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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Hydrogen peroxide-assisted photocatalysis under solar light irradiation: Interpretation of interaction effects between an active photocatalyst and H2O2
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Hydrogen peroxide-assisted photocatalysis under solar light irradiation: Interpretation of interaction effects between an active photocatalyst and H2O2

机译:太阳光照射下的过氧化氢辅助光催化剂:活性光催化剂和H2O2之间的相互作用效应的解释

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摘要

In this work, the combination of H2O2 and an active visible-light-driven photocatalyst (Ag-S/PEG/TiO2) was utilized under natural solar radiation for the degradation of 2-nitrophenol (2-NP), and interaction effects between the photocatalyst and hydrogen peroxide were analyzed. For this purpose, experiments were designed using the response surface methodology based on the central composite design. The resulting data was utilized to obtain a model for the prediction of response (the degradation efficiency) as a function of two independent factors (H2O2 concentration and the photocatalyst loading). The statistical analysis indicated that optimum values of each of the two independent factors decreased by increasing the other one and vice versa. Moreover, it was found that adding the optimal amount of H2O2 to the solution, which contained just the photocatalyst, can enhance the degradation significantly (up to 45 %). However, using higher concentrations of H2O2 may decrease the efficiency. The global optimum condition was found to be 545 ppm and 316 mM for Ag-S/PEG/TiO2 loading and H2O2 concentration, respectively. In this condition, the degradation efficiency of 2-NP reached 92.4 % after only 45 min of solar light irradiation.
机译:在这项工作中,H 2 O 2和活性可见光光催化剂(AG-S / PEG / TiO 2)的组合在天然的太阳辐射下使用了2-硝基苯酚(2-NP)的降解,以及之间的相互作用效应分析了光催化剂和过氧化氢。为此目的,使用基于中央复合设计的响应面方法设计实验。利用所得数据来获得用于预测响应(降解效率)的模型,作为两个独立因子的函数(H 2 O 2浓度和光催化剂负载)。统计分析表明,通过增加另一个独立因子中的每一个的最佳值,反之亦然。此外,发现将最佳量的H 2 O 2加入到溶液中含有光催化剂,可以显着提高降解(高达45%)。然而,使用较高浓度的H2O2可以降低效率。对于AG-S / PEG / TiO 2负荷和H 2 O 2浓度,发现全局最佳状况为545ppm和316mm。在这种情况下,在仅45分钟的太阳光照射后,2-NP的降解效率达到92.4%。

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