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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The stoichiometric dissociation constants of carbonic acid in seawater brines from 298 to 267 K
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The stoichiometric dissociation constants of carbonic acid in seawater brines from 298 to 267 K

机译:海水盐水中碳酸的化学计量解离常数从298到267 K.

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The stoichiometric dissociation constants of carbonic acid (K-1C(*) and K-2C(*)) were determined by measurement of all four measurable parameters of the carbonate system (total alkalinity, total dissolved inorganic carbon, pH on the total proton scale, and CO2 fugacity) in natural seawater and seawater-derived brines, with a major ion composition equivalent to that of Reference Seawater, to practical salinity (S-P) 100 and from 25 similar to degrees C to the freezing point of these solutions and -6 degrees C temperature minimum. These values, reported in the total proton scale, provide the first such determinations at below-zero temperatures and for SP >50. The temperature (T, in Kelvin) and SP dependence of the current pK(1C)(*) and pK(2C)(*) (as negative common logarithms) within the salinity and temperature ranges of this study (33 <= S-P <= 100, -6 degrees C <= t <= 25 degrees C) is described by the following best-fit equations: pK(1C)(*) = -176.48 + 6.14528 S-P(0.5) - 0.127714 S-P + 7.396 x 10(-5) S-P(2) + (9914.37 - 622.886 S-P(0.5) P + 29.714 S-P) T-1 + (26.05129 - 0.666812 S-P(0:57)) lnT (sigma = 0.011, n = 62), and pK(2C)(*) = -323.52692 + 27.557655 S-P(0:5) + 0.154922 S-P - 2.48396 x 10(-4) S-P(2) + (14763.287 - 1014.819 S-P(0:5) - 14.35223 S-P) T-1 + (50.385807 - 4.4630415 S-P(0:5)) lnT (sigma = 0.020, n = 62). These functions are suitable for application to investigations of the carbonate system of internal sea ice brines with a conservative major ion composition relative to that of Reference Seawater and within the temperature and salinity ranges of this study. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过测量碳酸酯体系的所有四个可测量参数(总碱度,总溶解的无机碳,pH值的全质子尺度的所有四个可测量参数测定,测定碳酸(K-1C(*)和K-2C(*))的化学计量离解常数在天然海水和海水衍生的盐水中,具有相当于参考海水的主要离子组成,与这些解决方案的冻结点相似的主要离子组合物,其具有相当于参考海水的主要离子组合物,以及25°和-6的冷冻点最小C温度最小。这些值报告在总质子尺度中,在低于零温度和SP> 50处提供第一种此类确定。本研究盐度和温度范围内当前PK(keelvin)和目前PK(1c)(*)和pk(*)(*)(*)(作为阴性常见对数)的温度(t,kelvin)和sp依赖性(33 <= sp < = 100,以下最适合方程描述了-100,-6摄氏度C <= T <= 25℃):PK(1C)(*)= -176.48 + 6.14528 SP(0.5) - 0.127714 SP + 7.396 x 10( -5)SP(2)+(9914.37 - 622.886 SP(0.5)P + 29.714 SP)T-1 +(26.05129 - 0.666812 SP(0:57))LNT(Sigma = 0.011,n = 62)和PK( 2C)(*)= -323.52692 + 27.557655 SP(0:5)+ 0.154922 SP - 2.48396 x 10(-4)SP(2)+(14763.287 - 1014.819 SP(0:5) - 14.35223 SP)T-1 + (50.385807 - 4.4630415 SP(0:5))LNT(Sigma = 0.020,n = 62)。这些功能适用于应用相对于参考海水和该研究的温度和盐度范围内具有保守的主要离子组成的内部海绵碳水树的碳酸盐系统的研究。 (c)2017 Elsevier Ltd.保留所有权利。

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