Fenton法降解有毒偶氮染料(AO7)

A. K. Haritash, Ashish Sharma, M. Verma
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引用次数: 18

摘要

. 研究了异三官能团活性染料酸橙7在光- fenton条件下的深度氧化。Fenton法对酸性橙7染料的脱色与过氧化氢浓度、硫酸亚铁、pH值和接触时间有关。当染料浓度为50 mg/L, COD为340 mg/L, pH为3.0时,采用23因子设计评价pH、Fe(II)和h2o2浓度这三个关键因素的影响。优化条件下的响应函数为去色;pH 3.0, [Fe(II)] 40.83 mg/L, [h2o2] 4.97 mmol/L;13.6分钟的处理,100%脱色。处理废水的最终COD为零,这表明AOP是具有AO7的废水的脱色和染料降解/矿化的潜在有用过程。完全脱色的最短接触时间为5 mmol/l h2o2浓度。feso4 (mg/l)浓度的增加导致完全脱色时间的缩短。采用Box-Behnken设计对工艺变量进行优化。pH(3-5)、h2o2 (4-6 mmol/l)、feso4 (30-46 mg/l)和接触时间(5-15分钟)的最大值和最小值。统计分析显示回归系数(r2)为0.88,表明模型拟合良好。计算出的f值高于表列值,证实了模型的显著性。根据学生的t检验,硫酸亚铁、pH和接触时间对酸橙7的脱色率有正影响。
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Degradation of toxic azo dye (AO7) using Fenton´s process
. This study aimed at advanced oxidation of hetero tri-functional reactive dye Acid orange 7 using photo-Fenton conditions in a lab-scale experiment. Decolourisation of Acid Orange 7 dye by Fenton’s process was dependent on concentration of Hydrogen peroxide, Ferrous sulphate, pH, and contact time. A 2 3 factorial design was used to evaluate the effects of these key factors: pH, Fe(II), and H 2 O 2 concentration, for a dye concentration of 50 mg/L with COD of 340 mg/L at pH 3.0. The response function was removal of colour under optimised conditions; pH 3.0, [Fe(II)] 40.83 mg/L, [H 2 O 2 ] 4.97 mmol/L; 13.6 min. of treatment resulting in 100% colour removal. The final COD of treated wastewater was nil suggesting that AOP is a potentially useful process of color removal and dye degradation/mineralisation of effluent having AO7. Minimum contact time for complete decolourisation was at 5 mmol/l H 2 O 2 concentration. Increase in FeSO 4 (mg/l) concentration resulted in decrease of time for complete decolourisation. Box-Behnken Design was used to optimize the process variables. Maximum and minimum levels of pH (3-5), H 2 O 2 (4-6 mmol/l), FeSO 4 (30-46 mg/l) and contact time (5-15 minutes) were used. The statistical analysis revealed a value of 0.88 for coefficient of regression (R 2 ) indicating a good fit of model. Calculated F-value was found higher than the tabulated value confirming to significance of the model. Based on student’s t-test, Ferrous sulphate, pH, and contact time have a positive effect on the percent decolourisation of Acid Orange 7.
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