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Preliminary Study of Enhanced Removal of Phosphate by Iron Oxides Formed in situ through Reducing Fe (VI) with Fe (II)

机译:用Fe(II)通过减少Fe(II)通过降低Fe(VI)而通过减少Fe(vi)而增强磷酸盐的初步研究

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Phosphorous removal in secondary by ferric (Fe(III)) was investigated in presence of ferrate (Fe(VI))/ferrous(Fe(II)). In the raw water, adding Fe(VI) or Fe(VI)+Fe(II) could increase the phosphorous removal in comparison to Fe(III) coagulation. For initial phosphate concentration of 2.5 mg P/L, phosphate removal rates of about 15-30% were observed. But the increasing removal rate was not associated with the dosage of total Fe. At the same dosage of total Fe, about 10% increasing was observed. The experimental data of synthetic water demonstrated that Fe(VI) and Fe(II) form freshly amorphous hydrated iron oxides which had much more adsorptive capacity due to theirs small size and amorphous state, therefore they had much affinity for ligand phosphate. The dominant mechanism for the phosphate removal with Fe (VI) +Fe (II) was adsorption firstly, then co-precipitation.
机译:在铁酸盐(Fe(VI))/黑色(Fe(II))存在下研究二碳二碳(Fe(III))中的磷去除。在原水中,添加Fe(VI)或Fe(VI)+ Fe(II)可以增加与Fe(III)凝固相比的磷去除。对于初始磷酸盐浓度为2.5mg p / l,观察到约15-30%的磷酸盐去除率。但越来越多的去除率与总Fe的剂量无关。在总二氧量的同一剂量下,观察到约10%的增加。合成水的实验数据证明了Fe(VI)和Fe(II)形成了由于它们的小尺寸和无定形状态而具有更高的吸附能力的新鲜无定形水合的铁氧化物,因此它们对配体磷酸盐具有很大的亲和力。首先用Fe(VI)+ Fe(II)的磷酸盐除去的主要机制首先吸附,然后共沉淀。

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