HR: 0830h
AN: V31E-0983 [PDF]
TI: Petrographic and geochemical constraints on mantle xenoliths from northern Patagonia,
Argentina
AU: * Mallmann, G
EM: guilherme.mallmann@ufrgs.br
AF: PPGGeo, Universidade Federal do Rio Grande do Sul, Av. Bento Goncalves 9500, C.P. 15001, Porto Alegre,
RS 91501-970
Brazil
AU: Conceicao, R V
EM: rommulo.conceicao@ufrgs.br
AF: Laboratorio de Geologia Isotopica, CPGq, Universidade Federal do Rio Grande do Sul, Av. Bento Goncalves
9500, C.P. 15001, Porto Alegre, RS 91501-970
Brazil
AU: Koester, E
EM: koester@vortex.ufrgs.br
AF: Laboratorio de Geologia Isotopica, CPGq, Universidade Federal do Rio Grande do Sul, Av. Bento Goncalves
9500, C.P. 15001, Porto Alegre, RS 91501-970
Brazil
AU: Bertotto, G W
EM: gwbertotto@yahoo.com.ar
AF: CONICET, Universidad Nacional de La Plata, Calle 1, 644, La Plata, 1900
Argentina
AU: Schilling, M
EM: mschilling@esfera.cl
AF: Universidad de Chile, Beauchef 850, Santiago, 6511265
Chile
AU: Chemale, F
EM: farid.chemale@ufrgs.br
AF: Laboratorio de Geologia Isotopica, CPGq, Universidade Federal do Rio Grande do Sul, Av. Bento Goncalves
9500, C.P. 15001, Porto Alegre, RS 91501-970
Brazil
AU: Cingolani, C A
EM: ccingola@cig.museo.unpl.edu.ar
AF: CONICET, Universidad Nacional de La Plata, Calle 1, 644, La Plata, 1900
Argentina
AB:
Mantle xenoliths brought to the Earth`s surface by alkaline basic magmatism in the back-arc setting of the northern
Patagonian Andes, Argentina, provide insights on processes like mantle depletion and metasomatism near subduction zones.
Petrographic and geochemical features of two sets of xenoliths collected in distinct Miocene-Pleistocene volcanic events are
here presented. Cerro El Mojon xenoliths ($41\deg$06`S;$70\deg$13`W) are mainly depleted (Mg\#84-85), anhydrous,
spinel-bearing lherzolites to harzburgites with some websterites and olivine websterites. They are unveined and have
protogranular textures. Some samples have clinopyroxene-rich bands and fertile characteristics. Estancia Alvarez xenoliths
($40\deg$46`S;$68deg$46`W) are all veined (metasomatized?), anhydrous, spinel-bearing lherzolites with porphyroclastic to
protogranular textures. We recognized depleted (Mg\#85) and fertile (Mg\#73-79) xenoliths. Kink bands and wave extinction in
olivine and pyroxenes, and Ca exsolution and symplectic texture of spinel in orthopyroxene were observed. The REE and
multi-element spidergrams are similar to both sets of xenoliths. They have relative flat REE pattern (close to the chondritic
values) with slightly enrichment in LREE. On the multi-element spidergrams, both show values similar to the chondrites
without negative Ti-Nb-Ta anomalies, which could be an evidence of absence of subducted-slab derived sources. Mg\# =
[100MgO/(MgO+FeOt)]
DE: 1025 Composition of the mantle
DE: 1040 Isotopic composition/chemistry
DE: 1065 Trace elements (3670)
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2003 Fall Meeting