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Multiple response optimization of the coagulation process for upgrading the quality of effluent from municipal wastewater treatment plant

机译:混凝过程的多响应优化,可提高市政废水处理厂废水的质量

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To meet the high quality standard of receiving water, the coagulation process using polyferric chloride (PFC) was used to further improve the water quality of effluent from wastewater treatment plants. Uniform design (UD) coupled with response surface methodology (RSM) was adopted to assess the effects of the main influence factors: coagulant dosage, pH and basicity, on the removal of total organic carbon (TOC), NH4(+)-N and PO4(3-)-P. A desirability function approach was used to effectively optimize the coagulation process for the comprehensive removal of TOC, NH4(+)-N and PO4(3-)-P to upgrade the effluent quality in practical application. The optimized operating conditions were: dosage 28?mg/L, pH 8.5 and basicity 0.001. The corresponding removal efficiencies for TOC, NH4(+)-N and PO4(3-)-P were 77.2%, 94.6% and 20.8%, respectively. More importantly, the effluent quality could upgrade to surface water Class V of China through coagulation under optimal region. In addition, grey relational analysis (GRA) prioritized these three factors as: pH??basicity??dosage (for TOC), basicity??dosage??pH (for NH4(+)-N), pH??dosage??basicity (for PO4(3-)-P), which would help identify the most important factor to control the treatment efficiency of various effluent quality indexes by PFC coagulation.
机译:为了满足接收水的高质量标准,使用了聚氯化铁(PFC)的混凝工艺进一步改善了废水处理厂的出水水质。采用统一设计(UD)和响应表面方法(RSM)来评估主要影响因素的影响:凝结剂用量,pH和碱性对去除总有机碳(TOC),NH4(+)-N和PO4(3-)-P。为了使废水中的TOC,NH4(+)-N和PO4(3-)-P全面去除,采用了一种期望函数方法来有效优化混凝工艺,以提高实际应用中的出水水质。优化的操作条件为:剂量28?mg / L,pH 8.5,碱度0.001。 TOC,NH4(+)-N和PO4(3-)-P的相应去除效率分别为77.2%,94.6%和20.8%。更重要的是,通过在最佳区域内进行混凝,可以将出水水质提高到中国地表水V级。另外,灰色关联分析(GRA)优先考虑这三个因素:pH值>碱性>剂量(对于TOC),碱度>剂量> pH(对于NH4(+)-N),pH? >“剂量”>“碱性”(对于PO4(3-)-P),这将有助于确定最重要的因素,以通过PFC混凝控制各种废水质量指标的处理效率。

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