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首页> 外文期刊>Fluid Phase Equilibria >The electrolyte NRTL model and speciation approach as applied to multicomponent aqueous solutions of H2SO4, Fe-2(SO4)(3), MgSO4 and Al-2(SO4)(3) at 230-270 degrees C
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The electrolyte NRTL model and speciation approach as applied to multicomponent aqueous solutions of H2SO4, Fe-2(SO4)(3), MgSO4 and Al-2(SO4)(3) at 230-270 degrees C

机译:电解质NRTL模型和形态学方法应用于230-270℃的H2SO4,Fe-2(SO4)(3),MgSO4和Al-2(SO4)(3)的多组分水溶液

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This work presents chemical modeling of solubilities of metal sulfates in aqueous solutions of sulfuric acid at high temperatures. Calculations were compared with experimental solubility measurements of hematite (Fe2O3) in aqueous ternary and quaternary systems of H2SO4, MgSO4 and Al-2(SO4)(3) at high temperatures. A hybrid model of ion-association and electrolyte non-random two liquid (ENRTL) theory was employed to fit solubility data in three ternary systems H2SO4-MgSO4-H2O, H2SO4-Al-2(SO4)(3)-H2O at 235-270degreesC and H2SO4-Fe-2(SO4)(3)-H2O at 150-270degreesC. Employing the Aspen Plus(TM) property program, the electrolyte NRTL local composition model was used for calculating activity coefficients of the ions Al3+, Mg2+ Fe3+ and SO42-, HSO4-, OH-, H3O+, respectively, as well as molecular species. The solid phases were hydronium alunite (H3O)Al-3(SO4)(2)(OH)(6), hematite Fe2O3 and magnesium sulfate monohydrate (MgSO4).H2O which were employed as constraint precipitation solids in calculating the metal sulfate solubilities. A correlation for the equilibrium constants of the association reactions of complex species versus temperature was implemented. Based on the maximum-likelihood principle, the binary interaction energy parameters for the ionic species as well as the coefficients for equilibrium constants of the reactions were obtained simultaneously using the solubility data of the ternary systems. Following that, the solubilities of metal sulfates in the quaternary systems H2SO4-Fe-2(SO4)(3)-MgSO4-H2O, H2SO4-Fe-2(SO4)(3)-Al-2(SO4)(3)-H2O at 250degreesC and H2SO4-Al-2(SO4)(3)-MgSO4-H2O at 230-270degreesC were predicted. The calculated results were in excellent agreement with the experimental data. (C) 2004 Elsevier B.V. All rights reserved.
机译:这项工作提出了高温下硫酸水溶液中金属硫酸盐溶解度的化学模型。将计算结果与赤铁矿(Fe2O3)在高温的H2SO4,MgSO4和Al-2(SO4)(3)的三元和四元水溶液的系统中的溶解度测量值进行了比较。离子缔合和电解质非随机两种液体(ENRTL)理论的混合模型用于拟合三元体系H2SO4-MgSO4-H2O,H2SO4-Al-2(SO4)(3)-H2O在235- 270°C和150-270°C的H2SO4-Fe-2(SO4)(3)-H2O。利用Aspen Plus TM性能程序,电解质NRTL局部组成模型被用于分别计算离子Al 3+,Mg 2+ Fe 3+和SO 42-,HSO 4,OH-,H 3 O +的活度系数以及分子种类。固相为亚硫酸氢钠(H3O)Al-3(SO4)(2)(OH)(6),赤铁矿Fe2O3和硫酸镁一水合物(MgSO4).H2O被用作约束沉淀固体来计算金属硫酸盐的溶解度。实现了复杂物种缔合反应的平衡常数与温度之间的相关性。基于最大似然原理,使用三元系统的溶解度数据同时获得了离子物种的二元相互作用能参数以及反应平衡常数的系数。之后,四元体系H2SO4-Fe-2(SO4)(3)-MgSO4-H2O,H2SO4-Fe-2(SO4)(3)-Al-2(SO4)(3)-中的金属硫酸盐溶解度预测在250°C的H2O和在230-270°C的H2SO4-Al-2(SO4)(3)-MgSO4-H2O。计算结果与实验数据吻合良好。 (C)2004 Elsevier B.V.保留所有权利。

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