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首页> 外文期刊>Nature environment and pollution technology >The Kinetic Model for Decolourization of Commercial Direct Blue 2 Azo Dye Aqueous Solution by the Fenton Process and the Effect of Inorganic Salts
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The Kinetic Model for Decolourization of Commercial Direct Blue 2 Azo Dye Aqueous Solution by the Fenton Process and the Effect of Inorganic Salts

机译:芬顿工艺及无机盐的脱色商业直接蓝2氮杂染料水溶液的动力学模型及其对无机盐的影响

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The study of Fenton’s oxidation and degradation of Direct Blue 2 (DB2) as the commercial azo dye in synthetic aqueous solution has been accomplished. The optimum oxidative degradation reaction conditions were achieved as follows: pH = 3.50, [H2O2] = 1.1×10-3 M, [Fe2+] = 1.0×10-4 M for [DB 2] = 1.0×10-4 M. Under optimal conditions, 80% of decolouration efficiency was carried out within 15 min of reaction. An engagement between the kinetics of the colour removal rates (ln k2) versus Lazo bond was carried out at the different pH levels. The colour removal rate was increased with decreasing of Lazo bond, in the order of pH: 3.5 > 5.0 > 2.5. The second-order kinetic model provided the best correlation of the data. Effects of various inorganic anions (such as Cl–, SO42-, CO32-, etc.) was studied to enhance the oxidation efficiency of Fenton reaction. Advanced oxidation technologies were developed in this study especially with dealing with contaminated textile wastewater over the use of chemical treatment.
机译:完成了芬顿氧化和直接蓝2(DB2)作为合成水溶液中商业偶氮染料的氧化和降解的研究。如下实现了最佳氧化降解反应条件:pH = 3.50,[H 2 O 2] = 1.1×10-3m,[Fe2 +] = 1.0×10-4m,用于[DB 2] = 1.0×10-4米最佳条件,80%的脱色效率在15分钟内进行。在不同的pH水平下进行颜色去除速率(LN K2)与Lazo键之间的动力学之间的接合。随着pH值:3.5> 5.0> 2.5的顺序,Lazo键的降低增加了颜色去除率。二阶动力学模型提供了数据的最佳相关性。研究了各种无机阴离子(如Cl-,SO42-,CO 32等)的影响,提高了芬顿反应的氧化效率。本研究开发了先进的氧化技术,特别是在使用化学处理上处理污染的纺织废水。

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