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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Metal-organic complexes in geochemical processes: Temperature dependence of the standard thermodynamic properties of aqueous complexes between metal cations and dicarboxylate ligands
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Metal-organic complexes in geochemical processes: Temperature dependence of the standard thermodynamic properties of aqueous complexes between metal cations and dicarboxylate ligands

机译:地球化学过程中的金属有机配合物:金属阳离子和二羧酸盐配体之间的水性配合物的标准热力学性质的温度依赖性

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摘要

By combining results from regression and correlation methods, standard state thermodynamic properties for aqueous complexes between metal cations and divalent organic acid ligands (oxalate, malonate, succinate, glutarate, and adipate) are evaluated and applied to geochemical processes. Regression of experimental standard-state equilibrium constants with the revised Helgeson-Kirkham-Flowers (HKF) equation of state yields standard partial molal entropies (S) of aqueous metal-organic complexes, which allow determination of thermodynamic properties of the complexes at elevated temperatures. In cases where S is not available from either regression or calorimetric measurement, the value of S can be estimated from a linear correlation between standard partial molal entropies of association (#DELTA#S_r) and standard partial molal entropies of aqueous cation (S_M). The correlation is independent of cation charge, which makes it possible to predict S for complexes between divalent organic acids and numerous metal cations. Similarly, correlations between standard Gibbs free energies of association of metal-organic complexes (#DELTA#G_r) and Gibbs free energies of formation (#DELTA#G_f) for divalent metal cations allow estimates of standard-state equilibrium constants where experimental data are not available. These correlations are found to be a function of ligand structure and cation charge. Predicted equilibrium constants for dicarboxylate complexes of numerous cations were included with those for inorganic and other organic complexes to study the effects of dicarboxylate complexes on the speciation of metals and organic acids in oil-field brines. Relatively low concentrations of oxalic and malonic acids affect the speciation of cations more than similar concentrations of succinic, glutaric, and adipic acids. However, the extent to which metal-dicarboxylate complexes contribute to the speciation of dissolved metals depends on the type of dicarboxylic acid ligand; relative concentration of inorganic, mono-, and dicarboxylate ligands; and the type of metal cation. As an example, in the same solution, dicarboxylic acids have a greater influence on the speciation of Fe~(+2) and Mg~(+2) than on the speciation of Zn~(+2) and Mn~(+2).
机译:通过结合回归和相关方法的结果,可以评估金属阳离子与二价有机酸配体(草酸盐,丙二酸盐,琥珀酸盐,戊二酸盐和己二酸盐)之间的水络合物的标准状态热力学性质,并将其应用于地球化学过程。用修正的Helgeson-Kirkham-Flowers(HKF)状态方程对实验标准状态平衡常数进行回归可得出金属-有机配合物的标准部分摩尔摩尔熵(S),从而可以确定配合物在高温下的热力学性质。如果无法通过回归或量热测量获得S,则可以根据缔合的标准部分摩尔熵(#DELTA#S_r)和水性阳离子的标准部分摩尔熵(S_M)之间的线性相关性来估算S的值。该相关性与阳离子电荷无关,这使得可以预测二价有机酸与多种金属阳离子之间的配合物的S。同样,金属-有机配合物缔合的标准吉布斯自由能(#DELTA#G_r)与二价金属阳离子的吉布斯形成自由能(#DELTA#G_f)之间的相关性允许在没有实验数据的情况下估计标准态平衡常数可用。发现这些相关性是配体结构和阳离子电荷的函数。为了研究二羧酸盐配合物对油田盐水中金属和有机酸的形态形成的影响,包括了许多阳离子的二羧酸配合物的预测平衡常数以及无机和其他有机配合物的平衡常数。相对较低浓度的草酸和丙二酸比类似浓度的琥珀酸,戊二酸和己二酸影响阳离子的形成。但是,金属二羧酸盐配合物对溶解金属形态的贡献程度取决于二羧酸配体的类型。无机,单和二羧酸配体的相对浓度;以及金属阳离子的类型。例如,在同一溶液中,二元羧酸对Fe〜(+2)和Mg〜(+2)的形态的影响大于对Zn〜(+2)和Mn〜(+2)的形态的影响。 。

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