HR: 1340h
AN: H53C-1383 [Abstracts]
TI: Vertically mixed and unmixed: Do surface features tell the whole story? An investigation of glacial regolith profiles using in-situ produced cosmogenic radionuclides
AU: * Goodfellow, B W
EM: brad.goodfellow@natgeo.su.se
AF: Department of Physical Geography and Quaternary Geology, Stockholm University,
Stockholm, 10691, Sweden
AU: Fabel, D
EM: Derek.Fabel@ges.gla.ac.uk
AF: Department of Geographical and Earth Sciences, University of Glasgow, Glasgow, G12
8QQ, United Kingdom
AU: Stroeven, A P
EM: arjen.stroeven@natgeo.su.se
AF: Department of Physical Geography and Quaternary Geology, Stockholm University,
Stockholm, 10691, Sweden
AU: Caffee, M W
EM: mcaffee@purdue.edu
AF: Department of Physics, Purdue University, West Lafayette, IN 47907, United States
AU: Bintanja, R
EM: bintanja@gmail.com
AF: None, Griend 14-42, Lelystad, 8225 VC, Netherlands
AB:
Whether a regolith is unmixed or mixed is critical to determining its erosion rate or age from in situ-produced
cosmogenic nuclides. We use in situ-produced 10Be and 26Al in quartzite clasts extracted from depth
profiles to investigate mixing of a periglacially-sorted till blanketing a plateau in the northern Swedish mountains.
Our data indicate significant intra-site variations from a completely unmixed to a fully mixed regolith. We conclude
that caution must be exercised in assuming that an entire regolith is either unmixed or mixed from interspersed
depth profiles and that the degree of mixing may differ significantly from that indicated by observation of surface
features. From the difference between the surface isotope concentration of an unmixed profile and the average
isotope concentration of a fully mixed profile, we confirm that the regolith is a glacial till and that it could have been
emplaced in a single event. Incorporating isotope concentrations, 26Al/10Be ratios, and an isostasy
and ice sheet burial model we date the till emplacement to the Saalian glaciation (~ 200 to 130 ka).
DE: 1815 Erosion
DE: 1823 Frozen ground
DE: 1826 Geomorphology: hillslope (1625)
DE: 1849 Numerical approximations and analysis
SC: Hydrology [H]
MN: 2007 Fall Meeting