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Pollen Analysis of Some Mid-Pleistocene Interglacial Lagoonal Sediments from Southern Delaware1

Published online by Cambridge University Press:  20 January 2017

Rudy J. Nickmann
Affiliation:
Quaternary Research Center, University of Washington, Seattle, Washington 98195
James M. Demarest II
Affiliation:
Stratigraphic Exploration Division, Exxon Production Research Company, P.O. Box 2189, Houston, Texas 77001

Abstract

Results of pollen analysis on lagoonal sediments from southern Delaware, dated at 500,000–1,000,000 yr B.P. by amino acid racemization, are presented. Three pollen zones are identified in sediments that were deposited during the final stage of an interglacial cycle. A closed forest of mixed conifer-deciduous trees dominated by Tsuga, Pinus, Fagus, Liquidambar, and Quercus is recorded in the basal zone (Zone I). The inferred climate at this time was temperate and moist. A probable lowering of sea level during the deposition of Zone II exposed large areas in the surrounding estuaries and tidal flats which were colonized by marsh and bog plant taxa. Zone III is characterized by Pinus, Quercus, and Picea pollen. A scrub oak-pine association may have been favored on the coarse sandy soils of the Delmarva Peninsula at this time because of a drop in the local water table. The inferred climate during this interval was colder and probably drier than in Zone I.

Type
Research Article
Copyright
University of Washington

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Footnotes

1

Contribution No. 82-1 Quaternary Research Center, University of Washington, Seattle, Washington 98195.

References

Belknap, D.F. Wehmiller, J.F. (1980). Amino acid racemization of Quaternary mollusks: Examples from Delaware, Maryland, and Virginia. Biogeochemistry of Amino Acids Hare, P.E. Hoering, T.C. King, K. Jr.. John Wiley. New York.Google Scholar
Belknap, D.F. (1979). Application of Amino Acid Geochronology to Stratigraphy of Late Cenozoic Marine Units of the Atlantic Coastal Plain. Ph.D. dissertation Department of Geology, University of Delaware. Newark.Google Scholar
Birks, H.J.B. Birks, H.H. (1980). Quaternary Paleoecology Edward Arnold. London.Google Scholar
Bowen, D.Q. (1978). Quaternary Geology Pergamon. Oxford.Google Scholar
Brush, G.S. DeFries, R.S. (1981). Spatial distributions of pollen in surface sediments of the Potomac estuary. Limnology and Oceanography 26,2 295305.CrossRefGoogle Scholar
Davis, J.T. (1963). A Pollen Analytical Investigation of the Horry Clay from Flanner Beach, North Carolina. Williams College honors thesis.Google Scholar
Davis, R.B. Webb, T. (1975). Contemporary distribution of pollen in eastern North America: A comparison with the vegetation. Quaternary Research 5, 395434.CrossRefGoogle Scholar
Demarest, J.M. Belknap, D.F. (1980). Quaternary Atlantic shorelines on the Delmarva Peninsula—chronology and tectonic implications. Northeast Geological Society of America, Abstracts with Programs 12, 80.Google Scholar
Demarest, J.M. Biggs, R.B. Kraft, J.C. (1981). Time-stratigraphic aspects of a formation: Interpretation of surficial Pleistocene deposits by analogy with Holocene Paralic deposits, southeastern Delaware. Geology 9,8.2.0.CO;2>CrossRefGoogle Scholar
Demarest, J.M. Biggs, R.B. Kraft, J.C. (1979). The interpretation of Pleistocene Epoch/coastal barrier complexes with Holocene models, southeastern Delaware Assoc. of Amer. Petroleum Geologists/Soc. of Econ. Petroleum Geologists, Annual Meeting ProgramHouston, Texas, 1–4 April 19797576(abstract).Google Scholar
Doher, L.I. (1980). Palynomorph preparation procedures currently used in the paleontology and stratigraphy laboratories: United States Geological Survey. Geological Survey Circular 730.Google Scholar
Donner, J. (1964). Pleistocene geology of eastern Long Island, New York. American Journal of Science 262, 355376.CrossRefGoogle Scholar
Faegri, K. Iversen, J. 3rd ed. Textbook of Pollen Analysis 1975 Hafner Press. New York.Google Scholar
Florer, L.E. (1972). Palynology of a postglacial bog in the New Jersey pine barrens. Bulletin of Torrey Botanical Club 99, 135138.CrossRefGoogle Scholar
Fowells, H.A. (1965). Silvics of Forest Trees of the United States U.S. Dept. of Agriculture, Forest Service. Washington, DCAgricultural Handbook No. 271.Google Scholar
Frey, D.C. (1952). Pollen analysis of the Horry Clay and a seaside peat deposit near Myrtle Beach, South Carolina. American Journal of Science 250, 4953.CrossRefGoogle Scholar
Frey, D.G. (1953). Regional aspects of the late-glacial and postglacial pollen succession of southeastern North Carolina. Ecological Monographs 23, 289313.CrossRefGoogle Scholar
Knox, A.S. (1962). Pollen from the Pleistocene terrace deposits of Washington, D.C.. Pollen et Spores 4, 356358(abstract).Google Scholar
Küchler, A.W. (1966). Potential Natural Vegetation of the United States (map) Department of the Interior, Geological Survey.Google Scholar
Leopold, E.B. (1959). Pollen, spores, and marine microfossils. Geology of the Charleston Phosphate Area, South Carolina Malde, H.E.U.S. Geological Survey Bulletin 1079. 4953U.S..Google Scholar
Miller, N.G. (1973). Late-glacial and postglacial vegetation change in southwestern New York State. New York State Museum and Science Service Bulletin no. 420.Google Scholar
Owens, J.P. Denny, C.S. (1979). Upper Cenozoic deposits of the Central Delmarva Peninsula, Maryland and Delaware. U.S. Geological Survey Professional Paper 1067A.Google Scholar
Shreve, F. (1969). The Plant Life of Maryland J. Cramer. Lehre.Google Scholar
Watts, W.A. (1969). A pollen diagram from Mud Lake, Marion County, northcentral Florida. Geological Society of America Bulletin 80, 631642.CrossRefGoogle Scholar
Watts, W.A. (1971). Postglacial and interglacial vegetation history of southern Georgia and central Florida. Ecology 52, 676690.CrossRefGoogle ScholarPubMed
Watts, W.A. (1975). A late-Quaternary record of vegetation from Lake Annie, south-central Florida. Geology 3, 344346.2.0.CO;2>CrossRefGoogle Scholar
Watts, W.A. (1979). Late-Quaternary vegetation of Central Appalachia and the New Jersey coastal plain. Ecological Monographs 49, 427429.CrossRefGoogle Scholar
Watts, W.A. (1980). Late-Quaternary vegetation history at White Pond on the Inner Coastal Plain of South Carolina. Quaternary Research 13, 187199.CrossRefGoogle Scholar
Whitehead, D.R. (1965). Palynology and Pleistocene phytogeography of unglacialed eastern North America. The Quaternary of the United States Wright, H.E. Jr., Frey, D.G. Princeton Univ. Press. Princeton, NJ. 417543.Google Scholar
Whitehead, D.R. (1972). Development and environmental history of the Dismal Swamp. Ecological Monographs 42, 301315.CrossRefGoogle Scholar