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高磷鐵水脫磷渣枸溶性

Solubility in citric acid of dephosphorization slags from high phosphorus hot metal refining

  • 摘要: 參照實際轉爐脫磷爐渣,配制了不同F、P2O5、FeO和MgO含量及堿度的渣樣,用化學分析方法測試了不同組分對渣中磷的枸溶率的影響規律.結果表明:當脫磷渣中含有F時,P主要與F形成氟磷灰石,使得磷的枸溶率隨渣中F含量的升高而急劇降低,當不含氟時枸溶率可達92.5%,當氟質量分數達到0.5%時枸溶率已降低到50%以下;隨堿度增加,由于渣中Ca2+含量增加,破壞了硅氧網絡結構,使得枸溶率有所上升;渣中MgO含量升高,由于Mg2+在熔融冷卻過程中會抑制β-Ca3(PO4)2晶體的析出,而β-Ca3(PO4)2中磷不易為質量分數為2%的檸檬酸液溶出,而使枸溶率有所升高;隨渣中P2O5含量升高,由于P5+與O2-形成絡離子,P5+位于O2-密集形成的間隙中,不易溶出,使得枸溶率有所下降;渣中FeOn升高,枸溶率隨之降低.

     

    Abstract: Consulting a practical dephosphorization slag in the converter, samples with different levels of F, P2O5, FeO, MgO and basicity were prepared in laboratory, and the effect of composition on their solubility in citric acid was analyzed by chemical analysis methods. The results show that when the slag contains fluorine, P and F mainly form fluorapatite, and the solubility in citric acid of the slag sharply decreases when the fluorine content increases in the slag. if there is no any fluorine in the slag, the solubility in citric acid can be reached up to 92.5%, but when the mass fraction of fluorine in the slag reaches to 0.5%, the solubility in citric acid drops to less than 50%. The solubility in citric acid is improved with the increase of basicity, for increasing Ca2+ can destroy the Si-O network structure. With the increase of MgO content, the solubility in citric acid increases since in the process of cooling, Mg2+ inhibits the precipitation of β-Ca3(PO4)2 crystals in which P can not be dissolved easily in the 2% citric acid. The solubility in citric acid decreases with the increase of P2O5 content, for P5+ is formed as PO43- complex ions with O2-, P5+ locates in intensive gaps formed by O2-, and the complex ions can not dissolved easily in the 2% citric acid. The solubility in citric acid will be decreased with the increase of FeOn.

     

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