Platinum Partitioning at Low Oxygen Fugacity: Implications for Core Formation ProcessesHighly siderophile elements (HSE = Au, Re, and the Pt-group elements) are tracers of silicate / metal interactions during planetary processes. Since most core-formation models involve some state of equilibrium between liquid silicate and liquid metal, understanding the partioning of highly siderophile elements (HSE) between silicate and metallic melts is a key issue for models of core / mantle equilibria and for core formation scenarios. However, partitioning models for HSE are still inaccurate due to the lack of sufficient experimental constraints to describe the variations of partitioning with key variable like temperature, pressure, and oxygen fugacity. In this abstract, we describe a self-consistent set of experiments aimed at determining the valence of platinum, one of the HSE, in silicate melts. This is a key information required to parameterize the evolution of platinum partitioning with oxygen fugacity.
Document ID
20160003884
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Medard, E. (Lunar and Planetary Inst. Houston, TX, United States)
Martin, A. M. (Case Western Reserve Univ. Cleveland, OH, United States)
Righter, K. (NASA Johnson Space Center Houston, TX, United States)
Lanziroti, A. (Chicago Univ. Chicago, IL, United States)
Newville, M. (Chicago Univ. Chicago, IL, United States)