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
Link To Document :
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