柠檬酸-柠檬酸钠-水溶液的酸碱及电化学行为

R. E. Khoma, T. S. Bіenkovska, L. T. Osadchiy, Yu. V. Ishkov
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引用次数: 0

摘要

用pH法和电导法研究了柠檬酸(H3Cit) -柠檬酸钠(Na3Cit) -水体系在柠檬酸、二氢柠檬酸(H2Cit-)、氢柠檬酸(HCit2-)和柠檬酸(Cit3-)阴离子总含量1.0 mol/l时的原水解平衡。pH - lg(νH3Cit/νNa3Cit)和κ - CNa+/Ccit函数线性的第一个浓度范围对应于H3Cit/H2Cit-缓冲体系;第二种为H3Cit/H2Cit-和H2Cit-/HCit2-;第三种是- HCit2-/Cit3-缓冲系统。根据质量作用定律、柠檬酸盐的物质平衡和电中性原理,利用数学模型计算了所研究溶液的离子分子组成和离子强度(m, mol/l)。由于所研究溶液的离子分子组成具有多组分性质,离子强度浓度依赖关系具有复杂性。在浓度区间0≤[Na+]/CCit≤1.0和2.0≤[Na+]/CCit≤3.0时,离子强度值与比值[Na+]/CCit成正比。在1.0≤[Na+]/CCit≤2.0的浓度范围内,m = 1.15±0.27 mol/l)与[Na+]/CCit比的关系较弱,与温度的关系不大。测定了第一、第二和第三解离阶段的柠檬酸浓度和热力学常数。所得溶液HOC3H4(COOH)3 - HOC3H4(COONa)3 - H2O(СCit = 1.0 mol/l;СNa+ = 0 ÷ 1.0 mol/l)可用于化学分析、微生物学和生化研究,所研究溶液的酸度数据可以模拟酸性(SO2)和/或碱性(NH3)气体的化学吸附。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CITRIC ACID–SODIUM CITRATE–WATER SOLUTIONS ACID-BASE AND ELECTROCHEMICAL BEHAVIOR
The protolytic equilibria in the system citric acid (H3Cit)–sodium citrate (Na3Cit)–water at a total content of citrates forms (citric acid, dihydrocitrate (H2Cit-), hydrocitrate (HCit2-) and citrate (Cit3-) anions) 1.0 mol/l have been studied by pH- and conductometric methods in the temperature range 293 ÷ 313 K. The first concentration ranges at which pH – lg(νH3Cit/νNa3Cit) and κ – CNa+/Ccit functions are linear correspond to the H3Cit/H2Cit- buffer system; the second ones – to H3Cit/H2Cit- and H2Cit-/HCit2-; the third ones to – HCit2-/Cit3- buffer system. The investigated solutions ion-molecular composition and ionic strength (m, mol/l) have been calculated using the mathematical model taking into account the law of mass action, material balance for citrates and electrical neutrality principle. The ionic strength concentration dependences have a complex character due to the ion-molecular composition multicomponent nature for the studied solutions. The ionic strength values are directly proportional to the ratio [Na+]/CCit in the concentration intervals 0 ≤ [Na+]/CCit ≤ 1.0 and 2.0 ≤ [Na+]/CCit ≤ 3.0. In the concentration range 1.0 ≤ [Na+]/CCit ≤ 2.0, the values of m = 1.15 ± 0.27 mol/l) weakly depend on the [Na+]/CCit ratio and practically do not depend on temperature. Citric acid concentration and thermodynamic constants for the first, second, and third dissociation stages have been determined. The obtained data on the acid-base and electrochemical characteristics of the solutions HOC3H4(COOH)3 – HOC3H4(COONa)3 – H2O(СCit = 1.0 mol/l; СNa+ = 0 ÷ 1.0 mol/l) can be used in chemical analysis, microbiological and biochemical studies, and the acidity data of the solutions studied can simulate chemisorption of acidic (SO2) and/or basic (NH3) gases.
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