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Recycling Effects of Residual Slag after Magnetic Separation for Phosphorus Recovery from Hot Metal Dephosphorization Slag

机译:磁选后残留渣对铁水脱磷渣中磷的回收利用效果

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In a previous study, the authors found that phosphorus exhibits remarkable segregations in industrial hot metal pretreatment slag where it exists as a Ca_(3)P_(2)O_(8)–Ca_(2)SiO_(4) solid solution together with a FeO–CaO–SiO_(2)–MnO–MgO matrix. Since the magnetic property of each phase is significantly different, it is possible to separate the phases with the aid of a superconducting strong magnetic field. By applying a strong magnetic field of 0.5 to 2.5 T to the crushed slag, more than 60% of the concentrated phosphorus phase in the slag was recovered. If most of the phosphorus can be removed from the slag, the residual slag will comprise FeO–CaO–SiO_(2)–MnO–MgO with less P_(2)O_(5), and thus may be recycled to iron- and steel-making processes, such as sintering, hot-metal desiliconization, and hot-metal dephosphorization processes. In the present work, the recycling effect of subjecting the residual slag to the dephosphorization process was simulated based on a mass balance calculation. A significant reduction in total slag generation and CaO input was demonstrated by the mathematical model considering phosphorus recovery and recycling of residual slag as a dephosphorization agent. Using the waste input–output model, it was shown that phosphorus recovery from dephosphorization slag and the recycling of residual slag in a hot-metal dephosphorization process have potentially great environmental and economic benefits.
机译:在先前的研究中,作者发现磷在工业铁水预处理炉渣中表现出显着的偏析,并以Ca_(3)P_(2)O_(8)–Ca_(2)SiO_(4)固溶体的形式存在。 FeO–CaO–SiO_(2)–MnO–MgO基体。由于每个相的磁特性明显不同,因此可以借助超导强磁场来分离相。通过向压碎的炉渣施加0.5至2.5 T的强磁场,可回收炉渣中60%以上的浓磷相。如果可以从炉渣中除去大部分磷,那么残留的炉渣将包括FeO–CaO–SiO_(2)–MnO–MgO和较少的P_(2)O_(5),因此可以循环利用到钢铁中制法,例如烧结,铁水脱硅和铁水脱磷工艺。在目前的工作中,基于质量平衡计算,模拟了使残留炉渣进行脱磷过程的回收效果。数学模型考虑了磷的回收和作为除磷剂的残余矿渣的再循环,证明了总矿渣的产生和CaO输入的显着减少。使用废物投入产出模型,表明从铁水脱磷过程中脱磷炉渣中回收磷和回收残余炉渣具有潜在的巨大环境和经济效益。

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