首页> 外文期刊>The Journal of Chemical Thermodynamics >Phase equilibrium, structural properties and separation process studies of potassium-ammonium-based solid solution in aqueous-solid solution (AQ-SS)
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Phase equilibrium, structural properties and separation process studies of potassium-ammonium-based solid solution in aqueous-solid solution (AQ-SS)

机译:水 - 固溶液中钾 - 铵基固溶体的相平衡,结构性能和分离过程研究(AQ-SS)

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In order to solve the problem that potassium salt product is impure in industrial production. Phase equilibrium, structural properties and separation process of potassium ammonium sulfate in aqueous-solid solution (AQ-SS) was studied. First, we study solid-liquid equilibrium of K2SO4-(NH4)(2)SO4-H2O ternary system, which revealed complete miscibility in the solid phase. The type of solid solutions was determined by analysis of XRD further confirmed-it is infinite substitutional solid solution. Then, from the analysis of FT-IR, TG-DSC and mapping of [(NH4)(0.104)K-1.896]SO4 and [(NH4)(1.79)K-0.203]SO4 solid solution, we can conclude that two solid solutions are similar, but the absorption position have slight shift to low wave number direction as the increasing of K2SO4 content; the weightlessness decreases with the decrease of NH4+ content; the homogeneous distribution of K+ and NH4+ elements. Finally, based on the phase diagrams and the relevant mass balancing, multistage fractional crystallization experiment to obtain the purity of the K2SO4 is 95.28% after three times cycle operation and we can get about 99.04% K2SO4 in the fourth operation by theoretical analysis, which not only demonstrates the potential application of multistage crystallization to separate K2SO4 from AQ-SS, but also provides guidance and methods for the separation of AQ-SS systems. (C) 2020 Elsevier Ltd.
机译:为了解决钾盐产品纯度在工业生产中的问题。研究了硫酸氢铵(AQ-SS)硫酸钾的相平衡,结构性能和分离过程。首先,我们研究K2SO4-(NH4)(2)SO4-H2O三元体系的固液平衡,揭示了固相中完全混溶性。通过进一步证实的XRD分析确定固溶体的类型 - 它是无限的取代固溶体。然后,通过分析FT-IR,TG-DSC和[(NH 4)(0.104)(0.104)K-1.896] SO4和[(NH 4)(1.79)K-0.203] SO4固溶体,我们可以得出两个固体溶液相似,但吸收位置随着K2SO4含量的增加而轻微转变为低波数方向;失重随着NH4 +含量的降低而降低; K +和NH4 +元素的均匀分布。最后,基于相和相关的质量平衡,多级分数结晶实验在三次循环操作后获得K2SO4的纯度为95.28%,我们可以通过理论分析在第四次操作中获得约99.04%的K2SO4,这不是只证明了多级结晶潜在应用以从AQ-SS分离K2SO4,还提供了用于分离AQ-SS系统的指导和方法。 (c)2020 Elsevier Ltd.

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