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Photocatalyzed degradation of flumequine by doped TiO_2 and simulated solar light

机译:掺杂TiO_2和模拟太阳光催化降解氟尿嘧啶。

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Titanium dioxide was obtained in its pure form (TiO_2) and in the presence of urea (u-TiO_2) and thiourea (t-TiO_2) using the sol-gel technique. The obtained powders were characterized by BET surface area analysis, Infrared Spectroscopy, Diffuse Reflectance Spectroscopy and the Rietveld refinement of XRD measurements. All the prepared catalysts show high anatase content (>99%). The a and b-cell parameters of anatase increase in the order TiO_2 < u-TiO_2 < t-TiO_2, while the c-parameter presents the opposite trend. Because of the interplay in cell dimensions, the cell grows thicker and shorter when prepared in the presence of urea and thiourea, respectively. The cell volume decreases in the order t-TiO_2 > u-TiO_2 > TiO_2. The photocatalytic activities of the samples were determined on flumequine under solar-simulated irradiation. The most active catalysts were u-TiO_2 and t-TiO_2, reaching values over 90% of flumequine degradation after 15 min irradiation, compared with values of 55% for the pure TiO_2 catalyst. Changing simultaneously the catalyst amount (t-TiO_2) and pH, multivariate analysis using the response surface methodology was used to determine the roughly optimal conditions for flumequine degradation. The optimized conditions found were pH below 7 and a catalyst amount of 1.6 g L~(-1).
机译:使用溶胶-凝胶技术获得了纯净形式(TiO_2)和尿素(u-TiO_2)和硫脲(t-TiO_2)存在的二氧化钛。通过BET表面积分析,红外光谱,漫反射光谱和XRD测量的Rietveld精制对所得粉末进行表征。所有制备的催化剂均显示出高的锐钛矿含量(> 99%)。锐钛矿的a和b细胞参数按TiO_2 u-TiO_2> TiO_2的顺序减小。在日光模拟辐射下,在氟尿嘧啶上测定了样品的光催化活性。活性最高的催化剂是u-TiO_2和t-TiO_2,辐照15分钟后达到了90%的氟尿嘧啶降解值,而纯TiO_2催化剂则为55%。同时改变催化剂量(t-TiO_2)和pH,使用响应表面方法进行多变量分析,确定了氟尿嘧啶降解的大致最佳条件。发现的最佳条件是pH低于7和催化剂量为1.6g L·(-1)。

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