Record Display for the EPA National Library Catalog

RECORD NUMBER: 4 OF 7

Main Title Glaciations in North and South America from the Miocene to the Last Glacial Maximum Comparisons, Linkages and Uncertainties / [electronic resource] :
Type EBOOK
Author Rutter, Nat.
Other Authors
Author Title of a Work
Coronato, Andrea.
Helmens, Karin.
Rabassa, Jorge.
Zárate, Marcelo.
Publisher Springer Netherlands : Imprint: Springer,
Year Published 2012
Call Number QE1-996.5
ISBN 9789400743991
Subjects Geography ; Geology ; Paleontology ; Climatic changes
Internet Access
Description Access URL
http://dx.doi.org/10.1007/978-94-007-4399-1
Collation XIII, 67 p. 18 illus., 13 illus. in color. online resource.
Notes
Due to license restrictions, this resource is available to EPA employees and authorized contractors only
Contents Notes
Introduction and Previous Work -- The Glacial and Loess Record of Southern South America -- The Glacial Record of Northern South America -- The Glacial and Loess Record of North America -- Comparison of South and North American Glaciations -- Chinese Loess/Paleosol Record. Improved dating methods have increased our ability to more precisely determine the timing and durations of glaciations. Utilizing glacial and loess deposits, we have compared glaciations that occurred in North and South America in order to determine if events are synchronous or not, to explore forcing mechanisms, and to compare glaciations with cold periods of the Marine Oxygen Isotope stages and the loess/paleosol records of China. Stratigraphic sections containing a variety of glacial deposits, some with interbedded volcanics, as well as loess deposits, were used in reconstructing the glacial history. The Late Pleistocene (Brunhes Chron) Last Glacial Maximum is recognized in mountain and continental areas of North America but only in the mountains of South America. Commonly our comparisons indicate roughly synchronous glaciations on the two continents, whereas other glaciations are more elusive and difficult to compare. Although our comparisons are at low resolutions, the results suggest that Milankovitch forcing is most likely the dominant trigger for hemispheric glaciation modified by local factors.