Experimental Study of Influencing Factors and Kinetics in Catalytic Removal of Methylene Blue with TiO 2 Nanopowder

Marziyeh Salehi, H. Hashemipour, M. Mirzaee
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引用次数: 120

Abstract

In this research, degradation of methylene blue as a dye pollutant was investigated in the presence of TiO2 nanopowders using photolysis and sonolysis systems separately and simultaneously. Effect of different parameters such as catalyst dosage, initial concentration of dye, UV power, pH and type of catalyst on the removal efficiency was ascertained. The results showed that basic pH is proper for the photocatalytic removal of the dye. Furthermore higher UV power and lower initial concentration of dye leads to higher removal percent. Moreover TiO2 showed more photocatalytic activity than ZnO in the nanopowder form. The experimental kinetic data followed the pseudo-first order model in both photocatlytic and sonophotocatalytic processes but the rate constant of sonophotocatalysis is higher than it at photocatalysis process. Fi- nally the reaction order of the rate law respect to nanocatalyst dosage in photocatalysis process is obtained 1.45. High acti- vation energy of this process shows its high sensitivity to temperature.
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纳米二氧化钛粉体催化去除亚甲基蓝的影响因素及动力学实验研究
在本研究中,研究了TiO2纳米粉末存在下,分别使用光解和声解系统同时降解亚甲基蓝作为染料污染物。考察了催化剂用量、染料初始浓度、UV功率、pH值和催化剂种类等参数对去除率的影响。结果表明,碱性pH适合光催化脱除染料。此外,较高的紫外线功率和较低的染料初始浓度可以提高去除率。此外,纳米粉末形式的TiO2比ZnO表现出更强的光催化活性。光催化和声光催化的实验动力学数据均符合准一级模型,但声光催化的速率常数高于光催化的速率常数。最后得到光催化过程中纳米催化剂用量对反应速率规律的影响顺序为1.45。该工艺活化能高,表明其对温度的敏感性高。
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