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Research on dielectric characterization of laterite ores under microwave radiation

机译:微波辐射下杂交矿石介电表征研究

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Dielectric property of laterite ores plays a key role in the determination of its treatment effect by microwave. However, till date, to our knowledge, there is no article reported on the dielectric property of laterite ores up to the nickel-iron alloy extraction temperature of around 1200 degrees C, which impedes the efficient application of microwave power in the nickel-iron alloy extraction. This paper, in view of this, aims to provide the dielectric property variation of laterite ores treated by microwave radiation from room temperature up to 1250 degrees C. A custom-designed ridge waveguide-based system is applied to perform the measurement. To verify the reliability of the measured results and explain the experimental phenomenon, X-ray diffraction (XRD) and scanning electron microscope (SEM) analysis are employed to conduct a thorough understanding on the variation of dielectric properties of laterite ores under different temperatures. The measured data are qualitatively verified by its temperature change tendency, SEM and XRD analysis. This work may be helpful to avoid thermal runaway, design more efficient microwave devices and optimize the existing production line of microwave treating laterite ores.
机译:红土矿石的介电性质在通过微波测定其治疗效果时起着关键作用。然而,迄今为止,迄今为止,我们的知识就没有报告的文章,这些文章在卫星矿石的介质性质上,直至1200摄氏度约为1200摄氏度的镍 - 铁合金提取温度,这阻碍了微波功率在镍铁合金中的高效应用萃取。本文鉴于此,旨在提供通过室温高达1250℃的微波辐射处理的后卫矿石的介电性质变化。应用基于定制的基于脊波导的系统来执行测量。为了验证测量结果的可靠性并解释实验现象,采用X射线衍射(XRD)和扫描电子显微镜(SEM)分析来对不同温度下的红土矿石的介电性质的变化进行彻底了解。测量数据通过其温度变化趋势,SEM和XRD分析定性地验证。这项工作可能有助于避免热失控,设计更高效的微波器件,并优化现有的微波处理线处理后矿石。

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