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Microwave heating of ultramafic nickel ores and mineralogical effects

机译:微波加热超镁铁镍矿及矿物​​学作用

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Although mineral carbon sequestration (MCS) has several advantages over other carbon storage techniques, an economic process for MCS has not yet been developed. To reduce costs, it is suggested that MCS be combined with other processes and that waste products be used as feedstock. A process is proposed where ultramafic nickel ores are treated with microwave radiation to convert serpentine, the primary gangue mineral, to olivine. It is hypothesized the conversion of serpentine to olivine in ultramafic nickel ores may improve the mineral processing of these ores, and increase the carbon storage capacity of the flotation tailings. The microwave heating characteristics of ultramafic nickel ores, and the mineralogical changes that occur as a result of microwave treatment, are described in this paper. Ultramafic nickel ores were found to heat well in response to microwave radiation and the temperatures achieved were sufficient to convert serpentine to olivine. Microwave treatment was also found to convert pentlandite, the valuable nickel mineral, to other Fe-Ni-S minerals.
机译:尽管矿物碳固存(MCS)相对于其他碳存储技术具有若干优势,但尚未开发出MCS的经济流程。为了降低成本,建议将MCS与其他过程结合使用,并且将废品用作原料。提出了一种方法,其中用微波辐射处理超镁铁镍矿,以将蛇纹石(主要的脉石矿物)转化为橄榄石。据推测,在超镁铁镍矿中蛇纹石向橄榄石的转化可能会改善这些矿石的选矿工艺,并增加浮选尾矿的碳储存能力。本文描述了超镁铁镍矿的微波加热特性,以及由于微波处理而发生的矿物学变化。发现超镁铁镍矿对微波辐射具有良好的加热作用,所达到的温度足以将蛇纹石转变为橄榄石。还发现,通过微波处理可以将有价值的镍矿物-膨润土转化为其他Fe-Ni-S矿物。

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