HR: 1340h
AN: T53C-1457 [Abstracts]
TI: Syntectonic Growth of Clays in Veins, Victoria Land Rift Basin, Antarctica: An Electron Microscopy
Study
AU: * Giorgetti, G
EM: giorgettig@unisi.it
AF: Department of Earth Sciences, via Laterina 8, Siena, Ita 53100
Italy
AU: Aghib, F
EM: fulvia.aghib@unimi.it
AF: Department of Earth Sciences, via Mangiagalli 34, Milano, Ita 20133
Italy
AU: Livi, K J
EM: klivi@jhu.edu
AF: Department of Earth and Planetary Sciences, Olin Hall 129, Baltimore, Md 21212
United States
AU: Gaillot, A
EM: gaillot@jhu.edu
AF: Department of Earth and Planetary Sciences, Olin Hall 129, Baltimore, Md 21212
United States
AU: Wilson, T J
EM: twilson@mps.ohio-state.edu
AF: Department of Geological Sciences, 275 Mendenhall, Columbus, OH 43210
United States
AB:
A scanning and transmission electron microscopy study has been performed on Oligocene glaci-marine sediments, Devonian
sandstones, and dolerites recovered during CRP-3 drilling along the western margin of the Victoria Land Basin, Ross Sea
(Antarctica). Newly-formed clay minerals occur in the rock matrices and as fillings in veins and faults which crosscut the
whole sequence. Authigenic clays in sediments consist of beidellite-montmorillonites, berthierine/chlorite intergrowths, and
illite. Smectites with a muscovitic composition and kaolinite occur in the Devonian sandstone. Saponite, berthierine/chlorite
intergrowths, and Fe-hydroxides grow in the weathered dolerites. Hence, the composition of the secondary phases depends on
the geochemistry of the rock they grow in. In each sample, the same authigenic minerals form in the matrix and in the
vein/fault. Clays precipitated from fluids which circulated in the system during contemporaneous diagenetic and faulting
events. Possibly, the fluids were a mix of glacial melt waters and hydrothermal fluids with variable fO2 values
DE: 1744 Tectonophysics
SC: Tectonophysics [T]
MN: Fall Meeting 2005