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Thermodynamic properties of Ca-Pb electrodes determined by electromotive force measurements

机译:通过电动势测量确定Ca-Pb电极的热力学性质

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摘要

Thermodynamic properties of Ca-Pb alloys are investigated by electromotive force (emf) measurements to determine equilibrium cell potentials and phase properties for their application in energy storage systems such as liquid metal batteries. Using the electrochemical cell Ca(s) vertical bar CaF2(s) vertical bar Ca(in Pb) at 700-1060 K, cell emf is measured for thirteen Ca-Pb alloys at mole fractions, x(Ca) = 0.06-0.80. At 873 K, the equilibrium potentials of liquid Ca-Pb alloys are 0.57-0.62 V versus Ca and the activity values are as low as a(Ca), = 6.2 x 10(-8) at x(Ca) = 0.06. In addition, the emf values as a function of temperature provide partial molar quantities (entropy and enthalpy) as well as phase transitions which are corroborated by determining transition temperatures and phase constituents using differential scanning calorimetry (DSC) and powder X-ray diffraction (XRD). This work establishes the fundamental data necessary for the design of Pb-containing liquid metal electrodes through the integration of electrochemical, thermal, and structural properties of Ca-Pb electrodes.
机译:通过电动势(emf)测量来研究Ca-Pb合金的热力学性质,以确定平衡电池的电势和相性质,以将其应用于储能系统(例如液态金属电池)中。使用700-1060 K下的电化学电池Ca垂直棒CaF2垂直棒Ca(in Pb),以摩尔分数x(Ca)= 0.06-0.80测量13种Ca-Pb合金的电池电动势。在873 K时,液态Ca-Pb合金的平衡电位相对于Ca为0.57-0.62 V,并且在x(Ca)= 0.06时,活度值低至a(Ca)= 6.2 x 10(-8)。此外,作为温度函数的电动势值提供了部分摩尔量(熵和焓)以及相变,这些相变通过使用差示扫描量热法(DSC)和粉末X射线衍射(XRD)确定转变温度和相成分来得到证实)。这项工作通过整合Ca-Pb电极的电化学,热和结构特性,为设计含Pb的液态金属电极建立了必要的基础数据。

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