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Expressions for Enthalpies of Concurrent Polynuclear Complex Formation Reactions in Two-Phase Aqueous Systems

机译:两相含水体系中并发多核复合物形成反应的表达

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The paper presents a new thermodynamic approach to studying polynuclear complex formation reactions in multicomponent two-phase systems, solid phase plus saturated aqueous solution, under real conditions. The quintessence of this developed approach consists in the thermodynamic analysis of concurrent reactions on the basis of the introduced notion of ageneralized reaction equation. The formation of complex polynuclear species is characterized by certain peculiarities in the behavior of studied two-phase heterogeneous systems. The formation of polynuclear complexes of the metal ion with a complexing agent leads to expressions for the enthalpy H and heat capacity C-p as certain concentration functions, which are normative multipliers, referring these thermochemical quantities to one mole of the metal ion. It is shown that one of these functions, phi, characterizes the degree of formation of polynuclear complexes. In the case of concurrent formation of mono- and polynuclear complexes, the derived expressions are useful in distinguishing separate contributions of individual complex formation reactions to the H and C-p of the overall process.
机译:本文介绍了在实际条件下研究多组分两相体系,固相加饱和水溶液中的多核复合物形成反应的新热力学方法。这种开发方法的Quintessence在于基于引入的静肠蛋白反应方程的概念的同步反应的热力学分析。复杂多核物种的形成的特征在于研究了两相异构体系的行为中的某些特殊性。用络合剂的金属离子的多核配合物的形成导致焓H和热容量C-P的表达,作为一种规范式乘法剂,将这些热化学量与一摩尔金属离子相比。结果表明,这些功能中的一种PHI表征了多核配合物的形成程度。在单核复合物的同时形成的情况下,衍生的表达可用于区分各个复杂形成反应对整个过程的H和C-P的单独贡献。

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