首页> 外文期刊>The Journal of Chemical Thermodynamics >A REVIEW OF SOME ASPECTS OF ELECTROMOTIVE-FORCE MEASUREMENTS FOR THE CELLS - PT-VERTICAL-BAR-H-2(G,P-DEGREES)VERTICAL-BAR-H2SO4(AQ)VERTICAL-BAR-PBO2(S) VERTICAL-BAR-PBSO4(S)VERTICAL-BAR-PT, AND PT-VERTICAL-BAR-H-2(G,P-DEGREES)VERTICAL-BAR-H2SO4(AQ)VE
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A REVIEW OF SOME ASPECTS OF ELECTROMOTIVE-FORCE MEASUREMENTS FOR THE CELLS - PT-VERTICAL-BAR-H-2(G,P-DEGREES)VERTICAL-BAR-H2SO4(AQ)VERTICAL-BAR-PBO2(S) VERTICAL-BAR-PBSO4(S)VERTICAL-BAR-PT, AND PT-VERTICAL-BAR-H-2(G,P-DEGREES)VERTICAL-BAR-H2SO4(AQ)VE

机译:电池的电动势测量的某些方面-PT-垂直-BAR-H-2(G,P-度)VERTICAL-BAR-H2SO4(AQ)VERTICAL-BAR-PBO2(S)垂直-BAR- PBSO4(S)VERTICAL-BAR-PT和PT-VERTICAL-BAR-H-2(G,P-DEGREES)VERTICAL-BAR-H2SO4(AQ)VE

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In 1935 Hamer (J. Am. Chem. Sec. 1935, 57, 9) and Harned and Hamer (J. Am. Chem. Sec. 1935, 57, 27) published the results of extensive e.m.f. measurements for the activities of H2SO4 (ag) from low to high molalities over the temperature range 273.15 K to 333.15 K, using the electrochemical cells: PtH-2(g, p = 0.101325 MPa)H2SO4(aq)PbO2(s)PbSO4(s)Pt, and PtH-2(g, p = 0.101325 MPa)H2SO4(aq)Hg2SO4(s)Hg(1)Pt. The e.m.f.s were reported only as least-squares functions of temperature at rounded molalities. These results were criticized severely in the ensuing years as yielding inaccurate values of water activities and mean activity coefficients at molalities above 3 mol.kg(-1), values of the standard potentials and standard enthalpies of the cell reactions that depend on the molality of H2SO4 (aq), and incorrect entropy changes for the cell reactions. However, there are more recent claims that these e.m.f.s are accurate. The original measured potentials for the first cell from (0.0004985 to 7.093) mol.kg(-1) at the temperature 273.15 K were located (Harned, H. S.; Hamer, W. J. U.S. Naval Research Laboratory Report No. P-1071, 1934), and the available evidence was critically examined. We conclude that their experimental e.m.f.s at this temperature are accurate to at worst (0.1 to 0.2) mV up to 2.2 mol.kg(-1) or higher, except for a large bias potential as is typical for this cell. At higher temperatures, the sums of the reported smoothed e.m.f.s for these two cells are consistent to a few hundredths of a mV up to (2 to 3) mol.kg(-1). For the individual cells in this molality region, however, the smoothed e.m.f.s yield standard potentials that show molality-dependent variations of(0.9 to 1.6) mV, with the size of this variation increasing with temperature. We attribute this variation partly to their graphical smoothing of e.m.f.s to round molalities. It is likely that the cells no longer behaved reversibly above (2 to 3) mol.kg(-1). [References: 46]
机译:1935年Hamer(J. Am。Chem。Sec。1935,57,9)和Harned and Hamer(J. Am。Chem。Sec。1935,57,27)发表了广泛的e.m.f.使用电化学电池Pt H-2(g,p = 0.101325 MPa) H2SO4(aq) PbO2(在273.15 K至333.15 K的温度范围内从低到高的摩尔浓度测量H2SO4(ag)的活性s) PbSO4(s) Pt和Pt H-2(g,p = 0.101325 MPa) H2SO4(aq) Hg2SO4(s) Hg(1) Pt。 e.m.f.s仅以四舍五入的摩尔浓度记录为温度的最小二乘函数。在随后的几年中,这些结果遭到了严厉的批评,因为水活度的值和摩尔浓度高于3 mol.kg(-1)的平均活度系数,取决于细胞摩尔浓度的细胞反应的标准电势和标准焓值不准确。 H2SO4(水溶液),以及细胞反应的错误熵变化。但是,最近有一些声称这些e.m.f.s是准确的。找到第一个电池在273.15 K温度下从(0.0004985至7.093)mol.kg(-1)的原始测量电势(Harned,HS; Hamer,W​​JUS海军研究实验室报告编号P-1071,1934),以及严格审查了现有证据。我们得出的结论是,在此温度下的实验e.m.f.s精确到最坏(0.1至0.2)mV,最高达2.2 mol.kg(-1)或更高,除了该电池通常具有的大偏置电位之外。在较高的温度下,这两个电池的已报告平滑e.m.f.s的总和与高达(2至3)mol.kg(-1)的百分之几的mV一致。但是,对于该摩尔浓度区域中的单个电池,平滑后的e.m.f.产生的标准电势显示出(0.9至1.6)mV的摩尔浓度依赖性变化,该变化的大小随温度而增加。我们将此变化部分归因于他们对e.m.f.s的图形平滑处理,以反映出圆摩尔数。高于(2至3)mol.kg(-1)时,细胞可能不再表现出可逆性。 [参考:46]

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