HR: 1340h
AN: PP23B-1336 [Abstracts]
TI: Multivariate Statistical Analysis of Late Mississippian Paleosol Trace Element Chemistry and Application to Interpreting Pedogenic Processes and Climate Through Time
AU: * Kahmann, J A
EM: Julia_Kahmann@baylor.edu
AF: Baylor University, One Bear Place #97354, Waco, TX 76798, United States
AU: Seaman, J
EM: John_W_Seaman@baylor.edu
AF: Baylor University, One Bear Place #97354, Waco, TX 76798, United States
AU: Driese, S G
EM: Steven_Driese@baylor.edu
AF: Baylor University, One Bear Place #97354, Waco, TX 76798, United States
AB:
Paleosol geochemistry has primarily focused upon bulk analyses of major elements and stable isotopes. Trace
elements in bulk samples, in contrast, are rarely studied, primarily due to very low concentrations and a
fundamental lack of knowledge of chemical behavior in analogous modern soil-forming environments. Late
Mississippian (Chesterian) paleosols of the US Appalachian region serve as a case-study to investigate
temporal relationships in paleosol trace element chemistry as a function of changing climatic conditions. Both
linear (coorelation matrices) and multivariate statistical techniques (cluster, principal components and canonical
variates) were employed to identify statistically significant relationships between trace elements, including Ti, Ga,
Ge, Y, Zr, Nb, Cs, La, Hf, Ta, W, Ce, Th. Results indicate that trace element chemistry of this Late Mississippian
suite of paleosols is controlled by either organic matter content or lessivage (clay formation and accumulation by
feldspar weathering). Mean annual precipitation (MAP), estimated using the CIA-K geochemical proxy, controls
soil hydrology, redox chemistry, and organic matter accumulation, in addition to clay accumulation. Soil orders
through time are statistically separable, with variable success in discriminating between changes in soil
drainage. Our results provide a new tool to evaluate pedogenic processes and to draw inferences regarding
intensity of chemical weathering and its relationship to climate change.
DE: 1065 Major and trace element geochemistry
DE: 1616 Climate variability (1635, 3305, 3309, 4215, 4513)
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2007 Fall Meeting