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Sweeney et al. 1992
Sweeney, R.J., Green, D.H. and Sie, S.H. (1992). Trace and Minor Element Partitioning between Garnet and Amphibole and Carbonatitic Melt. Earth and Planetary Science Letters 113(1-2): 1-14. doi: 10.1016/0012-821X(92)90207-C.
The very low viscosity of carbonatite melts potentially makes them a highly effective agent of mantle metasomatism and it is important to quantify how the interaction of these melts with a lherzolitic mantle may affect trace element budgets. Our experiments yield measurements of amphibole-carbonatite melt and garnet-carbonatite melt partition coefficients for the appropriate P,T conditions (18-33 kbar) for a suite of trace and minor elements (Ti, Nb, Zr, Ta, Ce, Lu, Y, Sr, Ba, Rb and K). Measured partition coefficients permit prediction of fractionation among trace element ratios in a carbonatite melt relative to garnet and amphibole in the mantle source for this melt. For example, equilibration of a carbonatite melt with garnet will not fractionate Zr/Y or Nb/Ta ratios in the melt but will decrease Zr/Nb, Lu/Y, Zr/LILE and Y/LILE ratios in the melt. A carbonatite melt in equilibrium with amphibole will fractionate Zr/Nb with Nb enrichment in the melt, but to a lesser extent than for garnet. Metasomatism of the mantle wedge beneath island arcs through addition of carbonatite melt may explain the lower Zr/Nb of island-arc basalts relative to mid-ocean ridge basalts. Ti behaved compatibly with garnet and amphibole in all experiments, implying relative depletion of Ti in coexisting carbonatite melt and a decrease in Ti/LILE ratio in such a melt under equilibrium conditions.
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Experimental Techniques

Keywords
system cao-mgo-sio2-co2, proton microprobe, mantle, peridotite, magma
Journal
Earth and Planetary Science Letters
http://www.elsevier.com/wps/product/cws_home/503328
Publisher
Elsevier Science
P.O. Box 211
1000 AE Amsterdam
The Netherlands
(+31) 20 485 3757
(+31) 20 485 3432
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