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Sol-Gel Hydrothermal Synthesis and Visible Light Photocatalytic Degradation Performance of Fe/N Codoped TiO2 Catalysts

机译:溶胶 - 凝胶水热合成和可见光光催化的Fe / N类别TiO2催化剂的降解性能

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摘要

Using Ti(OC4H9)4 as a precursor, Fe(NO3)3⋅9H2O as the source of iron, and NH4NO3 as the source of nitrogen, an Fe/N codoped TiO2 catalyst was prepared using a sol-gel hydrothermal method. The as-prepared powders were characterized using X-ray powder diffraction, electron spectroscopy for chemical analysis, Fourier-transform infrared spectroscopy, and ultraviolet-visible spectrophotometry. Fe and N codoping resulted in decreased crystallite size and increased specific surface area. Results of the photocatalytic degradation of acid orange 7 (AO7) in a continuous-flow fluidized-bed reactor indicated that the maximum decolorization (more than 90%) of AO7 occurred with the Fe/N-TiO2 catalyst (dosage of 20 g/L) when a combination of visible light irradiation for 10 h HRT (hydraulic retention time), and a heterogeneous system was used. The AO7 degradation efficiency was considerably improved by increasing the hydraulic retention time from 2.5 to 10 h or by reducing the initial AO7 concentration from 300 to 100 mg/L. The reaction rate increased with the light intensity and the maximum value occurred at 35 mW/cm2; moreover, the efficiency of the AO7 degradation increased when the pH decreased with maximum efficiency at pH 3.
机译:使用Ti(OC 4H9)4作为前体,Fe(NO3)3 1 9 H 2 O作为铁源,NH 4 NO 3作为氮源,使用溶胶 - 凝胶水热法制率为Fe / N类催化剂。用X射线粉末衍射,电子光谱进行化学分析,傅里叶变异红外光谱和紫外线可见分光光度法,表征为制备的粉末。 Fe和N编码导致微晶尺寸减小和增加的比表面积。连续流动床反应器中酸橙7(AO7)的光催化降解结果表明,使用Fe / N-TiO2催化剂(剂量为20g / L的最大脱色(超过90%)AO7 )当可见光照射的组合10小时HRT(液压保留时间)和异质系统时。通过将液压保留时间从2.5〜10小时增加或通过将初始AO7浓度从300〜100mg / L的初始AO7浓度降低,可以显着提高AO7降解效率。反应速率随着光强度的增加,最大值发生在35mW / cm2;此外,当pH在pH3的最大效率下,当pH降低时,AO7降解的效率增加。

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