Optimization of the Coagulation-flocculation Process Using Ferric Chloride and Phosphate for the Reduction of Contaminants in the Slaughterhouses Wastewater

A. Núñez, K. Palacio, A. Campos, J. Salinas, J. A. M. Pisfil, R. S. Farfán, S.A Trujillo Perez, A. A. Paz, J.A. Poma García
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Abstract

In this work, the coagulation-flocculation process was optimized using ferric chloride and phosphate for the reduction of pollutants in the wastewater from the Conchucos S.A., Lima. Parameters were measured in percentage reduction of chemical oxygen demand (COD), turbidity (NTU) and total phosphorus (PT mg/L), adding ferric chloride as coagulant and potassium dihydrogen phosphate as flocculant. The effects of four independent variables were investigated: ferric chloride dose (500-700 ppm), phosphate dose (700-900 mg/L), fast agitation speed (250-320 rpm) and slow agitation speed (90-100 rpm). The experimental data were optimized by the response surface method using a central composite design. The results show that the statistical models obtained F-values of 3.33, 4.27 and 4.16 for the percent reduction of COD, turbidity and total phosphorus, respectively. Furthermore, the statistical models developed to predict the responses were confirmed by significant probability values (p<0.05). On the fit of the models, an R2 of 0.61, 0.66 and 0.67 are shown for COD, turbidity and total phosphorus percentage, respectively. The optimum conditions were found experimentally at 700 ppm of ferric chloride dose, 900 ppm of phosphate, 320 rpm fast speed and 100 rpm for a reduction of 75.46% of COD, 83.47% of turbidity and 44.08% of total phosphorus presenting a desirability of 0.7.
氯化铁-磷酸盐混凝-絮凝工艺对屠宰场废水中污染物的去除效果优化
采用氯化铁和磷酸盐对混凝-絮凝工艺进行了优化,以减少利马conchuos sa废水中的污染物。以氯化铁为混凝剂,磷酸二氢钾为絮凝剂,测定了化学需氧量(COD)、浊度(NTU)和总磷(PT mg/L)的降低率。考察了氯化铁剂量(500 ~ 700 ppm)、磷酸盐剂量(700 ~ 900 mg/L)、快搅拌速度(250 ~ 320 rpm)和慢搅拌速度(90 ~ 100 rpm)四个自变量的影响。采用响应面法,采用中心复合设计对实验数据进行优化。结果表明,统计模型对COD、浊度和总磷的降低率的f值分别为3.33、4.27和4.16。此外,用于预测反应的统计模型得到显著概率值(p<0.05)的证实。在模型拟合上,COD、浊度和总磷百分比的R2分别为0.61、0.66和0.67。实验结果表明,在氯化铁700 ppm、磷酸盐900 ppm、转速320 rpm和转速100 rpm的条件下,COD降低75.46%,浊度降低83.47%,总磷降低44.08%,最佳去除率为0.7。
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