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首页> 外文期刊>Journal of Solution Chemistry >Measurements of Dissociation Constants of Carbonic Acid in Synthetic Seawater by Means of a Cell Without Liquid Junction
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Measurements of Dissociation Constants of Carbonic Acid in Synthetic Seawater by Means of a Cell Without Liquid Junction

机译:通过无液体结的池测量合成海水中碳酸的解离常数

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Using the "total hydrogen ion concentration scale", the first, K_1, and second, K_2, stoichiometric dissociation constants of carbonic acid have been determined in synthetic seawater for temperature and salinity ranges of 0-30 ℃ and 1.5-40, respectively. The values of the K_1 have been determined potentiometrically by means of a cell without liquid junction, composed using a pH-glass electrode and silver-silver chloride electrode. This cell was equilibrated with CO_2 at 1 atm total pressure. The same cell was used for the determination of K_2. Dissolved inorganic carbon was measured by the coulometric method, total alkalinity was known from the preparation of the synthetic seawater, and pH measurements provided the data required for the calculations of K_2. Estimated precision is about ±0.003 pK and uncertainty less than 0.01 pK for K_1 and twice that for K_2. Our K_1 data agree with "best" published data within ±0.01 for log_(10)K_1 in the 30-40 salinity range obtained for natural seawater, but become progressively higher as the salinity decreases. Our results for the second stoichiometric dissociation constants agree within ±0.015 for log_(10)K_2 in the 30-40 salinity range with available "best" published data for natural seawater, but become progressively lower as the salinity decreases. Since constants obtained in this paper are reliable for the high salinity range (25-40) and strive to the thermodynamic constants at 0 salinity, they are recommended for study of carbonate system in estuaries.
机译:使用“总氢离子浓度标度”,在温度和盐度范围分别为0-30℃和1.5-40的情况下,确定了合成海水中碳酸的第一化学计量离解常数K_1和第二化学计量离解常数K_2。 K_1的值已通过使用pH玻璃电极和银-氯化银银电极组成的无液体结的电池通过电位计确定。在总压力为1 atm的条件下用CO_2平衡该电池。同一池用于测定K_2。通过库仑法测量溶解的无机碳,从合成海水的制备中得知总碱度,pH测量提供了计算K_2所需的数据。估计的精度约为±0.003 pK,不确定度对于K_1小于0.01 pK,对于K_2则为两倍。我们的K_1数据与在自然海水中获得的30-40盐度范围内log_(10)K_1的log_(10)K_1的“最佳”公开数据相吻合,但随着盐度的降低而逐渐提高。我们的第二个化学计量解离常数的结果在30-40盐度范围内与log_(10)K_2的log_(10)K_2与可用的“最佳”公布的天然海水数据相吻合,但随着盐度降低而逐渐降低。由于本文获得的常数在高盐度范围(25-40)时是可靠的,并且力争在0盐度下达到热力学常数,因此建议将其用于河口碳酸盐体系研究。

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