HR: 0800h
AN: H51C-0364 [Abstracts]
TI: Desert Pavements and Soils on Basaltic Pyroclastic Deposits at Lathrop Wells and Red Cone Volcanoes,
Southern Nevada
AU: * Valentine, G A
EM: gav@lanl.gov
AF: Earth & Environmental Sciences Division, Los Alamos National Laboratory, MS D462, Los Alamos, NM 87545
AU: Harrington, C
EM: charrington@lanl.gov
AF: Earth & Environmental Sciences Division, Los Alamos National Laboratory, MS D462, Los Alamos, NM 87545
AB:
Formation of desert pavement and accretionary soils are intimately linked in arid environments such as the Mojave Desert.
Well-sorted fallout scoria lapilli at Lathrop Wells (75-80 ky) and Red Cone (~1 Ma) volcanoes (southern Nevada) formed an
excellent starting material for pavement, allowing infiltration of eolian silt and fine sand that first clogs the pore space
of underlying tephra and then aggrades and develops vesicular A (Av) horizons. Variations in original pyroclast sizes
provide insight into minimum and maximum clast sizes that promote pavement and soil formation: pavement becomes ineffective
when clasts can saltate under the strongest winds, while clasts larger than coarse lapilli are unable to form an interlocking
pavement that promotes silt accumulation (necessary for Av development). Contrary to predictions that all pavements above
altitudes of ~400 m would have been reset in their development after late Pleistocene vegetation advances (about 15 ka), the
soils and pavements show clear differences in maturity between the two volcanoes. This indicates that either the
pavements/soils develop slowly over many 10,000s of years and then are very stable, or that, if they are disrupted by
vegetation advances, subsequent pavements are reestablished with successively more mature characteristics.
DE: 1824 Geomorphology: general (1625)
SC: Hydrology [H]
MN: Fall Meeting 2005