响应面法优化聚合硫酸铁铝的制备及应用
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国家自然科学基金(51078366);国家重大科技专项水体污染控制与治理(2009ZX07315-002);重庆市工业发展资金(产研专项)项目(10-cxy-09)


Optimization of Preparation and Application of Polymeric Aluminum Ferric Sulfate Coagulant by Response Surface Analysis
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    摘要:

    以七水硫酸亚铁和硫酸铝(工业级)为原料,用直接氧化法制备新的水处理剂——聚合硫酸铁铝(polymeric aluminum ferric sulfate, PAFS),在单因素的基础上,根据Box-Behnken试验设计原理,运用响应面分析和优化适应混凝处理生活污水的PAFS的制备工艺。探讨了反应温度、时间、SO4 2-/Fe、NO3 -/Fe、Al/Fe、PO4 3-/Fe、OH/Fe摩尔比对生活污水TP去除率的影响。结果表明:PAFS的最佳制备工艺条件为反应温度、时间和SO4 2-/Fe、NO3 -/Fe、Al/Fe、PO4 3-/Fe、OH/Fe摩尔比分别为84℃、48 min、0.38、0.47、0.11、0.14、0.03。在此条件下制备的PAFS对生活污水TP去除率为98.67%,与模型预测值拟合性良好,偏差为0.38%。同时,生活污水的COD去除率达到79.13%,浊度去除率达到98.12%。

    Abstract:

    A new composite coagulant polymeric aluminum ferric sulfate (PAFS) was synthesized using FeSO4·7H2O and Al2(SO4)3 (industrial) by the direct oxidation method. The optimization of preparation process of PAFS was investigated using single factor and response surface methodology based on Box-Behnken central design. Parameters affecting the coagulant performance, such as reaction temperature, time, SO4 2-/Fe, NO3 -/Fe, Al/Fe, PO4 3-/Fe, and OH/Fe molar ratios were examined. The results show that when temperature, time, SO4 2-/Fe, NO3 -/Fe, Al/Fe, PO4 3-/Fe, and OH/Fe molar ratios were 84℃, 48 min, 0.38, 0.47, 0.11, 0.14, 0.03, respectively, it is the optimum conditions for synthesis. In this condition TP removal was 98.67%, and the experimental results were in good agreement with the predicted values of the model equation with 0.38% deviation. Furthermore, COD (chemical oxygen demand) and turbidity removal efficiency were 79.13% and 98.12%, respectively.

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蒋贞贞,郑怀礼,谭铭卓,朱俊任,关庆庆,冯力,陈伟.响应面法优化聚合硫酸铁铝的制备及应用[J].土木与环境工程学报(中英文),2013,35(3):106-114. Jiang Zhenzhen, Zheng Huaili, Tan Mingzhuo, Zhu Junren, Guan Qingqing, Feng Li, Chen Wei. Optimization of Preparation and Application of Polymeric Aluminum Ferric Sulfate Coagulant by Response Surface Analysis[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2013,35(3):106-114.10.11835/j. issn.1674-4764.2013.03.017

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  • 在线发布日期: 2013-06-07
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