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Microwave Treatment of Ultramafic Nickel Ores: Heating Behavior, Mineralogy, and Comminution Effects

机译:微波处理超镁铁镍矿:加热行为,矿物学和粉碎效应

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Ultramafic nickel ores are difficult to process because they contain serpentine, an anisotropic mineral with a nonspherical morphology and multiple pH-dependent surface charges. Dehydroxylation of serpentine in ultramafic nickel ores by microwave treatment is proposed to improve the processability of these ores. Upon heating, serpentine is converted to olivine, an isotropic mineral that is benign in mineral processing circuits. The microwave heating of two ultramafic nickel ores is explored in this paper, as well as effects on mineralogy and grindability. The first ore was sourced from the Okanogan nickel deposit in Washington State, USA, while the second ore was obtained from the Vale-owned Pipe deposit located in the Thomson Nickel Belt in Manitoba, Canada. The ultramafic nickel ores were found to heat well upon exposure to microwave radiation and the heating behaviors were a function of the imaginary permittivities. The temperatures achieved during microwave treatment were sufficient to dehydroxylate serpentine, and the serpentine content in ultramafic nickel ores was reduced by 63–84%. The grindability of ore with consistent texture (OK ore) improved dramatically with microwave treatment, whereas the grindability of ore with inconsistent texture (Pipe ore) was found to decrease. Pentlandite liberation and specific surface area improved for both ores with microwave treatment. Ultimately, microwave pretreatment did not decrease the energy required for grinding under the conditions studied. However, energy savings may be realized when overall process improvements are considered (e.g., grinding, rheology, flotation, material handling, dewatering and tailings treatment).
机译:超镁铁矿镍矿石很难加工,因为它们含有蛇纹石,一种具有非球形形态和多种pH依赖表面电荷的各向异性矿物。提出通过微波处理使蛇纹石在超镁铁镍矿中脱羟基,以提高这些矿石的可加工性。加热后,蛇纹石转化为橄榄石,这是一种各向同性的矿物,在矿物加工回路中是良性的。本文研究了两种超镁铁镍矿的微波加热方法,以及对矿物学和可磨性的影响。第一种矿石来自美国华盛顿州的Okanogan镍矿床,而第二种矿石则来自加拿大马尼托巴省Thomson镍矿带的淡水河谷拥有的Pipe矿床。发现超镁铁镍矿在暴露于微波辐射后加热良好,并且加热行为是假想电容率的函数。微波处理过程中达到的温度足以使蛇纹石脱羟基,并且超镁铁镍矿中的蛇纹石含量降低了63–84%。质地一致的矿石(OK矿石)的可磨性通过微波处理得到了显着改善,而质地不一致的矿石(管矿)的可磨性却降低了。微波处理可使两种矿石中的膨润土释放和比表面积均得到改善。最终,在所研究的条件下,微波预处理并未降低研磨所需的能量。但是,当考虑整体工艺改进时(例如,研磨,流变,浮选,物料处理,脱水和尾矿处理),可以实现节能。

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