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Advanced Treatment Experiment of Brewing Wastewater

机译:酿造废水的先进治疗实验

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摘要

The decolorization of wastewater treated by biochemical treatment with Fenton catalytic oxidation technology was studied by using Dashaba sauce-flavored brewing wastewater in Erhe Town of Guizhou city as the research object. The results of single factor and orthogonal test show that the dosages of pH, FeSCU and H2O2 in wastewater mainly affect the chromaticity of wastewater, while the dosages of pH, quartz sand in wastewater mainly affect the effect of flocculation and sedimentation. When the initial chromaticity and UV254 of the wastewater are 179 degrees and 1.51 cm"1 respectively, the optimum process parameters are pH 6.5, FeSO4 2.5 mmol/L, H2O2 25.0 mmol/L and quartz sand 3.0 g/L. The effluent chromaticity and UV254 removal rate are 68.06% and 31.78%, and the chromaticity reached the emission limit value required in Table 3 of GB 27631-2011 "Emission Standards for Water Pollutants in Fermented Alcohol and Liquor Industry". Moreover, and the flocculation and sedimentation effect of iron mud is better and the treatment drug consumption is less.
机译:通过在贵州市Erhe镇的古州市古州市镇作为研究对象,研究了用FENTON催化氧化技术治疗的废水的脱色。单一因子和正交试验的结果表明废水中的pH,FESCU和H 2 O 2的剂量主要影响废水的色度,而废水中的pH值,石英砂的剂量主要影响絮凝和沉降的影响。当废水的初始色度和UV254是179度和1.51厘米“1分别,最佳工艺参数是pH值为6.5,硫酸亚铁2.5毫摩尔/ L,H 2 O 2 25.0毫摩尔/ L和石英砂为3.0g / L,该流出物的色度和UV254去除率是68.06%和31.78%,且色度达到GB的27631-2011“排放标准水污染物在发酵酒精和酒工业”表3中所要求的发射限值。此外,和的絮凝和沉降效果铁泥更好,治疗药物消耗量较少。

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