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Thermal activation of serpentine prior to acid leaching

机译:酸浸之前蛇纹石的热活化

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The overall process for producing pure magnesium compounds from serpentinite usually starts with acid leaching. However, if serpentinite is calcined prior to leaching, not only faster magnesium dissolution is achieved, but use of thermally activated serpentine also significantly reduces the problems relating to corrosion of the leaching equipment, because less aggressive leaching agents can be used and/or lower leaching temperatures and pressures can be applied. This paper compares how calcination influences the dissolution behaviour of magnesium in solutions of hydrochloric acid, acetic acid and ammonium chloride. Fine-grained serpentinite, characterized by the extent of serpentine decomposition between 85 and 95%, displayed the highest reactivity. The initial magnesium dissolution rate of calcined serpentinite was up to 30-, 125- and 165-times higher as compared to that of uncalcined serpentinite in solutions of hydrochloric acid, acetic acid and ammonium chloride, respectively, under identical reaction conditions.
机译:由蛇纹石生产纯镁化合物的整个过程通常始于酸浸。但是,如果在浸出前煅烧蛇纹石,不仅可以更快地溶解镁,而且使用热活化的蛇纹石还可以大大减少与浸出设备腐蚀有关的问题,因为可以使用侵蚀性较小的浸出剂和/或降低浸出率。可以施加温度和压力。本文比较了煅烧如何影响镁在盐酸,乙酸和氯化铵溶液中的溶解行为。以蛇纹石分解程度在85%至95%之间为特征的细粒蛇纹石显示出最高的反应活性。在相同的反应条件下,煅烧的蛇纹石的初始镁溶解速率分别比未煅烧的蛇纹石在盐酸,乙酸和氯化铵溶液中分别高出30倍,125倍和165倍。

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