Title of article
New insights into the Re–Os systematics of sub-continental lithospheric mantle from in situ analysis of sulphides
Author/Authors
Alard، نويسنده , , Olivier and Griffin، نويسنده , , William L. and Pearson، نويسنده , , Norman J. and Lorand، نويسنده , , Jean-Pierre and O’Reilly، نويسنده , , Suzanne Y.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2002
Pages
13
From page
651
To page
663
Abstract
The Os isotopic compositions of mantle rocks generally are considered to be established during melt-depletion events and to be robust to subsequent disturbances (e.g. metasomatism). Consequently, Os isotopes are used to date the main melting event that a mantle section has undergone, i.e. transformation of fertile asthenospheric material into a depleted, buoyant lithosphere. However, Os resides almost entirely in Fe–Ni–Cu sulphides, which can be very mobile under mantle conditions. In situ laser ablation multi-collector ICP-MS measurement of Re/Os isotopic ratios in sulphides from spinel peridotite xenoliths demonstrates that whole-rock Os-isotope signatures record the mixing of multiple sulphide populations. Sulphides residual after melting events have unradiogenic Os isotopic compositions reflecting ancient melt depletion; those introduced by later metasomatism events contain more radiogenic Os. Therefore, the whole-rock Os isotopic signature can be strongly altered by metasomatic processes, and studies of mantle-derived xenoliths show that such disturbance is quite common in the lithospheric mantle. Because melt-depletion ages estimated from individual sulphide inclusions are systematically older than those obtained from whole-rock analysis, caution is essential in the interpretation of the Os model ages derived from whole-rock analysis, and their use and abuse in geodynamic models. This work suggests that sulphide could become a key phase in unravelling the formation and evolution of the lithosphere.
Keywords
sulfides , mantle , in situ , Metasomatism , Re/Os , Siderophile elements
Journal title
Earth and Planetary Science Letters
Serial Year
2002
Journal title
Earth and Planetary Science Letters
Record number
2322558
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