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Non-chondritic distribution of the highly siderophile elements in mantle sulphides

dc.contributor.authorAlard, Oen
dc.contributor.authorGriffin, WLen
dc.contributor.authorLorand, JPen
dc.contributor.authorJackson, SEen
dc.contributor.authorO'Reilly, SYen
dc.date.accessioned2025-05-30T03:28:32Z
dc.date.available2025-05-30T03:28:32Z
dc.date.issued2000-10-19en
dc.description.abstractThe abundances of highly siderophile (iron-loving) elements (HSEs) in the Earth's mantle provide important constraints on models of the Earth's early evolution. It has long been assumed that the relative abundances of HSEs should reflect the composition of chondritic meteorites-which are thought to represent the primordial material from which the Earth was formed. But the non-chondritic abundance ratios recently found in several types of rock derived from the Earth's mantle(1-3) have been difficult to reconcile with standard models of the Earth's accretion(4-9), and have been interpreted as having arisen from the addition to the primitive mantle of either non-chondritic extraterrestrial material or differentiated material from the Earth's core. Here we report in situ laser-ablation analyses of sulphides in mantle-derived rocks which show that these sulphides do not have chondritic HSE patterns, but that different generations of sulphide within single samples show extreme variability in the relative abundances of HSEs. Sulphides enclosed in silicate phases have high osmium and iridium abundances but low Pd/Ir ratios, whereas pentlandite-dominated interstitial sulphides show low osmium and iridium abundances and high Pd/Ir ratios. We interpret the silicate-enclosed sulphides as the residues of melting processes and interstitial sulphides as the crystallization products of sulphide-bearing (metasomatic) fluids. We suggest that non-chondritic HSE patterns directly reflect processes occurring in the upper mantle-that is, melting and sulphide addition via metasomatism-and are not evidence for the addition of core material or of 'exotic' meteoritic components.en
dc.description.statusPeer-revieweden
dc.format.extent4en
dc.identifier.issn0028-0836en
dc.identifier.otherWOS:000089901900047en
dc.identifier.otherPubMed:11057664en
dc.identifier.scopus0034687382en
dc.identifier.urihttps://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=anu_research_portal_plus2&SrcAuth=WosAPI&KeyUT=WOS:000089901900047&DestLinkType=FullRecord&DestApp=WOS_CPLen
dc.identifier.urihttps://hdl.handle.net/1885/733754587
dc.language.isoenen
dc.sourceNatureen
dc.subjectPlatinum-group elementsen
dc.subjectSpinel-lherzoliteen
dc.subjectSolid-solutionen
dc.subjectPalladiumen
dc.subjectOriginen
dc.subjectEarthen
dc.subjectXenolithsen
dc.subjectSulfidesen
dc.subjectIridiumen
dc.subjectGeochemistryen
dc.titleNon-chondritic distribution of the highly siderophile elements in mantle sulphidesen
dc.typeJournal articleen
dspace.entity.typePublicationen
local.bibliographicCitation.lastpage894en
local.bibliographicCitation.startpage891en
local.contributor.affiliationAlard, O; Geochemistry, Research School of Earth Sciences, ANU College of Science and Medicine, The Australian National Universityen
local.contributor.affiliationGriffin, WL; Macquarie Universityen
local.contributor.affiliationLorand, JP; Muséum national d'histoire naturelleen
local.contributor.affiliationJackson, SE; Macquarie Universityen
local.contributor.affiliationO'Reilly, SY; Macquarie Universityen
local.identifier.citationvolume407en
local.identifier.doi10.1038/35038049en
local.identifier.pure32e31309-0303-4d94-bac4-3fdb24c3597fen
local.identifier.urlhttps://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=anu_research_portal_plus2&SrcAuth=WosAPI&KeyUT=WOS:000089901900047&DestLinkType=FullRecord&DestApp=WOS_CPLen
local.type.statusPublisheden

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