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Evaluation of surface phenomena involved in photocatalytic degradation of Acid Blue 9 by TiO_2 catalysts of single and mixed phase - A theoretical and experimental study

机译:单相和混合相TiO_2催化光催化降解酸性蓝9的表面现象-理论与实验研究。

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The performance of two TiO2 catalysts, anatase powder (ALD) and Degussa P25 (DP25), was evaluated through photodegradation of Acid Blue 9 (AB9). The results were used to exhibit a sort of selectivity identified in these systems. The photodegradation was performed through a batch annular non-sleeve photoreactor. The kinetic constant values (k) and discolouration profiles exhibited a sort of catalytic selectivity. The results were explained by surface phenomena approach through experimental and theoretical means, employing UV-Vis, X-ray diffraction, Z potential, DFT-Koopman's descriptors and the catalyst total binding energy ((E-Bin,E-T)(i,j)). This contribution propose (E-Bin,E-T)(i,j) equation, which involves theoretical (binding energies (E-binding)) and experimental (relative intensity of the main crystalline catalyst planes) variables. The photocatalysis using ALD showed the highest k; but the photocatalysis with DP25 exhibited a linear discolouration profile, indicating a complete degradation of AB9 and their by-products. The k values agreed with (E-Bin,E-T)(i,j)). so the performance of TiO2 catalysts was attributed to Ebinding; these energies are product of the hydrogen bonding between the catalyst crystalline planes and AB9, in aqueous medium. Also, two different AB9 pathways were identified through DFT-Koopman's descriptors. The theoretical tools showed in this contribution are useful to understand the catalyst affinity and degradation pathways of pollutants.
机译:通过酸性蓝9(AB9)的光降解来评估两种TiO2催化剂,即锐钛矿粉(ALD)和Degussa P25(DP25)的性能。结果用于显示在这些系统中鉴定出的一种选择性。通过间歇环形无袖光反应器进行光降解。动力学常数值(k)和变色曲线显示出一种催化选择性。通过实验和理论手段,通过表面现象方法,使用紫外线-可见光,X射线衍射,Z势,DFT-Koopman描述子和催化剂总结合能((E-Bin,ET)(i,j) )。该贡献提出了(E-Bin,E-T)(i,j)方程,该方程涉及理论(结合能(E-结合))和实验(主要结晶催化剂平面的相对强度)变量。使用ALD的光催化显示出最高的k。但是DP25的光催化表现出线性的变色曲线,表明AB9及其副产物完全降解。 k值与(E-Bin,E-T)(i,j)一致。因此TiO2催化剂的性能归因于Ebinding;这些能量是在水性介质中催化剂晶面和AB9之间的氢键合产物。另外,通过DFT-Koopman的描述符识别了两种不同的AB9途径。该贡献中显示的理论工具有助于理解催化剂的亲和力和污染物的降解途径。

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