The constancy of upper mantle fO2 through time inferred from V/Sc ratios in basalts
نویسندگان
چکیده
The geochemical behaviors of Vand Sc during partial melting are more similar to each other than to most other elements but, in detail, the partitioning of V is redox-sensitive whereas that of Sc is not. The V/Sc ratio in basalts is shown here to be a sensitive and robust recorder of the oxygen fugacity (fO2) of their mantle source regions. The use of V/Sc ratios differs from the use of V and/or Cr elemental systematics in basalts because the latter, strictly speaking, provide information on the fO2 of the erupted magma and not necessarily that of the mantle source. V/Sc ratios on the other hand can bsee throughQ magmatic differentiation processes, such as olivine crystallization, and therefore, provide a better memory of the fO2 of the mantle. The V/ Sc ratios of mid-ocean ridge basalts (MORBs) are shown here to average 6.74F1.11 (1j), which constrains the fO2 of the modern mantle to roughly 0.3F0.5 (1j) log units below the fayalite–magnetite–quartz (FMQ) buffer. Archean basalts (up to 3.5 Ga) are shown to have identical V/Sc ratios (6.34F0.62, 1j) to within error indicating that the fO2 of the mantle source to Archean basalts differ from that of modern convecting mantle by no more than 0.3 log unit. The constraints based on V/Sc systematics represent an improvement on studies using Vor Cr elemental systematics, which constrain the fO2 of Archean and modern mantles to be identical, but only to within F0.5 to 1 log unit. These observations show that there has been little or no secular evolution of the fO2 of the upper mantle, at least since the early Archean. D 2004 Elsevier B.V. All rights reserved.
منابع مشابه
Similar V/Sc Systematics in MORB and Arc Basalts: Implications for the Oxygen Fugacities of their Mantle Source Regions
V/Sc systematics in peridotites, mid-ocean ridge basalts and arc basalts are investigated to constrain the variation of fO2 in the asthenospheric mantle. V/Sc ratios are used here to ‘ see through’ those processes that can modify barometric fO2 determinations in mantle rocks and/or magmas: early fractional crystallization, degassing, crustal assimilation and mantle metasomatism. Melting models ...
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