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The miscibility gap between rhodonite and bustamite along the join MnSiO3-Ca0.60Mn0.40SiO3
Authors:J Abrecht  Tj Peters
Institution:(1) Mineralogisch-petrographisches Institut der Universität Bern, Sahlistr. 6, 3012 Bern, Switzerland;(2) Present address: Department of Geological Sciences, Virginia Polytechnic Institute and State University, 24061 Blacksburg, Virginia, USA
Abstract:The miscibility gap between rhodonite and bustamite has been experimentally determined at temperatures between 600° and 1,100° C. For temperatures below 700° C the resulting limbs have been extrapolated on T-X-diagram as at such low temperatures equilibrium could not be attained. According to microprobe analyses for the natural assemblages of Ravinella di Sotto (Ivrea zone, Italy) and Broken Hill (N.S.W., Australia) equilibrium temperatures are estimated to be at 500° to 550° C. However these assemblages are thought to have re-equilibrated during cooling and the compositions of equilibrium assemblages are also pressure dependent. According to experiments and to molar volume data the rhodonite structure is stabilized by high pressures whereas bustamite by high temperatures. Based on available experimental results and natural data an isobaric T-X Ca diagram and two isotherm 
$$X_{CO_2 }$$
-X Ca diagrams (for T=400° C and T=600° C) are given.
Keywords:
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