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Oxidation and coagulation of humic substances by potassium ferrate.

机译:高铁酸钾对腐殖质的氧化和凝结。

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Ferrate (FeO~2) is believed to have a dual role in water treatment, both as oxidant and coagulant. Few studies have considered the coagulation effect in detail, mainly because of the difficulty of separating the oxidation and coagulation effects. This paper summarises some preliminary results from laboratory-based experiments that are investigating the coagulation reaction dynamically via a PDA instrument, between ferrate and humic acid (HA) at different doses and pH values, and comparing the observations with the use of ferric chloride. The PDA output gives a comparative measure of the rate of floc growth and the magnitude of floc formation. The results of the tests show some significant differences in the pattern of behaviour between ferrate and ferric chloride. At pH 5 the chemical dose range (as Fe) corresponding to HA coagulation was much broader for ferrate than ferric chloride, and the optimal Fe dose was greater. Ferrate oxidation appears to increase the hydrophilic and electronegative nature of the HA leading to an extended region of charge neutralisation. A consequence of the ferrate oxidation is that the extent of HA removal was slightly lower (approximately 5%) than with ferric chloride. At pH 7, in the sweep flocculation domain, ferrate achieved much greater floc formation than ferric chloride, but a substantially lower degree of HA removal.
机译:高铁酸盐(FeO〜2)被认为在水处理中具有双重作用,既是氧化剂,又是凝结剂。很少有研究详细考虑混凝作用,这主要是由于难以区分氧化和混凝作用。本文总结了一些基于实验室的实验的初步结果,这些实验通过PDA仪器动态研究了不同剂量和pH值下高铁酸盐和腐殖酸(HA)之间的凝结反应,并将观察结果与氯化铁的使用进行了比较。 PDA输出可对絮凝物的生长速率和絮凝物的形成程度进行比较。测试结果表明高铁酸盐和氯化铁之间在行为模式上有一些显着差异。在pH值为5时,高铁酸盐对应于HA凝结的化学剂量范围(以Fe计)比氯化铁宽得多,最佳Fe剂量也较大。高铁酸盐氧化似乎增加了HA的亲水性和负电性,导致电荷中和的区域扩大。高铁酸盐氧化的结果是,HA去除的程度比氯化铁略低(约5%)。在pH值为7时,在吹扫絮凝域中,高铁酸盐形成的絮凝物比氯化铁大得多,但HA去除的程度明显较低。

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