Published 1992 | Version v1
Journal article

Using cosmogenic isotopes to measure basin-scale rates of erosion

  • 1. Univ. of Washington, Seattle, WA (United States). Dept. of Geology

Description

The authors present a new and different approach to interpreting the abundance of in situ-produced cosmogenic nuclides such as 36Cl, 26Al, and 10Be. Unlike most existing models, which are appropriate for evaluating isotope concentrations on bedrock surfaces, this model can be used to interpret isotope concentration in fluvial sediment. Because sediment is a mixture of material derived from the entire drainage basin, measured isotope abundances can be used to estimate spatially-averaged rates of erosion and sediment transport. Their approach has the potential to provide geomorphologists with a relatively simple but powerful means by which to constrain rates of landscape evolution. The model considers the flux of cosmogenic isotopes into and out of various reservoirs. Implicit in model development are the assumptions that a geomorphic steady-state has been reached and that sampled sediment is spatially and temporally representative of all sediment leaving the basin. Each year, the impinging cosmic-ray flux produces a certain quantity of cosmogenic isotopes in the rock and soil of a drainage basin. For a basin in steady state, the outgoing isotope flux is also constant. They solve for the rate of mass loss as a function of isotope abundance in the sediment, the cosmic ray attenuation length, the isotope half life, and the effective isotope production rate. There are only a few published measurements of cosmogenic isotope abundance in sediment. They calculated model denudation rates for sediment samples from Zaire and central Texas. The denudation rates they calculated appear reasonable and are similar to those they have measured directly on granite landforms in Georgia and southeastern California and those calculated for the Appalachian Piedmont

Additional details

Publishing Information

Journal Title
Geological Society of America, Abstracts with Programs
Journal Volume
24
Journal Issue
7
Journal Page Range
p. A122.
ISSN
0016-7592
CODEN
GAAPBC

Conference

Title
1992 annual meeting of the Geological Society of America (GSA).
Dates
26-29 Oct 1992.
Place
Cincinnati, OH (United States).

Optional Information

Secondary number(s)
CONF-921058--.