THE SOLUBILITY OF RHENIUM IN SILICATE MELTS: IMPLICATIONS FOR THE GEOCHEMICAL PROPERTIES OF RHENIUM AT HIGH TEMPERATURES

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dc.contributor.author Ertel W.
dc.contributor.author O'Neill H.S.C.
dc.contributor.author Sylvester P.J.
dc.contributor.author Dingwell D.B.
dc.contributor.author Spettel B.
dc.date.accessioned 2021-03-10T04:28:35Z
dc.date.available 2021-03-10T04:28:35Z
dc.date.issued 2001
dc.identifier https://www.elibrary.ru/item.asp?id=731367
dc.identifier.citation Geochimica et Cosmochimica Acta, 2001, 65, 13, 2161-2170
dc.identifier.issn 0016-7037
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/26539
dc.description.abstract The solubility of rhenium (Re) in a haplobasaltic melt (anorthite-diopside eutectic composition) has been experimentally determined using the mechanically assisted equilibration technique at 1400°C as a function of oxygen fugacity (10-12 < fO2 =< 10-7 bar), imposed by CO-CO2 gas mixtures. Samples were analysed by laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS). This is a true microanalytical technique, which allows small-scale sample heterogeneity to be detected, while providing a limit of detection of 2 ppb Re. Time-resolved LA-ICP-MS spectra revealed the presence of suboptically sized micronuggets of Re in all samples, which, because they are present at the 0.5 to 10 ppm level, dominate the true solubilities of Re (<1 ppm at the conditions of experiment) in bulk analyses samples. nevertheless, micronuggets could be filtered out from time-resolved spectra to reveal accurate values true re solubility. a number time series samples were taken constant fo2 to demonstrate that the solubilities converge to a constant value. In addition, solubilities were measured after increasing and decreasing the imposed fO2. The results show that Re dissolves in the silicate melt as ReO2 (Re4+) and ReO3 (Re6+) species, with the latter predominating at typical terrestrial upper-mantle oxygen fugacities. The total solubility of Re is described by the following expression (fO2 in bars): [Re/ppb] = 9.7(+/-1.9) x 109 (fO2) + 4.2 (+/-0.3) x 1014 (fO2)1.5Assuming an activity coefficient for Re in Fe-rich metal of 1, this gives a value of DRemet/sil of 5 x 1010 at log fO2 = IW-2, appropriate for metal-silicate partitioning in an homogenously accreting Earth. Thus, Re is indeed very highly siderophile, and the mantle's abundance cannot be explained by homogenous accretion.
dc.title THE SOLUBILITY OF RHENIUM IN SILICATE MELTS: IMPLICATIONS FOR THE GEOCHEMICAL PROPERTIES OF RHENIUM AT HIGH TEMPERATURES
dc.type Статья


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