Photocatalytic Treatment of Pesticides Using TiO2 Doped with Rare Earth

Juan C. Arévalo Pérez, J. G. Torres, D. D. L. C. Romero, H. Pérez-Vidal, M. A. Rocha, I. López, A. Uribe, Zenaida Guerra Que
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引用次数: 1

Abstract

Rare earth doping ions can improve the spectral response of this semiconductor to the visible region. This work evaluated the dopant effect of rare earth ions such as La, Ce, Nd, Pr, Sm, Eu, and Gd in titania for the solar photodegradation of Diuron and methyl parathion. The increase in the content up to 0.5% of dopants decreases photoactivity due to the formation of photo-generated electron-hole pair recombination centers. The catalysts calcined at 500°C presented only the anatase crystalline phase and the samples doped with La and Ce at 0.1 and 0.3% were the most active in diuron solar degradation; however, when the temperature of the thermal treatment increased to 800°C, mixtures of crystalline phases were presented. The catalyst with the highest anatase content showed the best performance. The materials calcined at 500°C with better performance in diuron solar degradation were selected to to treat methyl parathion using solar light. Finally, under these conditions, an affinity was found for the dopant ions in titania and in the functional groups of the contaminating molecules (phenylurea and thiophosphate). Solar photodegradation of diuron was more effective with La and Ce, while for methyl parathion, it was Eu at 0.3%.
稀土掺杂TiO2光催化处理农药
稀土掺杂离子可以改善半导体在可见光区的光谱响应。本文研究了稀土离子La、Ce、Nd、Pr、Sm、Eu和Gd在二氧化钛中对太阳光降解Diuron和甲基对硫磷的影响。当掺杂量增加到0.5%以上时,由于光生电子-空穴对复合中心的形成,光活性降低。在500℃下煅烧的催化剂只呈现锐钛矿晶相,掺杂0.1和0.3%的La和Ce的样品在diuron太阳降解中最活跃;然而,当热处理温度提高到800℃时,出现了混合晶相。锐钛矿含量最高的催化剂表现出最好的性能。选择在500℃下煅烧的diuron太阳能降解性能较好的材料,利用太阳光处理甲基对硫磷。最后,在这些条件下,在二氧化钛和污染分子(苯脲和硫代磷酸盐)的官能团中发现了一种亲和力。La和Ce对diuron的太阳光降解效果较好,而对甲基对硫磷的太阳光降解效果为0.3%的Eu。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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