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A Study on Arsenic Removal from Household Drinking Water

机译:家用饮用水中除砷的研究

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Arsenic removal from household drinking water has been receiving considerable attention in the field of water supply engineering. To develop the optimal coagulation protocol, the effectiveness of several operation options such as coagulants, coagulant aids and additives, as well as floes separation systems were investigated in this study through the use of orthogonal array experiment based on Taguchi method. Arsenic removal mechanism during household coagulation (via manual mixing) was also discussed. The results showed that the addition of kaoline and powder activated carbon (PAC) did not enhance arsenic removal efficiency of ferric sulfate or aluminum sulfate. Similarly, mixture of ferric sulfate and aluminum sulfate (MFA) as well as polymeric ferric silicate sulfate (PFSiS) was also unable to improve the overall arsenic removal efficiency. The mechanism of arsenic removal during coagulation was somewhat different from those experienced in conventional processes. Coprecipitation appeared to be the crucial mechanism for arsenic removal. It is noted from this study that arsenic adsorption isotherm under household operation condition could be described by Langmuir equation. An efficient floes separation system subsequent to coagulation was essential to achieve the effectiveness of overall arsenic removal. The results obtained from field experiment demonstrated that the method of ferric sulfate coagulation/sand filtration for arsenic removal from household drinking water was acceptable and affordable.
机译:从家庭饮用水中去除砷已经在供水工程领域受到了广泛关注。为了制定最佳的混凝方案,通过基于Taguchi方法的正交阵列实验,研究了混凝剂,助凝剂和添加剂以及絮凝物分离系统等几种操作方案的有效性。还讨论了家庭凝血(通过手动混合)过程中的除砷机理。结果表明,添加高岭土和粉末活性炭(PAC)不会提高硫酸铁或硫酸铝的除砷效率。同样,硫酸铁和硫酸铝(MFA)以及聚合硫酸硅铁(PFSiS)的混合物也无法提高整体砷去除效率。凝结过程中除砷的机理与常规工艺中的除砷机理有些不同。共沉淀似乎是去除砷的关键机制。从这项研究中可以看出,家用操作条件下的砷吸附等温线可以用Langmuir方程描述。凝结后有效的絮凝物分离系统对于实现整体除砷效果至关重要。野外试验的结果表明,硫酸铁混凝/砂滤去除生活饮用水中砷的方法是可以接受的,也是可以承受的。

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