明矾
浊度
絮凝作用
化学
硫酸铝
凝结
铁
吸附
流出物
粒径
过滤(数学)
氯化物
粒子(生态学)
Zeta电位
废水
水处理
硫酸盐
色谱法
环境工程
制浆造纸工业
无机化学
化学工程
环境科学
有机化学
物理化学
纳米颗粒
心理学
工程类
地质学
精神科
海洋学
统计
数学
作者
Avner Adin,Y. Soffer,R. Ben Aim
标识
DOI:10.2166/wst.1998.0233
摘要
Wastewater reuse often requires particle destabilization and removal to protect water transport systems and membranes from clogging. Flocculation process of activated sludge effluent applying ferric chloride is examined and comparison with alum (aluminium sulfate) application is made in this work. Optimum flocculation conditions are determined based on the removal efficiency of different particle size groups and on turbidity as a function of coagulant dosage and pH. Results show that the best removal for ferric chloride coagulant occurs at pH 4-5 and dosage of 20-30 mgl−1. Settled water total particle count (TPC) of particle size ≥2μm was reduced by more than 99%, while turbidity removal reached 86%. Zeta potential measurements and visual observations indicate domination of adsorption and charge neutralization mechanisms. Best removal with alum occurred at pH 6-7 while dosing 30 mgl−1 and higher. Destabilization mechanism of adsorption and sweep coagulation is proposed. Generally alum performed somewhat better than iron for turbidity removal and worse for TPC removal. CMD (count mean diameter) is proposed for particle removal index: the higher the TPC removal, the lower the CMD.
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