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Mode of action of ferric and ferrous iron salts in activated sludge

机译:活性污泥中铁盐和亚铁盐的作用方式

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BACKGROUND: Both ferric iron Fe(III) and ferrous iron Fe(II) salts are commonly used for chemical phosphorus removal (CPR) in the activated sludge (AS) process but only a few studies have compared Fe(III) and Fe(II) salts regarding their effect on the physical and biological properties of AS. In this research, the units of a continuous flow laboratory-scale AS plant were dosed with Fe(III) and Fe(II) salts at a concentration of 25mg Fe dm~(-3) feed and changes in the AS properties were measured as Fe accumulated or washed out during startup, normal operation and withdrawal of dosing. RESULTS: The morphological characteristics of the flocs showed marked differences depending on the type of ion used. Fe(II) dosed flocs weremore compact, less filamentous and smaller in size than Fe(III) dosed flocs. The settleability index of the Fe(II) dosed sludgewas lower than that of the Fe(III) dosed sludge. The activity of ammonium(NH_4~+-N) and nitrite (NO_2~--N) oxidizing bacteria was found to be affected by the accumulation of Fe relating products into the sludge. CONCLUSIONS: Fe(II) was a more effective flocculent than Fe(III) and this was attributed to its ability to form stronger ionic bondswith the flocs prior to its oxidation to Fe(III). A hypothesis explaining the mode of action of Fe(II) is proposed. Floc surface properties were enhanced, this being beneficial to the morphological characteristics and settleability with further implications for the operation of AS. However, the effectmay be reversed at high Fe contents.
机译:背景:三价铁盐铁盐和二价铁盐铁盐通常用于活性污泥工艺中的化学除磷,但只有少数研究比较了三价铁和二价铁。 )有关其对AS的物理和生物学特性的影响的盐。在这项研究中,以25毫克Fe dm〜(-3)进料的浓度向Fe(III)和Fe(II)盐中添加了连续流量实验室规模的AS工厂装置,并测量了AS特性的变化在启动,正常运行和停药过程中,Fe会堆积或被冲走。结果:絮凝物的形态特征表现出明显的差异,这取决于所用离子的类型。 Fe(II)絮凝剂比Fe(III)絮凝剂更致密,丝状且尺寸较小。 Fe(II)污泥的沉降性指数低于Fe(III)污泥的沉降性指数。发现铵(NH_4〜+ -N)和亚硝酸盐(NO_2〜--N)氧化细菌的活性受铁相关产物在污泥中的积累的影响。结论:Fe(II)是比Fe(III)更有效的絮凝剂,这归因于其在氧化为Fe(III)之前与絮凝物形成更强离子键的能力。提出了一个解释Fe(II)作用方式的假设。絮凝物表面性能得到增强,这有利于形态特征和沉降性,对AS的操作有进一步的影响。但是,在高铁含量下,效果可能相反。

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