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Magnetic Separation of Phosphorus Enriched Phase from Multiphase Dephosphorization Slag

机译:从多相脱磷渣中磁分离富磷相

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The authors have found that phosphorus exhibits remarkable segregation in exhausted actual hot-metal pretreatment slag (dephosphorization slag), and it exists as a 3CaO·P_(2)O_(5)–2CaO·SiO_(2) solid solution with the FeO–CaO–SiO_(2) matrix. Since their magnetic properties are significantly different, it is possible to separate them with the aid of a superconducting strong magnetic field. To investigate the effects of magnetic field strength, the particle size of the slag, etc. , an experiment on magnetic separation has been carried out using simulated dephosphorization slag (18.1Fe_(t)O–45.9CaO–20.3SiO_(2)–6.6P_(2)O_(5)–2.5MnO–5.5MgO in mass%) and a superconducting magnet with 0.5–2.5 T. In a stronger magnetic field, the quality of the recovered slag becomes better due to less contamination of the Fe_(t)O matrix phase, while its quantity worsens and the amount of recovered slag declines. However, the quantity of the recovered slag can be improved by repeating the procedure. In the present experiment, about 65% of the phosphorus enriched phase can be recovered with less than 10% of Fe_(t)O matrix phase contamination at conditions of 0.5 T, a particle size of less than 35 μm, and a water/slag ratio of 32 with a single procedure. The P_(2)O_(5) content in the recovered slag is close to that in the phosphorus-enriched phase in the initial slag, and the FeO content decreases markedly with magnetic separation.
机译:作者发现,磷在耗尽的实际铁水预处理炉渣(脱磷炉渣)中表现出显着的偏析,并以3CaO·P_(2)O_(5)–2CaO·SiO_(2)固溶体的形式存在,并以FeO– CaO–SiO_(2)基质。由于它们的磁性能显着不同,因此可以在超导强磁场的帮助下将其分离。为了研究磁场强度,炉渣的颗粒大小等的影响。 ,已经使用模拟的脱磷炉渣(18.1Fe_(t)O–45.9CaO–20.3SiO_(2)–6.6P_(2)O_(5)–2.5MnO–5.5MgO进行了磁分离实验)以及0.5-2.5 T的超导磁体。在更强的磁场中,由于Fe_(t)O基体相的污染较少,所以回收的渣的质量变好,而其数量变差,回收的渣的量下降。然而,通过重复该过程可以提高回收的炉渣的量。在本实验中,在0.5 T,粒径小于35μm和水/矿渣的条件下,可以回收少于65%的Fe_(t)O基质相污染的富磷相。单个过程的比率为32。回收炉渣中的P_(2)O_(5)含量与初始炉渣中的富磷相接近,FeO含量随磁选而显着降低。

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