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Kinetic study of dye removal using TiO2 supported on polyethylene terephthalate by advanced oxidation processes through neural networks

机译:通过神经网络通过高级氧化过程对聚对苯二甲酸乙二醇酯的TiO2去除动力学研究

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This work investigated the efficiency of polyethylene terephthalate (PET) as support material for TiO2 films in the photocatalytic degradation of red Bordeaux and yellow tartrazine dyes. The optimum operating conditions were determined by a factorial design, which resulted after 180 min of treatment in degradations of 99.5% and 99.1% for the UVC/H2O2/TiO2Sup and solar/H2O2/TiO2Sup systems, respectively. For the kinetic study, the experimental data fitted to the pseudo-first-order model and the calculated kinetic constants (k) values were 0.03 min(-1) for the UVC/H2O2/TiO2Sup system and 0.0213 min(-1) for the system solar/H2O2/TiO2Sup. It was verified that TiO2 supported in the PET remained with high degradation efficiency even after five cycles of reuse, indicating a good stability of the photocatalyst in the support. A significant reduction of TOC content was also observed along the reaction time. The phytotoxicity bioassay with Lactuca sativa demonstrated that after treatment with UVC/H2O2/TiO2Sup and solar/H2O2/TiO2SUP, an increase in IC50 and consequently lower toxicity was observed.
机译:该作品研究了在红色波尔多和黄色塔拉嗪染料的光催化降解中为TiO2薄膜的聚对苯二甲酸乙二醇酯(PET)作为载体材料的效率。最佳的操作条件是通过阶乘设计确定的,其在治疗后180分钟后,分别为UVC / H2O2 / TiO2Sup和Solar / H2O2 / TiO2SUP系统的99.5%和99.1%。对于动力学研究,适用于伪第一阶模型的实验数据和计算的动力学常数(K)值为UVC / H2O2 / TiO2SUP系统为0.03分钟(-1),为0.0213 min(-1)系统太阳能/ H2O2 / TiO2SUP。验证了在PET中支持的TiO2,即使在重用五个循环之后,仍然具有高的降解效率,表明载体中光催化剂的良好稳定性。还沿反应时间观察到TOC含量的显着降低。具有Lactuca Sativa的植物毒性生物测定证明,用UVC / H 2 O 2 / TiO 2 SUP和Solar / H 2 O 2 / TiO 2 SUP处理后,观察到IC 50的增加并因此较低的毒性。

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