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      Vapour undersaturation in primitive mid-ocean-ridge basalt and the volatile content of Earth's upper mantle.

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      Nature
      Springer Nature

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          Abstract

          The analysis of volatiles in magmatic systems can be used to constrain the volatile content of the Earth's mantle and the influence that magmatic degassing has on the chemistry of the oceans and the atmosphere. But most volatile elements have very low solubilities in magmas at atmospheric pressure, and therefore virtually all erupted lavas are degassed and do not retain their primary volatile signatures. Here we report the undersaturated pre-eruptive volatile content for a suite of mid-ocean-ridge basalts from the Siqueiros intra-transform spreading centre. The undersaturation leads to correlations between volatiles and refractory trace elements that provide new constraints on volatile abundances and their behaviour in the upper mantle. Our data generate improved limits on the abundances of carbon dioxide, water, fluorine, sulphur and chlorine in the source of normal mid-ocean-ridge basalt. The incompatible behaviour of carbon dioxide, together with the CO(2)/Nb and CO(2)/Cl ratios, permit estimates of primitive carbon dioxide and chlorine to be made for degassed and chlorine-contaminated mid-ocean-ridge basalt magmas, and hence constrain degassing and contamination histories of mid-ocean ridges.

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          Author and article information

          Journal
          Nature
          Nature
          Springer Nature
          0028-0836
          0028-0836
          Oct 03 2002
          : 419
          : 6906
          Affiliations
          [1 ] Lamont-Doherty Earth Observatory, Columbia University, Palisades, New York 10964, USA. asaal@ldeo.columbia.edu
          Article
          nature01073
          10.1038/nature01073
          12368848
          11e6571a-086c-4b8b-bd2c-f787c762d32a
          History

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