HR: 09:12h
AN: V31D-07 [Abstracts]
TI: New Insights From Whole Rock and Mineral Data on the Magmatic and Tectonic Evolution of the Columbia
River Basalt Group (USA)
AU: * Caprarelli, G
EM: Graziella.Caprarelli@uts.edu.au
AF: Dept. Environmental Sci.
University of Technology, Sydney, PO Box 123, Broadway, NSW 2007
Australia
AU: Reidel, S P
EM: sp.reidel@pnl.gov
AF: Pacific Northwest National Laboratory and Battelle - Pacific Northwest Division, MS K6-81
PO Box 999, Richland, WA 99352
United States
AB:
The Miocene Columbia River Basalt Group (CRBG) of north-western USA was emplaced in a geologically dynamic setting
characterized by a close association between magmatism and lithospheric thinning and rifting. We present and discuss electron
probe microanalysis and XRFA data obtained from samples spanning the entire sequence of the CRBG. The examined basalts have
near-aphyric textures. No glass is present, and plagioclase and augitic clinopyroxene are dominant matrix and groundmass
phases. Plagioclase microcrysts are labradoritic to bytownitic. Whole rock compositions were taken as proxies of the liquid
compositions. Application of plagioclase / melt and clinopyroxene / melt geothermobarometers indicated that during crustal
ascent the magmas were dry, and that pre-eruptive pressures and temperatures ranged from 0 to 0.66 GPa and 1393 to 1495 K,
respectively. In a P-T diagram most of the samples are distributed along a general CRBG trend, while some samples plot along
a parallel higher temperature trend. The calculated P-T values, the positive correlation between calculated P and T, and no
horizontal alignment of the data, exclude the presence of upper crustal solidification fronts, and indicate that magma
aggregation zones were located deeper than 25 km, plausibly immediately below the Moho, that in this region is at a depth of
approximately 35 km. Episodic stretching of the lithosphere best explains the observed parallel P-T trends. Whole rock major
element abundances resulted from fractional crystallization of the magmas during ascent. To retrieve the compositions of the
primitive melts we added to the bulk rock compositions variable amounts of magnesian olivine [Mg/(Mg+Fe) = 0.88], and derived
the evolution of olivine fractionating magmas in equilibrium with mantle harzburgite. Two groups of samples were found,
corresponding to the parallel P-T trends obtained from mineral / melt calculations. The highest temperature trend corresponds
to samples whose calculated primitive compositions are in agreement with those obtained from peridotite melting experiments
(as published in the relevant literature). Interpretation of results for rocks belonging to the general CRBG trend suggests,
either: (a) that higher forsteritic content olivine should be used in the calculations; or, (b) that melt / ol / opx
reactions occurred. Investigation of the CRBG primitive compositions has relevance with regard to the geodynamic evolution
models of this region. We are currently undertaking melt inclusion studies of suitable CRBG samples.
DE: 8439 Physics and chemistry of magma bodies
DE: 3640 Igneous petrology
DE: 3655 Major element composition
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2004 AGU Fall Meeting