首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Ultra-fine grinding and mechanical activation of mine waste rock using a high-speed stirred mill for mineral carbonation
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Ultra-fine grinding and mechanical activation of mine waste rock using a high-speed stirred mill for mineral carbonation

机译:用高速搅拌研磨机进行矿井废岩的超细研磨和机械激活,用于矿物碳酸化

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摘要

CO2 sequestration by mineral carbonation can permanently store CO2 and mitigate climate change. However, the cost and reaction rate of mineral carbonation must be balanced to be viable for industrial applications. In this study, it was attempted to reduce the carbonation costs by using mine waste rock as a feed stock and to enhance the reaction rate using wet mechanical activation as a pre-treatment method. Slurry rheological properties, particle size distribution, specific surface area, crystallinity, and CO2 sequestration reaction efficiency of the initial and mechanically activated mine waste rock and olivine were characterized. The results show that serpentine acts as a catalyst, increasing the slurry yield stress, assisting new surface formation, and hindering the size reduction and structure amorphization. Mechanically activated mine waste rock exhibits a higher carbonation conversion than olivine with equal specific milling energy input. The use of a high-speed stirred mill may render the mineral carbonation suitable for mining industrial practice.
机译:CO2由矿物碳酸化封存可以永久地存储CO2并减轻气候变化。然而,必须平衡矿物碳化的成本和反应速率,以便对工业应用可行。在这项研究中,试图通过使用矿井废岩作为饲料原料来降低碳化成本,并使用湿机械活化作为预处理方法来提高反应速率。浆料流变性能,粒度分布,比表面积,结晶度和初始和机械活化的矿井废岩和橄榄石的螯合反应反应效率。结果表明,蛇形作用作为催化剂,增加浆料屈服应力,辅助新的表面形成,并妨碍尺寸减小和结构非晶化。机械活化的矿井废岩表现出比橄榄石更高的碳酸化转化,具有相同的铣削能量输入。使用高速搅拌磨机可​​能会使矿物碳化适用于采矿工业实践。

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