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首页> 外文期刊>Reaction kinetics,mechanisms and catalysis >A kinetic comparative study of azo dye decolorization by catalytic wet peroxide oxidation using Fe-Y zeolite/H2O2 and photooxidation using UV/H2O2
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A kinetic comparative study of azo dye decolorization by catalytic wet peroxide oxidation using Fe-Y zeolite/H2O2 and photooxidation using UV/H2O2

机译:Fe-Y沸石/ H2O2催化湿式过氧化催化偶氮染料脱色和UV / H2O2催化光氧化的动力学比较研究

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摘要

A comparative study between the catalytic wet peroxide oxidation (CWPO: Fe(III)-Y zeolite/H2O2) and photooxidation (PO: UV/H2O2) of three different azo dyes-namely, reactive yellow, reactive red, and methyl orange-was conducted. Compared to CWPO, PO demonstrated higher initial reaction rates and final conversions. The contributions of H2O2, UV, UV/H2O2, Fe-Y zeolite, and Fe-Y zeolite/H2O2 to the decolorization of reactive yellow were investigated and the results showed that treatment with UV/H2O2 was the most effective process for the color removal. The effect of [H2O2](0), UV irradiation power, [Fe-Y zeolite], and the reusability of the catalyst were also studied. The catalyst was found to be reusable, but with loss in its catalytic activity. An optimum [H2O2](0) existed in both the PO and CWPO processes. However, this was higher in the latter process. The extent of decolorization increased as the UV irradiation power and [Fe-Y zeolite] increased, but there was a limit in the second case. In addition, the decolorization kinetics of the reactive yellow in both processes were investigated. It was concluded that PO followed an apparent first order kinetic model while CWPO followed the Chu kinetic model. Furthermore, a pseudo-second order rate law, which could be used in continuous flow reactor design equations, was proposed and verified to describe the CWPO rate of reaction.
机译:三种不同偶氮染料即活性黄,活性红和甲基橙的催化湿式过氧化物氧化(CWPO:Fe(III)-Y沸石/ H2O2)与光氧化(PO:UV / H2O2)的比较研究进行。与CWPO相比,PO表现出更高的初始反应速率和最终转化率。研究了H2O2,UV,UV / H2O2,Fe-Y沸石和Fe-Y沸石/ H2O2对活性黄脱色的贡献,结果表明,用UV / H2O2处理是最有效的脱色方法。 。还研究了[H2O2](0),UV照射功率,[Fe-Y沸石]和催化剂可重复使用性的影响。发现该催化剂是可重复使用的,但是其催化活性下降。在PO和CWPO过程中都存在最佳的[H2O2](0)。但是,在后面的过程中,这更高。脱色程度随着紫外线照射力和[Fe-Y沸石]的增加而增加,但是在第二种情况下是有限度的。另外,还研究了两种方法中活性黄的脱色动力学。结论是:PO遵循明显的一阶动力学模型,而CWPO遵循Chu动力学模型。此外,提出了伪二阶速率定律,该定律可用于连续流反应器设计方程中,并得到了描述,以描述反应的CWPO速率。

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