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Comparison of ozonation and coagulation decolorization methods in real textile wastewater

机译:真实纺织废水中臭氧氧化和混凝脱色方法的比较

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Several treatment approaches such as ozonation, metal coagulation, (ferric chloride and alum), polymer treatment (Polyethylene polyamine, PP, and Cyanoguanidine Polymer, CP) and their combinations for decolarization of biologically treated textile wastewater (BTTWW) were applied. Wastewater samples were taken from effluent stream of an activated sludge treatment system in a synthetic-cotton textile factory. Absorbance, color, chemical oxygen demand (COD) measurements were done to determine optimum conditions. At coagulation experiments, neither ferric chloridenoralum decreased the color parameter below the discharge standard. Ozonation was found to be efficient in removing color from BTTWW as color degradation reached steady-state after 10 min. However color standard was met at higher ozone dosages (20 min). Polymer coagulation (200 mg/L) was found to be practical in removing color from BTTWW. Ozonation prior to polymer coagulation (pre-ozonation) not only improved the color removal efficiency but also decreased the required polymer dosage by 75%. Operational costs of ozonation, PP and pre-ozonation-subsequently PP were found to be 0.37 (sic)/m(3), 0.50 (sic)/m(3), and 0.26 (sic)/m(3), respectively.
机译:应用了几种处理方法,例如臭氧化,金属混凝(氯化铁和明矾),聚合物处理(聚乙烯多胺,PP和氰基胍聚合物,CP)及其组合,以对生物处理过的纺织废水(BTTWW)进行脱色处理。废水样本是从合成棉纺织厂的活性污泥处理系统的废水中采集的。进行吸光度,颜色,化学需氧量(COD)测量以确定最佳条件。在混凝实验中,氯化铁唾液酸都不会使颜色参数降低到排放标准以下。发现臭氧化可有效地从BTTWW中去除颜色,因为10分钟后颜色降解达到了稳态。但是,在更高的臭氧剂量下(20分钟)可以达到颜色标准。发现聚合物凝结(200 mg / L)对于去除BTTWW中的颜色是可行的。聚合物凝结(预臭氧化)之前的臭氧化不仅提高了脱色效率,而且使所需的聚合物用量减少了75%。臭氧化,PP和预臭氧化-随后是PP的运营成本分别为0.37(sic)/ m(3),0.50(sic)/ m(3)和0.26(sic)/ m(3)。

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