HR: 1340h
AN: PP33B-0939 [Abstracts]
TI: Neogene Flowstones of the Interior Low Plateau of Kentucky: Isotopic, Geochemical, and Petrographic
Constraints on Near-Surface Hydrology and Climate
AU: * Brown, D T
EM: danbrown@uky.edu
AF: University of Kentucky, Geological Sciences
101 Slone Research Bldg., Lexington, KY, KY 40506-0053
United States
AU: Rowe, H
EM: hrowe@uky.edu
AF: University of Kentucky, Geological Sciences
101 Slone Research Bldg., Lexington, KY, KY 40506-0053
United States
AU: Galvin, R S
EM: rsgalv1@uky.edu
AF: University of Kentucky, Geological Sciences
101 Slone Research Bldg., Lexington, KY, KY 40506-0053
United States
AU: Johnson, W
EM: wkjohn1@uky.edu
AF: University of Kentucky, Geological Sciences
101 Slone Research Bldg., Lexington, KY, KY 40506-0053
United States
AU: King, R L
EM: bking@engr.uky.edu
AF: University of Kentucky, Geological Sciences
101 Slone Research Bldg., Lexington, KY, KY 40506-0053
United States
AB:
Flowstones exposed in quarries and caves within the Interior Low Plateau of Kentucky and neighboring regions preserve a
record of near-surface hydrologic conditions that potentially spans the late Cenozoic pre-glacial and glacial periods.
Detailed isotopic ($\delta$$^{13}$C, $\delta$$^{18}$O), geochemical (Mg, Sr, Ba, Fe, Mn), and petrographic analysis of
flowstone sequences recovered from across the region may provide unique insight into the characteristics of climate shifts
and may ultimately provide a temporal framework for regional climate change.
Analytical results will be presented from several flowstones. Preliminary results from a flowstone preserved in a quarry at
Rocky Knob, Casey County, Kentucky, indicate a dynamic range for both $\delta$$^{18}$O (-7 to -2.5 $\permil$ V-PDB) and
$\delta$$^{13}$C (-13 to -7 $\permil$ V-PDB). Much of the 18 cm-thick flowstone records relatively wet conditions. The
upper 3 cm of record preserve evaporation-dominated conditions, defined by trace-metal anomalies and significantly higher
enrichment in isotopic compositions that are linearly correlated on a $\delta$$^{18}$O vs. $\delta$$^{13}$C plot. Linkages
between trace-metal concentrations, crystal growth and morphology, and isotopic compositions will be explored and
interpreted.
DE: 3344 Paleoclimatology
DE: 1829 Groundwater hydrology
DE: 1040 Isotopic composition/chemistry
DE: 1045 Low-temperature geochemistry
DE: 1065 Trace elements (3670)
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2004 AGU Fall Meeting