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Iron release from corroded iron pipes in drinking water distribution systems: effect of dissolved oxygen

机译:饮用水分配系统中腐蚀的铁管中的铁释放:溶解氧的影响

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Iron release from corroded iron pipes is the principal cause of "colored water" problems in drinking water distribution systems. The corrosion scales present in corroded iron pipes restrict the flow of water, and can also deteriorate the water quality. This research was focused on understanding the effect of dissolved oxygen (DO), a key water quality parameter, on iron release from the old corroded iron pipes. Corrosion scales from 70-year-old galvanized iron pipe were characterized as porous deposits of Fe(Ⅲ) phases (goethite (α-FeOOH), magnetite (Fe_3O_4), and maghemite (α-Fe_2O_3)) with a shell-like, dense layer near the top of the scales. High concentrations of readily soluble Fe(Ⅱ) content was present inside the scales. Iron release from these corroded pipes was investigated for both flow and stagnant water conditions. Our studies confirmed that iron was released to bulk water primarily in the ferrous form. When DO was present in water, higher amounts of iron release was observed during stagnation in comparison to flowing water conditions. Additionally, it was found that increasing the DO concentration in water during stagnation reduced the amount of iron release. Our studies substantiate that increasing the concentration of oxidants in water and maintaining flowing conditions can reduce the amount of iron release from corroded iron pipes. Based on our studies, it is proposed that iron is released from corroded iron pipes by dissolution of corrosion scales, and that the microstructure and composition of corrosion scales are important parameters that can influence the amount of iron released from such systems.
机译:从腐蚀的铁管中释放的铁是饮用水分配系统中“有色水”问题的主要原因。腐蚀的铁管中存在的腐蚀垢会限制水的流动,​​还会使水质恶化。这项研究的重点是了解溶解氧(DO)(一种关键的水质参数)对旧腐蚀的铁管中铁释放的影响。具有70年历史的镀锌铁管的腐蚀垢的特征是具有壳状致密的Fe(Ⅲ)相(针铁矿(α-FeO​​OH),磁铁矿(Fe_3O_4)和磁赤铁矿(α-Fe_2O_3)的多孔沉积物。靠近天平顶部的图层。秤内存在高浓度的易溶Fe(Ⅱ)含量。研究了这些腐蚀管道中铁的释放情况,以了解水流和积水情况。我们的研究证实,铁主要以亚铁形式释放到大量水中。当溶解氧存在于水中时,与流动的水相比较,在停滞期间观察到更多的铁释放。另外,发现在停滞期间增加水中的DO浓度可减少铁的释放量。我们的研究证实,增加水中氧化剂的浓度并保持流动状态可以减少腐蚀的铁管中铁的释放量。根据我们的研究,建议通过腐蚀垢的溶解从腐蚀的铁管中释放铁,腐蚀垢的微观结构和组成是重要的参数,可以影响从此类系统释放的铁量。

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