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Photocatalytic degradation and mineralization of diazinon in aqueous solution using nano-TiO2(Degussa, P25): kinetic and statistical analysis

机译:纳米TiO2(Degussa,P25)在水溶液中对二嗪农的光催化降解和矿化作用:动力学和统计分析

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In this study, photocatalytic degradation of diazinon was investigated using nano-TiO2, Degussa P25, as a photocatalyst and the effectsofsomeoperationalparameterssuchas aeration, pH, photocatalyst concentration, and the irradiation time were also examined. Dispersive liquid-liquid microextraction technique was used to extract and pre-concentration of residual diazinon from the liquid samples and all experiments were carried out by gas chromatography. Amount of degradation and mineralization were determined by gas chromatograph with flame ionization detector (GC/FID) and COD measurements, respectively. The optimum condition for degradation of diazinon has been obtained in the pH 6, [nano-TiO2] = 0.2 g/L, and [time] = 120 min. In the optimal condition the removal efficiency of diazinon and COD were 99.64 and 65%, respectively. The results have shown that the nano-TiO2, aeration and time of reaction have a positive effect on photocatalytic degradation of diazinon and COD removal. Statistical analysis showed that the maximum removal of diazinon and COD were due to UV irradiation (71%, 41%), exposure time (16%, 39%), aeration (7%, 4%), and increased concentration of nano-TiO2 (0.4%, 2%), respectively; and the kinetics of photodegradation were found to follow a first-order kinetic model and the constant rate, at optimal condition, was 0.038 (min(-1)).
机译:在这项研究中,以纳米二氧化钛Degussa P25作为光催化剂研究了二嗪农的光催化降解,并考察了曝气,pH,光催化剂浓度和照射时间等操作参数的影响。使用分散液-液微萃取技术从液体样品中萃取和预浓缩残留的二嗪农,所有实验均通过气相色谱进行。降解和矿化的量分别通过带有火焰离子化检测器(GC / FID)的气相色谱仪和COD测量来确定。在pH 6 [nano-TiO2] = 0.2 g / L,[时间] = 120 min时,获得了降解二嗪农的最佳条件。在最佳条件下,二嗪农和COD的去除效率分别为99.64和65%。结果表明,纳米TiO2,曝气和反应时间对二嗪农的光催化降解和COD的去除具有积极作用。统计分析表明,二嗪农和COD的最大去除量归因于紫外线辐射(71%,41%),暴露时间(16%,39%),曝气(7%,4%)和纳米TiO2浓度的增加(分别为0.4%,2%);并且发现光降解动力学遵循一级动力学模型,并且在最佳条件下的恒定速率为0.038(min(-1))。

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