K IN CLINOPYROXENE AT HIGH PRESSURE AND TEMPERATURE: AN EXPERIMENTAL STUDY

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dc.contributor.author Harlow G.E.
dc.date.accessioned 2020-12-12T05:11:22Z
dc.date.available 2020-12-12T05:11:22Z
dc.date.issued 1997
dc.identifier https://elibrary.ru/item.asp?id=31670315
dc.identifier.citation American Mineralogist, 1997, , 3, 259-269
dc.identifier.issn 0003-004X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/20611
dc.description.abstract Clinopyroxene (Cpx) is a principal upper-mantle phase for concentrating large cations but has not been viewed as a major crystal-chemical reservoir for K because K 1 is considered too large to enter the largest site, M2, in the pyroxene structure. Accumulating data from high-pressure conditions indicate this inference is incorrect, so multianvil experiments have been performed to evaluate maximal K solubility in Cpx at high pressure. End members and mixtures of diopside, jadeite, and kosmochlor have been mixed with K2CO3, KHCO3 or both in welded platinum capsules and heated typically for 24 h in the range of 5 to 14 GPa and 1200 to 1700 8C. These experiments produced K-rich Cpx in solid solutions by means of a fictive Kcpx component (KCrSi 2O6 or KAlSi2O6). The maximum K2O content obtained is 4.7 wt% in a Cpx (Di38Ko39Kcpx22En1) formed from a 50:50 Di 1 Ko mixture at 10 GPa, 1400 8C. K uptake and partitioning is dependent positively on P, complexly on Cpx com- position but not demonstrably on T. Cpx/liq is in the range of 0.03-0.1 and Cpx/liq varies DD KO Na O 2 2 from 0.5 to 5, although the variations for each with Cpx composition are different. In di- opside, Kcpx increases are always accompanied by increases in Nacpx, and cooperative Nacpx solution is necessary for Kcpx solution in the compositional systems examined. K appears to be accommodated in the M2 site of the Cpx structure by two types of spatial averaging: a large average M2 site, as in the case of Di, ameliorates the fit, but local accommodation by size averaging with a smaller M2 occupant, presumably Na, appears necessary, suggesting that the polyhedral compressibility of Na and K are large in compar- ison with Ca. In application to Cpx inclusions in diamond, the data here imply that a chro- mium diopside with ;1 wt% K2O forms in the presence of a C-rich melt with 15-28 wt% K2O.
dc.title K IN CLINOPYROXENE AT HIGH PRESSURE AND TEMPERATURE: AN EXPERIMENTAL STUDY
dc.type Статья


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