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electromagnetic separation of fe2o3 from talc

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electromagnetic separation of fe2o3 from talc
Products improvement
Excellent electromagnetic wave absorption of The new absorbing materials, thin, light, and strong become a challenge and attract more scientists to find excellent absorption performance. In this work, the composite Co/Fe 2 O 3 /AC was achieved through a simple milling method at 10 Hz for 1 h. The Co/Fe 2 O 3 /AC for 20%AC has an excellent absorption of electromagnetic wave performance with a minim

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    A recycling process of iron from red mud by magnetic separation is proposed, in which iron oxide (Fe2O3) in red mud transforms to magnetite (Fe3O4) by anaerobic coroasting with pyrite (FeS2).

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  • Excellent electromagnetic wave absorption of

    The new absorbing materials, thin, light, and strong become a challenge and attract more scientists to find excellent absorption performance. In this work, the composite Co/Fe 2 O 3 /AC was achieved through a simple milling method at 10 Hz for 1 h. The Co/Fe 2 O 3 /AC for 20%AC has an excellent absorption of electromagnetic wave performance with a minimum reflection loss (RL) value of 69.39

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  • Fabrication and electromagnetic performance of

    In this study, the electromagnetic (EM) performance of talc/NiTiO 3 composite was evaluated. The morphology of talc displayed a lamella structure; there were many nanoparticles of NiTiO 3 coated on the talc lamella. Thermal destruction occurred, which increased the surface area from 2.51 m 2 g 1 to 79.09 m 2 g 1 at the calcined stage at 650176;C. . The presence of NiTiO 3 increased

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  • Hierarchical DendriteLike Magnetic Materials of

    312ensp;0183;ensp;Ironbased microstructured or nanostructured materials, including Fe, γFe2O3, and Fe3O4, are highly desirable for magnetic applications because of their high magnetization and a wide range of magnetic anisotropy. An important application of these materials is use as an electromagnetic wave absorber to absorb radar waves in the centimeter wave (218 GHz). Dendritelike microstructures

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  • (PDF) The Art of Talc Flotation for Different Industrial

    This allows talc to exhibit an inherent hydrophobicity, which is the basis of the separation of talc, by flotation, MgO from 18.57 to 23.59%; and a decreasing Fe2O3 from 8.52 to 2.22%. Further

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  • Determination of Magnetic Parameters of Maghemite (γ

    828ensp;0183;ensp;MNP can be applied to cell separation, immunoassay, magnetic resonance imaging (MRI), drug and gene delivery, minimally invasive surgery, radionuclide therapy, hyperthermia and artificial muscle applications (see [1] for example). Most of these applications require superparamagnetic state of MNP. However, nanoparticles agglomerate very easily.

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