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Degradation Effect and Mechanism of Dinitrotoluene Wastewater by Magnetic Nano-Fe3O4/H2O2 Fenton-like

机译:磁性纳米Fe3O4 / H2O2类Fenton降解二硝基甲苯废水的作用机理

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摘要

The characteristics and influencing factors for dinitrotoluene degradation by nano-Fe3O4-H2O2 were studied, and the nano-scale Fe3O4 catalyst was prepared by the coprecipitation method, with dinitrotoluene wastewater as the degradation object. The results showed that the catalytic reaction system within the pH value range of 1 to 9 could effectively degrade dinitrotoluene, and the optimal pH value was 3; with the increase of catalyst dosage, the degradation efficiency and the catalytic reaction rate of dinitrotoluene grew as well. The optimal catalyst dosage was 1.0g/L when the H2O2 dosage was within the range of 0 to 0.8mL/L; the degradation efficiency and reaction rate grew with the increase of H2O2 dosage. With further increase of H2O2 dosage, degradation efficiency and reaction rate decreased; under the best conditions with the H2O2 dosage of 0.8mL/L, the catalyst concentration of 1g/L and the pH value of 3 at room temperature (25 degrees C), the degradation rate of the 100-mg/L dinitrotoluene in 120min reached 97.6%. Through the use of the probe compounds n-butyl alcohol and benzoquinone, it was proved that the oxidation activity species in the nano-Fe3O4-H2O2 catalytic system were mainly hydroxyl radical (center dot OH) and superoxide radicals (HO2 center dot), based on which, the reaction mechanism was hypothesized.
机译:研究了纳米Fe3O4-H2O2降解二硝基甲苯的特性及影响因素,以二硝基甲苯废水为降解对象,采用共沉淀法制备了纳米级Fe3O4催化剂。结果表明,pH值为1〜9的催化反应体系可以有效降解二硝基甲苯,最适pH值为3。随着催化剂用量的增加,二硝基甲苯的降解效率和催化反应速率也随之提高。当H2O2用量在0-0.8mL / L范围内时,最佳催化剂用量为1.0g / L。随着H2O2用量的增加,降解效率和反应速率也随之增加。随着H2O2用量的进一步增加,降解效率和反应速率降低。在最佳条件下,H2O2用量为0.8mL / L,催化剂浓度为1g / L,在室温(25摄氏度)下pH值为3,在120min内降解100mg / L二硝基甲苯的速率达到97.6%。通过使用探针化合物正丁醇和苯醌,证明纳米Fe3O4-H2O2催化体系中的氧化活性种类主要为羟基自由基(中心点OH)和超氧自由基(HO2中心点)。在此基础上,假设了反应机理。

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