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Comparison between simulated evaporation and natural evaporation of inter-crystal brine in Yiliping salt lake

机译:伊利普林盐湖中水晶盐水模拟蒸发和自然蒸发的比较

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摘要

The simulated and natural evaporation processes of Yiliping inter-crystal brine were completed in the laboratory and in the field, respectively. (1) The different salts and precipitation sequence in different evaporation environment were achieved by XRD results, and the crystallization path of simulated evaporation is basically in conformity with the meta-stable diagram of Na+, K+, Mg2+//Cl-, SO4 (2-)-H2O quinary system at 25 A degrees C. (2) The natural evaporation path should have been described by equilibrium system at 25 A degrees C due to the existence of Kainite, but in fact does not. However, the late stage of natural evaporation could be explained by the meta-stable system at 35 A degrees C. (3) Carnallite precipitated in advance no matter what the evaporation condition was. (4) There exists a certain regularity between water loss rate and salt crystallization rate during the simulated evaporation process in laboratory. Namely, there is an abrupt change of water evaporation and salt precipitation rate when minerals enter the next precipitation stage. (5) The rare elements of boron and lithium that Yiliping lake features present similar enrichment rule for the two evaporation methods, even though their concentrated times are far lower than that of brine.
机译:分别在实验室和现场中完成了伊利普平间晶体盐水的模拟和天然蒸发过程。 (1)通过XRD结果实现了不同蒸发环境中的不同盐和沉淀序列,模拟蒸发的结晶路径基本上符合Na +,K +,Mg2 + // Cl-,SO4的元稳定图(2 - ) - 25℃的H2O Quary System C.(2)由于kainite存在,25℃的平衡系统应该通过平衡系统描述自然蒸发路径,但实际上没有。然而,天然蒸发的晚期可以通过在35℃的核稳定系统中解释,无论蒸发条件如何,都会提前沉淀出碳铝酸碳。 (4)在实验室中模拟蒸发过程中的水损失和盐结晶率之间存在一定的规律性。即,当矿物进入下一个沉淀阶段时,存在水蒸发和盐沉淀速率的突然变化。 (5)宜隆湖特征的硼和锂的稀有元素存在类似的两种蒸发方法的富集规则,即使它们的集中时间远低于盐水。

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