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Effects of Iron Concentrations, Filter Hydraulic Loading Rates, and Porosities on Iron Removal by Rapid Sand Filtration

机译:铁浓度,过滤器水力负荷率和孔隙率对快速砂滤除铁的影响

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摘要

Oxidation of iron particles occurring as a result of oxidation of ferrous iron Fe(II) result in undesirable effects in water quality. These iron particles can be removed from water through physical treatment processes of filtration, adsorption, and membrane systems. Iron removal with a rapid sand filtration method was investigated. Effects of iron concentrations, filter hydraulic loading rates, and porosities were studied for the effluent iron concentration, turbidity, and head loss parameters. Plexiglas filter column system with an inner diameter of 30 mm and an equivalent diameter of silica sand with 0.59 mm was used. Four iron concentrations and four hydraulic loading rates were applied. Effects of filter hydraulic loading rates depend on the influent iron concentrations. Low iron concentrations could be removed by rapid sand filtration without high head loss occurrences. Moreover, effluent iron concentrations obtained for this situation were found to be lower than 0.2 mg/L, which is the legislative limit of Turkish Drinking Water Regulation (TDWR). Filter operation time increased with increasing the porosity. Filter operation time was about 2.4 times higher at the porosity of 0.40 than that at the porosity value of 0.36. Low effluent iron concentrations were obtained at the porosity value of 0.36.
机译:由于二价铁Fe(II)的氧化而发生的铁颗粒的氧化会导致水质受到不良影响。这些铁颗粒可以通过过滤,吸附和膜系统的物理处理过程从水中去除。研究了用快速砂滤法除铁的方法。研究了铁浓度,过滤器水力负荷率和孔隙率对废水中铁浓度,浊度和压头损失参数的影响。使用内径为30 mm的有机玻璃滤柱系统和等效直径为0.59 mm的硅砂。应用了四个铁浓度和四个水力加载速率。过滤器液压负载率的影响取决于进水铁的浓度。低铁浓度可通过快速砂滤除去,而不会出现高水头损失。此外,发现在这种情况下获得的废水铁浓度低于0.2 mg / L,这是土耳其饮用水法规(TDWR)的立法限制。过滤器的操作时间随着孔隙率的增加而增加。在0.40的孔隙率下,过滤器的操作时间是在0.36的孔隙率下的约2.4倍。在孔隙率为0.36时获得了较低的废水铁浓度。

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