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氢氧化镁处理高pH值活性橙废水的混凝性能及絮体特性

Magnesium hydroxide coagulation performance and floc properties in treating high pH reactive orange wastewater.

作者信息

Liu Meile, Lu Jingfang, Wei Lei, Wang Kang, Zhao Jianhai

机构信息

Tianjin Key Laboratory of Aquatic Science and Technology, School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin, 300384, China E-mail:

出版信息

Water Sci Technol. 2015;71(9):1310-6. doi: 10.2166/wst.2015.083.

Abstract

Application of magnesium hydroxide as a coagulant for treating high pH reactive orange wastewater was studied. The coagulation performance and magnesium hydroxide-reactive orange floc properties were investigated under different dosages, feeding modes and pH values. Flocculation index (FI) was then discussed with controlled experiments using an intelligent particle dispersion analyzer and optimum coagulant dose of 150 mg/L (magnesium ion) was obtained for pH value 12. The results showed that the optimum magnesium ion dose tended to decrease with the increase of initial pH value. One time addition feeding mode led to relatively large FI value and higher removal efficiency compared with other addition modes. All of the flocs under investigation showed a limited capacity for re-growth when they had been previously broken. Based on the changes of zeta potential and floc properties, charge neutralization and precipitate enmeshment were proposed to be the main coagulation mechanisms.

摘要

研究了氢氧化镁作为混凝剂处理高pH值活性橙废水的应用。在不同剂量、投加方式和pH值条件下,考察了混凝性能及氢氧化镁 - 活性橙絮体性质。然后使用智能颗粒分散分析仪通过对照实验讨论了絮凝指数(FI),得出pH值为12时最佳混凝剂剂量为150 mg/L(镁离子)。结果表明,最佳镁离子剂量随初始pH值的升高而趋于降低。与其他投加方式相比,一次性投加方式导致相对较大的FI值和更高的去除效率。所有被研究的絮体在先前破碎后显示出有限的再生长能力。基于zeta电位和絮体性质的变化,提出电荷中和及沉淀网捕是主要的混凝机理。

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