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Effect of operational parameters and kinetic study on the photocatalytic degradation of m-cresol purple using irradiated ZnO in aqueous medium

机译:操作参数与动力学研究对水性辐射辐射ZnO辐射ZnO光催化降解M-甲酚紫色的影响

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摘要

A detailed investigation of photocatalytic degradation of m-cresol purple (mCP) dye has been carried out in aqueous heterogeneous medium containing zinc oxide (ZnO) as the photocatalyst in a batch reactor. The effects of some parameters such as amount of photocatalyst, dye concentration, initial pH of solution, ethanol concentration and temperature were examined. The most efficient pH in removal of the dye with photocatalytic degradation and dark surface adsorption processes was observed to be 8. The adsorption constant calculated from the linear transform of the Langmuir isotherm model was similar to that obtained in photocatalytic degradation at pH = 8; hence, the Langmuir–Hinshelwood model was found to be accurate for photocatalytic degradation at this pH. Dark surface adsorption and degradation efficiency were increased by enhancement in the temperature at the optimum pH of 8 and the apparent activation energy (Ea) for the photocatalytic degradation of mCP was determined as 14.09 kJ/mol at this pH. The electrical energy consumption per order of magnitude (EEO) for photocatalytic degradation of mCP was also determined.
机译:在含有氧化锌(ZnO)的含氧化锌(ZnO)的水性异质介质中,在批量反应器中的光催化剂进行了对光催化降解的详细研究。研究了一些参数,如光催化剂,染料浓度,溶液初始pH值,乙醇浓度和温度的影响。观察到以光催化降解和深色表面吸附过程除去染料中最有效的pH。是8.根据朗米尔等温模型的线性变换计算的吸附常数类似于在pH = 8的光催化降解中获得的吸附常数。因此,发现Langmuir-Hinshelwood模型是在该pH下的光催化降解的准确性。通过在8的最佳pH的温度下提高暗表面吸附和降解效率,并且在该pH下测定为MCP的光催化降解的表观活化能量(EA)为14.09kJ / mol。还确定了用于光催化降解MCP的每阶数(EEO)的电能消耗。

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