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Determination of related systems' solubility data (I) in the preparation process of K2SO4 or KH2PO4 by the solvent extraction method

机译:通过溶剂萃取法测定K2SO4或KH2PO4的制备方法中的相关系统溶解度数据(I)

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In order to meet the requirements of the market in China for high purified products KH2PO4 and K2SO4, develop a new process to produce more purified KH2PO4 and K2SO4 based on the solvent extraction technology is necessary. Solubility and physical properties data for KCI in the H3PO4 (H2SO4) solution and KH2PO4 (K2SO4) in the H3PO4 (H2SO4) solution at (298.15 and 313.15) K are investigated by the method of isothermal solution saturation. These data can provide a theoretical foundation for the industrial production of KH2PO4 and K2SO4 by the method of solvent extraction. According to the experimental data, corresponding diagrams of solubility and physicochemical properties vs composition are constructed. In these systems, the solubility of KC1 decreases from (3.59-1.77) mol.kg(-1) when the concentration of H3PO4 increases at 298.15 K, and decreases from (3.89-1.98) mol.kg(-1) at 313.15 K. The solubility of KCI decreases from (3.59-2.63) mol.kg(-1) when the concentration of H2SO4 increases at 298.15 K, and decreases from (3.89-2.90) mol.kg(-1) at 313.15 K. The solubility of KH2PO4 increases from (1.53-2.81) mol.kg(-1) at 298.15 K and increases from (1.90-3.29) mol.kg(-1) at 313.15 K with the concentration of H3PO4 increasing. The solubility of K2SO4 increases from (0.66-1.26) mol.kg(-1) at 298.15 K and increases from (0.77-1.59) mol.kg(-1) at 313.15 K with the concentration of H2SO4 increasing. The physical properties of the systems change regularly with changing composition of the liquid solution. The measured of the solubility and physical properties diagrams for these systems are instructive to the development of optimizing crystallization process of KH2PO4 and K2SO4. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了满足中国市场对高纯净的产品KH2PO4和K2SO4的要求,开发一种新方法,以基于溶剂提取技术生产更多纯化的KH2PO4和K2SO4。通过等温溶液饱和法研究了H3PO4(H2SO4)溶液中KCI的溶解度和物理性质,H3PO4(H2SO4)溶液中的KH2PO4(K2SO4)和KH2PO4(K 2 SO 4)。这些数据可以通过溶剂萃取方法为KH2PO4和K2SO4的工业生产提供理论基础。根据实验数据,构建了对应的溶解度和物理化学性质Vs组合物。在这些系统中,当H3PO4的浓度在298.15K增加时,KC1的溶解度从(3.59-1.77)摩尔,kg(-1)减少,并在313.15 k下从(3.89-1.98)摩尔,kg(-1)减少。当H2SO4浓度在298.15K增加时,KCi的溶解度从(3.59-2.63)摩尔,kg(-1)减少,并且在313.15k的313.15k中从(3.89-2.90)mol.kg(-1)降低。溶解度KH2PO4在298.15 k下从(1.53-2.81)摩尔人增加(1.53-2.81),从(1.90-3.29)Mol.kg(-1)增加313.15k,随着H3PO4的浓度增加。 K2SO4的溶解度在298.15k的浓度下从(0.66-1.26)Mol.kg(-1)增加(0.66-1.26)摩尔。kg(0.77-1.59)摩尔。kg(-1)在313.15k下增加,H2SO4的浓度增加。系统的物理性质定期改变液体溶液的改变组成。用于这些系统的溶解度和物理性质图的测量对优化KH2PO4和K2SO4的优化结晶过程的开发是有效的。 (c)2017 Elsevier B.v.保留所有权利。

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