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首页> 外文期刊>Journal of environmental sciences >Degradation kinetics and mechanism of trace nitrobenzene by granular activated carbon enhanced microwave/hydrogen peroxide system
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Degradation kinetics and mechanism of trace nitrobenzene by granular activated carbon enhanced microwave/hydrogen peroxide system

机译:颗粒状活性炭增强微波/过氧化氢体系降解痕量硝基苯的动力学及其机理

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The kinetics of the degradation of trace nitrobenzene (NB) by a granular activated carbon (GAC) enhanced microwave (MW)/hydrogen peroxide (H_2O_2) system was studied. Effects of pH, NB initial concentration and tert-butyl alcohol on the removal efficiency were examined. It was found that the reaction rate fits well to first-order reaction kinetics in the MW/GAC/H_2O_2 process. Moreover, GAC greatly enhanced the degradation rate of NB in water. Under a given condition (MW power 300 W, H_2O_2 dosage 10 mg/L, pH 6.85 and temperature (60 ± 5)℃), the degradation rate of NB was 0.05214 min~(-1) when 4 g/L GAC was added. In general, alkaline pH was better for NB degradation; however, the optimum pH was 8.0 in the tested pH value range of 4.0-12.0. At H_2O_2 dosage of 10 mg/L and GAC dosage of 4 g/L, the removal of NB was decreased with increasing initial concentrations of NB, indicating that a low initial concentration was beneficial for the degradation of NB. These results indicated that the MW/GAC/H_2O_2 process was effective for trace NB degradation in water. Gas chromatography-mass spectrometry analysis indicated that a hydroxyl radical addition reaction and dehydrogenation reaction enhanced NB degradation.
机译:研究了颗粒状活性炭(GAC)增强的微波(MW)/过氧化氢(H_2O_2)体系对痕量硝基苯(NB)的降解动力学。研究了pH,NB初始浓度和叔丁醇对去除效率的影响。发现反应速率与MW / GAC / H_2O_2过程中的一级反应动力学非常吻合。此外,GAC大大提高了水中NB的降解率。在给定条件下(MW功率300 W,H_2O_2用量10 mg / L,pH 6.85,温度(60±5)℃),加入4 g / L GAC时NB的降解速率为0.05214 min〜(-1)。 。通常,碱性pH值对NB降解更好。但是,在测试的pH值4.0-12.0范围内,最佳pH为8.0。在H_2O_2剂量为10 mg / L和GAC剂量为4 g / L时,NB的去除随NB初始浓度的增加而降低,这表明较低的初始浓度有利于NB的降解。这些结果表明,MW / GAC / H_2O_2工艺对水中痕量NB降解有效。气相色谱-质谱分析表明,羟基自由基加成反应和脱氢反应促进了NB的降解。

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