首页> 外文期刊>Journal of Hazardous Materials >Photo-degradation of acid green dye over Co-ZSM-5 catalysts prepared by incipient wetness impregnation technique
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Photo-degradation of acid green dye over Co-ZSM-5 catalysts prepared by incipient wetness impregnation technique

机译:初湿浸渍技术制备的Co-ZSM-5催化剂上酸性绿染料的光降解

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Co-ZSM-5 catalysts with different Co-loadings (2-30 wt.%) were prepared by incipient wetness impregnation method. The prepared solid catalysts were characterized by X-ray diffraction, FTIR, in situ FTIR of pyridine adsorption and surface area measurements. The XRD data presented disintegration in the zeolitic crystalline structure accompanied by an increase in particle size of the prepared solids. New phases, Co_3O_4 and Co_2SiO_4, were detected with increasing the Co-loading, which indicate the strong interaction of cobalt ions with the ZSM-5 zeolite. FTIR study proved the presence of Co ions in stabilized sites inside the ZSM-5 framework. The in situ FTIR of adsorbed pyridine determined the type and relative strength of acidity on the surface of the prepared solids. The acidity switched from B-acid sites to L-acid sites with impregnation of cobalt ions in ZSM-5 zeolite. The acidity decreased with increasing Co-loading, which might be due to the destruction of zeolite framework and presence of new phases such as cobalt silicate and cobalt oxide on the surface. The surface texture characteristics changed with the promotion of ZSM-5 by cobalt ions, since a decrease of surface area, mean pore radius and pore volume was observed. The assessment of the catalytic activity was performed by the use of the photo-degradation of acid green (AG) dye as a probe reaction in presence of H_2O_2 as an oxidant. The pH value controlled the degradation rate since a gradual increase of AG degradation rate was observed with increasing pH value and the optimum H_2O_2 concentration was 61.6 mmol/l. It was found that, the AG degradation rate increased until an optimum value of Co-loading (ca. 10 wt.%), beyond which a monotonic decrease of reaction rate was recognized. The experimental data pointed to the importance of both the cobalt moieties and the zeolite framework structure in the AG degradation reaction.
机译:通过初湿浸渍法制备了具有不同Co负载量(2-30wt。%)的Co-ZSM-5催化剂。通过X射线衍射,FTIR,吡啶吸附原位FTIR和表面积测量对制备的固体催化剂进行了表征。 XRD数据显示出在沸石晶体结构中的崩解,伴随着所制备固体颗粒尺寸的增加。随着钴载量的增加,发现了新的相Co_3O_4和Co_2SiO_4,这表明钴离子与ZSM-5沸石的强相互作用。 FTIR研究证明ZSM-5框架内部稳定位置中存在Co离子。吸附的吡啶的原位FTIR确定了所制备固体表面上酸度的类型和相对强度。随着钴离子在ZSM-5沸石中的浸渍,酸度从B酸位转变为L酸位。随着钴载量的增加,酸度降低,这可能是由于沸石骨架的破坏和表面上新相的出现,例如硅酸钴和氧化钴的存在。由于观察到表面积,平均孔半径和孔体积减小,因此钴离子促进ZSM-5的表面织构特性发生了变化。催化活性的评估是通过在H_2O_2作为氧化剂的存在下使用酸性绿(AG)染料的光降解作为探针反应来进行的。 pH值控制降解速率,因为随着pH值的升高,AG降解速率逐渐增加,最佳H_2O_2浓度为61.6 mmol / l。已发现,AG降解速率增加直至Co-负载的最佳值(约10wt。%),超过该值可确认反应速率单调降低。实验数据指出钴部分和沸石骨架结构在AG降解反应中的重要性。

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