HR: 1340h
AN: V33C-1529 [Abstracts]
TI: Rare Earth Element (REE)- SiO2 Variations in Intra-oceanic arc Felsic Liquids Generated by Basalt Fractionation and Amphibolite Melting: A Potential test for Discrimination
AU: * Brophy, J G
EM: brophy@indiana.edu
AF: Dept. of Geological Sciences, Indiana University, Bloomington, IN 47401, United States
AB:
The origin of felsic (>63 wt. % SiO2) magmas in intra-oceanic arc settings is still in doubt. Two very
different processes are currently invoked to explain their origin. These include fractional crystallization of basaltic
magma and partial melting of lower crustal amphibolite. Because both fractionation and melting can lead to
similar major element, trace element and isotopic characteristics in felsic magmas, such lines of evidence have
been generally unsuccessful in discriminating between the two processes. However, two seemingly different
lines of reasoning may provide such a means of discrimination. First, an important difference between the two
processes is the role played by hornblende. In basalt fractionation, hornblende is usually not an important
fractionating phase. In amphibolite melting, hornblende is an important residual phase during much of the
melting interval during which felsic magmas are produced. Second, Rare Earth Element (REE) D values
increase significantly with increasing SiO2 content of the liquid phase. When these two factors are
incorporated into carefully constrained mass-balance models for basalt fractionation and amphibolite melting,
the following general predictions emerge. For felsic liquids in intra-oceanic arcs: (1) hornblende-absent
fractional crystallization should produce steadily increasing REE abundances with increasing liquid SiO2;
(2) hornblende-bearing fractional crystallization should yield constant REE abundances with increasing liquid
SiO2; and (3) amphibolite melting should produce either constant and then decreasing, or steadily
decreasing REE abundances with liquid SiO2. These predictions constitute a potential means of
determining whether or not a given suite of intra-oceanic arc felsic lavas were generated by fractional
crystallization or amphibolite melting.
DE: 8410 Geochemical modeling (1009, 3610)
DE: 8412 Reactions and phase equilibria (1012, 3612)
DE: 8439 Physics and chemistry of magma bodies
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting