformity between ThOD and response COD for all model compounds, with α and correlation coefficient r values of 0.9903 and 0.9901, respectively. However, results using the standard dichromate method show poor conformity, with α and r values of only 0.8359 and 0.8213, respectively. Hence, we conclude that this photoelectrocatalytic method is superior to the dichromate method for determination of COD in refractory and low-concentration organics. The photoelectrocatalytic method possesses a detection limit of 0.5 mg L~(-1), while dichromate COD values lower than 20 mg L~(-1) could not accurately be detected, with the exception of sugars.
机译:这项工作主要描述了在薄电池反应器中使用高效的TiO2纳米管阵列传感器对光电催化方法进行评估以确定耐火和低浓度有机物中化学需氧量(COD)的评估。使用二十种有机化合物(包括六类难降解有机物)作为模型化合物,以评估该方法的准确性。研究了理论需氧量(ThCOD)与响应COD之间的相关性。获得线性回归方程COD =αx ThCOD,其中α是回归方程的斜率,代表实际COD值与理论值之间的一致性。本文使用的光电化学方法的结果表明,所有模型化合物的ThOD与响应COD均具有极好的一致性,其α和相关系数r值分别为0.9903和0.9901。但是,使用标准重铬酸盐方法的结果显示出较差的一致性,α和r值分别仅为0.8359和0.8213。因此,我们得出结论,该光电催化方法在重金属和低浓度有机物中COD的测定方面优于重铬酸盐方法。光电催化法的检出限为0.5 mg L〜(-1),除糖类以外,重铬酸盐的COD值均不能准确检测到低于20 mg L〜(-1)。

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