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Application of the Pitzer Model to Assignment of pH to Phthalate Standard Buffer Solutions

机译:Pitzer模型在邻苯二甲酸标准缓冲液的pH分配中的应用

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Stoichiometric ionization constants of phthalic acid have been determined in potassium chloride solutions at temperatures from 10 to 40 A degrees C, with molalities up to 3 mola <...kg(-1), from potentiometric titrations of potassium hydrogen phthalate. The procedure described by Gans and O'Sulliven (Talanta 51:33-37, 2000) was followed to calibrate the electrochemical cell in terms of hydrogen ion concentration and the SUPERQUAD program was used for the calculations. Pitzer's ion-interaction equation was applied to this system for the calculation of activity coefficients and a good fit was observed at all temperatures. From these results and from phthalic acid solubilities, Pitzer model coefficients were determined which enabled the evaluation of the activity coefficient of each chemical species, including that of the chloride ion, that are necessary for the establishment of phthalate pH standards at ionic strengths higher than 0.1 mola <...kg(-1)(the upper limit of applicability of the Bates-Guggenheim convention).
机译:邻苯二甲酸氢钾的电位滴定法已在10至40 A的温度下,在氯化钾溶液中测定邻苯二甲酸的化学计量电离常数,其摩尔浓度最高为3 mola <... kg(-1)。遵循Gans和O'Sulliven(Talanta 51:33-37,2000)所描述的程序,以氢离子浓度校准电化学电池,并使用SUPERQUAD程序进行计算。将Pitzer的离子相互作用方程式应用于该系统以计算活度系数,并且在所有温度下均观察到良好的拟合。根据这些结果和邻苯二甲酸的溶解度,确定了Pitzer模型系数,该系数能够评估每种化学物质(包括氯离子)的活度系数,这对于建立离子强度高于0.1的邻苯二甲酸盐pH标准是必需的。 mola <... kg(-1)(Bates-Guggenheim公约适用范围的上限)。

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