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Photo-catalytic Degradation of Chestnut Tannin Extract on Nano-TiQ2 Thin Film

机译:纳米TIQ2薄膜上栗子单宁提取物的光催化降解

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Nano-TiCh film photo-catalyst was prepared by sol-gel method using tetrabutyl titanate as the precursor The surface morphology of the photo-catalyst film was observed by AFM; the XRD pattern of the photo-catalyst was obtained using a powder diffractometer, the photo-catalytic degradation of chestnut tannin extract (CTE) in water was investigated in the reactor with UV lamp as thejjght source. The study results indicated that the photo-catalytic degradation of CTE follows Langmuir-Hinshelwood kinetic equation, which means photo-catalytic degradation of CTE conforms to zero order H-L kinetic equation at high concentration and conforms to first order H-L kinetic equation at low concentration. External addition of H2O2 shows a high acceleration for the degradation of CTE, but it is limited because of the amount of light-induced electron Effects of the photo-catalytic degradation of CTE were more favorable at initial pH far from isoelectric point of CTE; the degradation speed under alkaline condition was higher than that uno!er acidity condition.
机译:通过使用四丁酯的钛酸溶胶法制备纳米TICH薄膜光催化剂,因为前体通过AFM观察到光催化剂膜的表面形态;使用粉末衍射仪获得光催化剂的XRD图案,在用UV灯作为JJGGT源的反应器中研究了栗子单宁提取物(CTE)在水中的光催化降解。研究结果表明,CTE的光催化降解遵循Langmuir-Hinshelwood动力学方程,这意味着CTE的光催化降解以高浓度符合零阶H-L动力学方程,并以低浓度符合第一阶H-L动力学方程。外部加入H 2 O 2显示了CTE的降解的高加速,但由于CTE的光催化降解的光致电子效应的量,在初始pH远离CTE的初始pH中更有利;碱性条件下的降解速度高于UNO!ER酸度条件。

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