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Discussion of 'use of solid electrolyte galvanic cells to determine the activity of CaO in the $CaO-ZrO_2$ system and standard Gibbs free energies of formation of $CaZrO_3$ from CaO and $ZrO_2$'

机译:讨论“使用固体电解质原电池确定$ CaO-ZrO_2 $系统中CaO的活性以及由CaO和$ ZrO_2 $形成的$ CaZrO_3 $的标准吉布斯自由能”

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摘要

In a recent article, Tanabe and Nagata[1] have used Ca4P2O9 (4CaOzP2O5) as a solid electrolyte in a cell designed to measure the activity of CaO in the system CaOZrO 2 between 1572 and 1877 K. The article is interesting, not only because of new data obtained on an important system, but also because the authors have tried to extend the current experimental capabilities for measuring the activity of CaO to higher temperatures than is possible with the well-established CaF2 solid electrolyte.[2,3,4] At temperatures above 1300 K, CaF2 begins to soften and it is difficult to use the material in solid-state cells. The only other solid electrolyte suitable for measuring the activity of CaO at higher temperatures is Ca b"-alumina. The b"-alumina phase is metastable in the CaO-Al2O3 system. It is stabilized by the addition of MgO, with the MgO/CaO molar ratio varying from 0.7 to 0.8. However, calcium b"-alumina is not in equilibrium with CaO. Hence, pure CaO cannot be used as a reference electrode, despite claims to the contrary by Kumar and Kay[5] and Rog and Kozlowska-Rog.[6] Several intermediate aluminates form at the interface between the electrolyte and the CaO reference electrode.[7] Thus, the development of new solid electrolytes for measuring the activity of CaO at T . 1300 K is important for the development of the theoretical basis of extractive metallurgy and high-temperature ceramic processing. Earlier work by Tanabe et al.[8] had established that Ca4P2O9 is an ionic conductor with transference number of Ca2+ ion close to unity in the temperature range 1373 to 1873 K and oxygen partial pressure range from 105 to 1025 Pa.
机译:在最近的一篇文章中,Tanabe和Nagata [1]使用Ca4P2O9(4CaOzP2O5)作为电池中的固体电解质,该电池旨在测量CaOZrO 2系统在1572至1877 K之间的CaO活性。该文章很有趣,不仅因为在重要系统上获得的新数据,也因为作者试图将目前用于测量CaO活性的实验能力扩展到比使用完善的CaF2固体电解质更高的温度。[2,3,4]在高于1300 K的温度下,CaF2开始软化,很难在固态电池中使用该材料。适用于测量高温下CaO活性的唯一其他固体电解质是Ca b“-氧化铝。b”-氧化铝相在CaO-Al2O3系统中是亚稳的。通过添加MgO使它稳定,MgO / CaO摩尔比在0.7到0.8之间变化。但是,b“-氧化铝钙与CaO并不平衡。因此,尽管Kumar和Kay [5]以及Rog和Kozlowska-Rog [6]提出相反的意见,但是纯CaO不能用作参比电极。铝酸盐形成在电解质和CaO参比电极之间的界面上。[7]因此,开发用于测量T. 1300 K下CaO活性的新型固体电解质对于萃取冶金和高纯金属的理论基础的发展很重要。 Tanabe等人[8]的早期工作已经确定,Ca4P2O9是一种离子导体,在1373至1873 K的温度范围内,Ca2 +离子的转移数接近于1,氧分压在105至1025 Pa的范围内。 。

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    Jacob KT;

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  • 年度 1997
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