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Iron stability in drinking water distribution systems In a city of China

机译:中国某城市饮用水分配系统中的铁稳定性

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A field study on the estimation and analysis of iron stability in drinking water distribution system was carried out in a city of China. The stability of iron ion was estimated by pC-pH figure. It was found that iron ion was unstable, with a high Fe (OH)_3 precipitation tendency and obvious increase in turbidity. The outer layer of the corrosion scale was compact, while the inner core was porous. The main composition of the scale was iron, and the possible compound constitutes of the outer scale were alpha-FeOOH, gamma-FeOOH, alpha-Fe2O3, gamma-Fe_2O_3, FeCl_3, while the inner were Fe_3O_4, FeCl_2, FeCO_3. According to the characteristics of the corrosion scale, it was thought that the main reason for iron instability was iron release from corrosion scale. Many factors such as pipe materials, dissolved oxygen and chlorine residual affect iron release. Generally, higher iron release occurred with lower dissolved oxygen or chlorine residual concentration, while lower iron release occurred with higher dissolved oxygen or chlorine residual concentration. The reason was considered that the passivated out layer of scale of ferric oxide was broken down by reductive reaction in a condition of low oxidants concentration, which would result more rapid corrosion of the pipe and red water phenomenon.
机译:在中国某城市,对饮用水分配系统中铁的稳定性进行了评估和分析。铁离子的稳定性通过pC-pH值估算。发现铁离子不稳定,具有高的Fe(OH)_3沉淀趋势并且浊度明显增加。腐蚀垢的外层是致密的,而内芯是多孔的。水垢的主要成分是铁,外水垢的可能的化合物组成是α-FeO​​OH,γ-FeOOH,α-Fe2O3,γ-Fe_2O_3,FeCl_3,而内部是Fe_3O_4,FeCl_2,FeCO_3。根据腐蚀垢的特征,认为铁不稳定性的主要原因是铁从腐蚀垢中释放出来。管道材料,溶解氧和氯残留物等许多因素都会影响铁的释放。通常,较高的铁释放发生在较低的溶解氧或氯残留浓度下,而较低的铁释放发生在较高的溶解氧或氯残留浓度下。认为其原因是在低氧化剂浓度的条件下,通过还原反应使三氧化二铁的钝化氧化皮层破裂,这将导致管道的快速腐蚀和红水现象。

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