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Influence of gamma-irradiation on the photocatalytic activity of Degussa P25 TiO2

机译:γ辐照对Degussa P25 TiO2光催化活性的影响

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The purpose of this article is to study the influence of gamma irradiation on the sorption capacity and photocatalytic activity of commercially available TiO2 Degussa P25. The photocatalyst was gamma-irradiated at ambient temperature with doses 8–60 kGy (137Cs, dose rate 2 kGy/24 h) and then stored until analysis/tests in liquid N2. X-ray diffraction, SEM, TEM, EPR, and UV–VIS reflectance spectrometry were applied to explore phase composition, crystal cell parameters, crystallite size, textural properties (grain size, and specific surface area), the presence of paramagnetic centers, and UV/VIS absorption of the initial and irradiated samples. The sorption capacity and photocatalytic activity of the products under UVA (17 W, λ max = 365 nm) and sunlight irradiation were studied against Malachite Green 10−5 M aqueous solution, applied as a model pollutant. The sorption capacity varied non-monotonically with the irradiation dose, with clearly expressed maximum and minimum seen at irradiation with doses of 28 and 60 kGy, respectively. The maximum in the photocatalytic activity, both at UV and sunlight illumination, is observed after the dose of 28 kGy is applied; at these conditions, the pollutant degradation rate constant is 1.7/2.7-times higher than the value for the non-irradiated product. The explanation of the obtained results is related mainly to the type and concentration of gamma-generated defects in catalysts, and especially the effect of Ti3+ is discussed. Some of the considered factors may act in opposite directions, causing an extreme point in the relation between the photocatalytic activity and the gamma radiation dose.
机译:本文的目的是研究γ射线对市售TiO2 Degussa P25的吸附能力和光催化活性的影响。在环境温度下以8-60 kGy的剂量(137 Cs,剂量率2 kGy / 24 h)对光催化剂进行伽玛射线辐照,然后将其存储到液态N2中进行分析/测试。 X射线衍射,SEM,TEM,EPR和UV-VIS反射光谱用于研究相组成,晶胞参数,微晶尺寸,组织性质(晶粒尺寸和比表面积),顺磁性中心的存在以及初始和辐照样品的UV / VIS吸收。以孔雀石绿10-5 M水溶液为模型污染物,研究了UVA(17 W,λmax = 365 nm)和阳光照射下产物的吸附能力和光催化活性。吸附能力随辐照剂量非单调变化,分别以28 kGy和60 kGy的辐照量清楚地表示出最大和最小。施加28 kGy剂量后,在紫外线和日光照射下均观察到最大的光催化活性。在这些条件下,污染物降解率常数比未辐照产品的值高1.7 / 2.7倍。所得结果的解释主要与催化剂中γ-生成缺陷的类型和浓度有关,特别是讨论了Ti3 +的作用。一些被考虑的因素可能在相反的方向上起作用,从而在光催化活性和伽马辐射剂量之间的关系上产生了一个极端。

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    《Journal of Materials Science》 |2012年第12期|p.4936-4945|共10页
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    Faculty of Chemistry, University of Sofia, 1, J. Bourchier Blvd., 1164, Sofia, Bulgaria;

    Faculty of Chemistry, University of Sofia, 1, J. Bourchier Blvd., 1164, Sofia, Bulgaria;

    Faculty of Chemistry, University of Sofia, 1, J. Bourchier Blvd., 1164, Sofia, Bulgaria;

    Faculty of Chemistry, University of Sofia, 1, J. Bourchier Blvd., 1164, Sofia, Bulgaria;

    Faculty of Chemistry, University of Sofia, 1, J. Bourchier Blvd., 1164, Sofia, Bulgaria;

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