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首页> 外文期刊>Calphad: Computer Coupling of Phase Diagrams and Thermochemistry >Thermodynamics of fluoride-based molten fluxes for extraction of magnesium through the low temperature solid oxide membrane (LT-SOM) process
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Thermodynamics of fluoride-based molten fluxes for extraction of magnesium through the low temperature solid oxide membrane (LT-SOM) process

机译:通过低温固体氧化物膜(LT-SOM)氟化镁萃取氟化氟化碳的热力学

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摘要

The melt quenching experiments and thermodynamic calculations of phase diagrams were carried out to investigate potential additives for the low temperature solid oxide membrane (LT-SOM) magnesium extraction process. The solubility of MgO, which is a major source of magnesium extraction, was also measured in the molten fluoride fluxes. The solubility of MgO in the 46.5MgF(2)-46.5CaF(2)-7LiF and 45MgF(2)-45CaF(2)-10NaF (wt%) systems reached 3.4 and 1.9 wt% at 1473 K, respectively, and 1.5 wt% MgO in both fluxes at 1223 K. In addition, the 45MgF(2)-55CaF(2) binary eutectic flux, which has been widely used in SOM process, could dissolve up to 2.3 wt % MgO at 1473 K. This value is significantly lower than the literature value, i.e. 10 wt% MgO. From the evaluation of the activity coefficient of MgO in the 46.5MgF(2)-46.5CaF(2)-7LiF and 45MgF(2)-45CaF(2)-10NaF fluxes under MgO saturation, it was confirmed that the stability of MgO in the 7LiF flux is greater than that in the 10NaF flux. Hence, the driving force of MgO dissolution into the 7LiF flux is higher than that into the 10NaF flux. The newly developed molten flux for magnesium extraction using the LT-SOM process with an operating temperature lower than 1273 K is the 46.5MgF(2)-46.5CaF(2)-7LiF system.
机译:进行熔体淬火实验和相图的热力学计算,以研究低温固体氧化物膜(LT-SOM)镁提取过程的潜在添加剂。 MgO的溶解度也在熔融的氟化物通量中测量。 MgO在46.5MgF(2)-46.5CAF(2)-7LIF和45mgF(2)-45CF(2)-10naF(2)-10naF(Wt%)系统中分别在1473 k下达到3.4和1.9wt%,并为1.5在1223K的两个助熔剂中的Wt%MgO。此外,45MgF(2)-55CAF(2)二元共晶通量,已广泛用于SOM过程,可在1473K溶解于2.3wt%的MgO。该值显着低于文献值,即10wt%MgO。根据MgO饱和度46.5MgF(2)-46.5CAF(2)-7LIF和45MgF(2)-10NAF(2)-10NAF(2)-10NAF(2)-10NAF(2)-10NAF助熔剂的评价,证实了MgO的稳定性7LIF通量大于10NAF通量的磁通量。因此,MgO溶解进入7LIF通量的驱动力高于10NAF通量。使用低于1273k的LT-SOM过程新开发的镁萃取氧化液是46.5MgF(2)-46.5CAF(2)-7LIF系统。

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