首页> 外文期刊>Ozone: Science & Engineering: The Journal of the International Ozone Association >Combination of Chemical Coagulation and Photo-Fenton Oxidation Process for the Treatment of Beet Sugar Industry Wastewater: Optimization of Process Conditions by Response Surface Methodology
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Combination of Chemical Coagulation and Photo-Fenton Oxidation Process for the Treatment of Beet Sugar Industry Wastewater: Optimization of Process Conditions by Response Surface Methodology

机译:化学凝固和光芬氧化过程的组合治疗甜菜糖工业废水:响应面法优化工艺条件

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摘要

The beet sugar industry generates large volumes of wastewater with high levels of chemical oxygen demand (COD) and color content, which are discharged into the nearby environment without adequate treatment. The aim of this study was to investigate the treatment possibility of this wastewater by using the photo-Fenton oxidation combined with a coagulation process. Central composite design and response surface methodology were used to evaluate the relationships between color and COD reduction and the photo-Fenton oxidation parameters (i.e. Fenton's reagent dosage, pH, and reaction time). The combined treatment results showed 59% of COD and 83.9% of color removal were obtained at optimum conditions (pH: 6.2; Fe2+ dosage: 20 ppm; H2O2 dosage: 1500 ppm; and reaction time of 15 min). Finally, the results of gel permeation chromatography showed that low molecular weight fraction of the wastewater impurities is more degraded than high molecular weight fraction during oxidation/coagulation process. Therefore, the results obtained from this study showed that an appropriate combined method for the treatment of beet sugar industry wastewater can be designed and implemented.
机译:甜菜糖行业产生大量的废水,具有高水平的化学需氧量(COD)和颜色含量,其在附近的环境中被排放到附近的环境中而无需足够的处理。本研究的目的是通过使用光芬氧化与凝固过程结合的光芬氧化来研究该废水的治疗可能性。中央复合设计和响应面方法用于评估颜色和鳕鱼之间的关系和光芬氧化参数(即FENTON的试剂剂量,pH和反应时间)。组合治疗结果显示59%的COD和83.9%的颜色去除在最佳条件下获得(pH:6.2; FE2 +剂量:20ppm; H2O2剂量:1500ppm;和15分钟的反应时间)。最后,凝胶渗透色谱的结果表明,在氧化/凝血过程中,废水杂质的低分子量分数比高分子量级分更加降低。因此,从该研究获得的结果表明,可以设计和实施适当的用于治疗甜菜糖工业废水的合并方法。

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