HR: 1340h
AN: V23B-1442 [Abstracts]
TI: Status Report on the 40Ar/39Ar and U/Pb Dating of Tuffs in the Dewey Lake Formation of West
Texas Towards Constraining the Permo-Triassic Magnetostratigraphic Time Scale
AU: * Chang, S
EM: su_chin@berkeley.edu
AF: Department of Earth and Planetary Science, University of California at Berkeley, Berkeley,
CA 94720, United States
AU: Renne, P R
EM: prenne@bgc.org
AF: Department of Earth and Planetary Science, University of California at Berkeley, Berkeley,
CA 94720, United States
AU: Renne, P R
EM: prenne@bgc.org
AF: Berkeley Geochronology Center, 2455 Ridge Road, Berkeley, CA 94709, United States
AU: Mundil, R
EM: rmundil@bgc.org
AF: Berkeley Geochronology Center, 2455 Ridge Road, Berkeley, CA 94709, United States
AB:
A detailed magnetic polarity time scale for the Permo-Triassic Boundary interval, critical for correlating events in
marine and terrestrial paleoenvironments, is not yet well-established. Recently, late Permian
magnetostratigraphic studies have been reported for non-marine sections in Europe and South Africa (Szurlies et
al., 2003; Nawrocki, 2004; Ward et al., 2005). However, these sections are devoid of index fossil suitable for
correlation with marine successions and also lack age constraints from radioisotopic dating methods. In other
words, it is dubious to correlate these magnetostratigraphic data with the GSSP Permo-Triassic boundary and
mass extinction. The Dewey Lake red beds formation of West Texas, believed to be the youngest Permian
formation in North America, has yielded high-quality paleomagnetic data (Molina-Garza et al., 1989; Steiner, 2001)
and contains several silicic tuffs potentially enabling high-resolution calibration of the magnetic polarity time
scale in this critical age range. The tuffs have yet to be placed into a regional stratigraphic or
magnetostratigraphic framework, and it is unclear exactly how many distinct eruptive units are represented by the
7 distinct samples collected to date from widely separated (>160 km) localities. 40Ar/39Ar (sanidine
and biotite) and U/Pb (zircon) studies reveal that all 7 sampled tuffs were probably erupted within several hundred
ka of the Permo-Triassic boundary as dated at the Meishan GSSP section (Renne et al., 1995; Mundil et al.,
2004) but results thus far are inadequate to convincingly resolve age differences between the various samples.
U/Pb dating of some samples is severely challenged by Pb-loss from the zircons despite application of the
Mattinson (2005) annealing/chemical abrasion technique. 40Ar/39Ar data have been obtained from as
many as four different irradiations in order to reduce neutron fluence related error. We observe the familiar ~1%
bias between U/Pb and 40Ar/39Ar ages. Biotite microprobe data, zircon U/Th TIMS data, and the
absence of sanidine from some samples serve to help correlate or distinguish some samples despite
irresolvable age differences; existing data suggest that 4 distinct tuffs are present in the Dewey Lake Formation.
Resolving their ages convincingly will require further work, but it is clear from our results combined with previous
magnetostratigraphic data that magnetic polarity reversals were relatively frequent in the latest Permian. Thus the
uniqueness of correlations elsewhere with the Permo-Triassic boundary based on magnetostratigraphy alone
are not well-founded.
DE: 1100 GEOCHRONOLOGY
DE: 1115 Radioisotope geochronology
DE: 1520 Magnetostratigraphy
DE: 8455 Tephrochronology (1145)
DE: 9615 Permian
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting