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Thermodynamic data from redox reactions at high temperatures. VI. Thermodynamic properties of CoO-MnO solid solutions from emf measurements

机译:高温下氧化还原反应的热力学数据。 VI。通过电动势测量CoO-MnO固溶体的热力学性质

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Activities of CoO in (Co,Mn)O solid solutions in contact with metallic Co have been determined on ten compositions ranging from 0.12 to 0.84 X_(CoO) in order to calibrate the divariant equilibrium between (Co,Mn)O oxide solutions and Co metal as an oxygen fugacity sensor for application in experimental petrology. Experiments were conducted over the temperature range 900-1300 K at 1 bar, using an electrochemical technique with oxygen-specific calcia-stabilized zirconia (CSZ) electrolytes. Co+CoO or Fe+FeO was used as the reference electrode. Compositions of the (Co,Mn)O solid solutions were measured after each run by electron microprobe, and these were checked for internal consistency by measuring the lattice parameter by X-ray diffraction. Activity-composition relations were fitted to the Redlich-Kister formalism. (Co,Mn)O solid solutions exhibit slight positive deviations from ideality, which are symmetrical (corresponding to a regular solution mixing model) across the entire composition range with A_0~G = 3690(+-47) #mu#O_2=#mu#O_2~(CoCoO)+2RT lnX_(CoO)+2(1-X_(CoO)~(2)(4558-0.773T) (900
机译:为了校准(Co,Mn)O氧化物溶液与Co之间的二元平衡,已经确定了CoO在与金属Co接触的(Co,Mn)O固溶体中的活性,范围从0.12至0.84 X_(CoO)。金属作为氧逸度传感器,用于实验岩石学。使用具有氧特异性氧化钙稳定的氧化锆(CSZ)电解质的电化学技术,在900 bar-1300 K的温度范围内以1 bar进行了实验。 Co + CoO或Fe + FeO用作参比电极。每次运行后,通过电子探针测量(Co,Mn)O固溶体的组成,并通过X射线衍射测量晶格参数来检查内部一致性。活动构图关系适用于Redlich-Kister形式主义。 (Co,Mn)O固溶体与理想状态之间存在微小的正偏差,在A_0〜G = 3690(+-47)#mu#O_2 =#mu的整个组成范围内呈对称性(对应于常规溶液混合模型) #O_2〜(CoCoO)+ 2RT lnX_(CoO)+2(1-X_(CoO)〜(2)(4558-0.773T)(900

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