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Effect of MgO and CaCO3 as Additives on the Reduction Roasting and Magnetic Separation of Beach Titanomagnetite Concentrate

机译:MgO和CaCO 3 作为添加剂对滩钛磁铁矿精矿还原焙烧和磁选的影响

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To understand the effect of MgO as additive on the reduction roasting of beach titanomagnetite concentrate, the phase transformations, metallization degree and Fe–Mg–O phase diagram were studied in this paper. Results indicated that with the increasing of MgO dosage, more Mg~(2+) diffused into the magnetite lattice, replaced some of the Fe~(2+), and formed a large of MgFe_(2)O_(4). So adding MgO not only did not effectively improve iron recovery, but baffled the reduction of iron oxides. Besides, the effect of CaCO_(3) on the growth of iron particles was also studied by optical microscope and Qwin image analysis software. Tests revealed that an appropriate CaCO_(3) dosage can facilitate the growth of iron particles. Because CaCO_(3) promoted the reaction of iron oxides, FeO content in the slag decreased and more nuclei of iron crystal was formed, resulting in the growth of iron particles. However, excessive CaCO_(3) increased the slag melting point, which hindered the diffusion and growth of iron particles. At last, the best product indexes were obtained by magnetic separation when CaCO_(3) dosage was 4%.
机译:为了了解MgO作为添加剂对海滩钛磁铁矿精矿还原焙烧的影响,本文研究了相变,金属化程度和Fe–Mg–O相图。结果表明,随着MgO用量的增加,更多的Mg〜(2+)扩散到磁铁矿晶格中,取代了部分的Fe〜(2+),形成了大量的MgFe_(2)O_(4)。因此,添加MgO不仅不能有效地提高铁的回收率,而且阻碍了氧化铁的还原。此外,还通过光学显微镜和Qwin图像分析软件研究了CaCO_(3)对铁颗粒生长的影响。测试表明,适当的CaCO_(3)剂量可以促进铁颗粒的生长。由于CaCO_(3)促进了铁氧化物的反应,炉渣中的FeO含量降低,形成了更多的铁晶体核,导致铁颗粒的生长。然而,过量的CaCO_(3)会提高炉渣的熔点,从而阻碍铁颗粒的扩散和生长。最后,当CaCO_(3)用量为4%时,通过磁选获得了最佳的产品指标。

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