首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Mechanism of Mg2+ dissolution from olivine and serpentine: Implication for bioleaching of high-magnesium nickel sulfide ore at elevated pH
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Mechanism of Mg2+ dissolution from olivine and serpentine: Implication for bioleaching of high-magnesium nickel sulfide ore at elevated pH

机译:橄榄石和蛇形Mg2 +溶解的机理:高镁硫化物矿石在升高的pH下的含义

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摘要

To inhibit the dissolution of Mg2+ during the bioleaching process of high-magnesium nickel sulfide ore, the effect of major bi-oleaching factors on the dissolution of Mg2+ from olivine and serpentine was investigated and kinetics studies were carried out. The results indicated that the dissolution rate-controlling steps are chemical reaction for olivine and internal diffusion for serpentine. The most influential factor on the dissolution of Mg2+ from olivine and serpentine was temperature, followed by pH and particle size. A novel method of bi-oleaching at elevated pH was used in the bioleaching of Jinchuan ore. The results showed that elevated pH could significantly reduce the dissolution of Mg2+ and acid consumption along with slightly influencing the leaching efficiencies of nickel and cobalt. A model was used to explain the leaching behaviors of high-magnesium nickel sulfide ore in different bioleaching systems. The model suggested that olivine will be depleted eventually, whereas serpentine will remain because of the difference in the rate-controlling steps. Bioleaching at elevated pH is a suitable method for treating high-magnesium nickel sulfide ores.
机译:为了抑制高镁硫化镍矿石的生物浸入过程中Mg2 +的溶解,研究了主要的双反烘焙因子对来自橄榄石和蛇形的Mg2 +溶解的影响,进行动力学研究。结果表明,溶出速率控制步骤是橄榄石和蛇形内部扩散的化学反应。从橄榄石和蛇形溶解Mg2 +的最有影响力的因素是温度,然后是pH和粒度。在金川矿矿石的生物浸出中使用了一种在升高的pH下进行二磺的二磺的方法。结果表明,pH升高可显着降低Mg2 +和酸消耗的溶解,以及略微影响镍和钴的浸出效率。模型用于解释不同生物浸出系统中高镁镍矿石的浸出行为。该模型表明橄榄石最终将被耗尽,而蛇形仍将留下,因为速率控制步骤的差异。升高pH下的生物浸渍是处理高镁镍矿石的合适方法。

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