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Performance of photocatalytic oxidation of tetracycline in aqueous solution by TiO2 nanofibers

机译:TiO2纳米纤维在水溶液中光催化氧化四环素的性能

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摘要

The presence of pharmaceutical compounds in water and soil has become an environmental concern. The aim of this study was to evaluate the performance of TiO2 nanofiber in the oxidation of the antibiotic tetracycline. TiO2 nanofiber was fabricated by electro-spinning method, and then was calcined at 560°C for 2 h. Central composite design (CCD) statistic model was used to optimize tetracycline concentration, time and pH for TiO2 catalyst. A tubular Pyrex glass reactor with diameter of 15 cm and height of 30 cm was designed and a 125W Philips HPLN lamp (UV, λ > 254 nm) was used as light source. Samples were measured by high-performance liquid chromatography (HPLC). Equation of model suggests a direct relationship between pH and time with efficiency of tetracycline removal. The observations indicated that time is the most significant (scaled estimate = + 28.04) parameter in efficiency of tetracycline removal. The application of response surface methodology yielded the equation of Y = 65.82 + 5.74 pH + 28.04 time + (−3.07)(pH)2 + (−6.6)(time)2, with R2 = 0.986 which represents good reliability of model. Based on the response surface plots optimum conditions for degradation of tetracycline with maximum efficiency of around 95% was attained. These conditions are as follow; concentration: 50 mg/l, pH= 8.3, time= 15 min.
机译:水和土壤中药物化合物的存在已成为环境问题。这项研究的目的是评估TiO2纳米纤维在抗生素四环素氧化中的性能。 TiO2纳米纤维是通过电纺丝法制备的,然后在560°C下煅烧2 h。使用中央复合设计(CCD)统计模型优化TiO2催化剂的四环素浓度,时间和pH。设计了直径为15 cm,高度为30 cm的管状Pyrex玻璃反应器,并使用125W Philips HPLN灯(UV,λ> 254 nm)作为光源。通过高效液相色谱(HPLC)测量样品。模型方程表明,pH和时间与四环素去除效率之间存在直接关系。观察结果表明,时间是四环素去除效率中最重要的参数(比例估计值= + 28.04)。响应面方法的应用得出Y = 65.82 + 5.74 pH + 28.04 time +(-3.07)(pH) 2 +(-6.6)(time) 2 ,R 2 = 0.986,表示模型具有良好的可靠性。根据响应面图,可以得到降解四环素的最佳条件,最大效率约为95%。这些条件如下:浓度:50 mg / l,pH = 8.3,时间= 15分钟。

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