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Migration Behavior of Lithium during Brine Evaporation and KCl Production Plants in Qarhan Salt Lake

机译:察罕盐湖卤水蒸发和氯化钾生产装置中锂的迁移行为

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Lithium-brine is an important potential source of lithium. Much research and investigation has been carried out aimed at lithium recovery from brine. Although the distribution and occurrence status of lithium in brine have important implications for lithium recovery, few reports had correlated to this issue. In this article, a study was carried out to explore the lithium migration behavior during brine evaporation and KCl production process at Qarhan Salt Lake. The occurrence status of lithium both in fresh mined brine and residual brine after evaporation were also speculated by means of lithium concentration evaluation and theoretical calculation based on the Pitzer electrolyte solution theory. Results showed that, for Qarhan brine mined from the Bieletan region, most lithium was enriched in the residual brine during the brine evaporation process. The concentration of lithium in the residual brine could be more than 400 mg/L. More than 99.93% lithium ions in residual brine exist in free ions state and lithium does not precipitate from brine with a density of 1.3649 g/mL. The results also revealed that lithium concentration in wastewater discharged from KCl plants can reach a level of 243.8 mg/L. The investigation results provide a theoretical basis for comprehensive development and utilization of lithium resources in Qarhan Salt Lake.
机译:锂盐水是锂的重要潜在来源。为了从盐水中回收锂,已经进行了许多研究和调查。尽管盐水中锂的分布和发生状态对锂的回收具有重要意义,但很少有报道与该问题相关。在本文中,进行了一项研究,以探讨在Qarhan盐湖中盐水蒸发和KCl生产过程中锂的迁移行为。借助锂浓度评估和基于Pitzer电解质溶液理论的理论计算,还推测了新鲜开采的盐水和蒸发后的残留盐水中锂的存在状态。结果表明,对于从比勒坦地区开采的Qarhan盐水,在盐水蒸发过程中,大部分锂富含残留的盐水。残留盐水中锂的浓度可能超过400 mg / L。残留盐水中超过99.93%的锂离子以游离离子状态存在,并且锂不会以1.3649 g / mL的密度从盐水中沉淀出来。结果还显示,氯化钾工厂排放的废水中的锂浓度可以达到243.8 mg / L。研究结果为贾汉盐湖锂资源的综合开发利用提供了理论依据。

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