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Paleosol Sequences in the Eastern Cordillera of Colombia

Published online by Cambridge University Press:  20 January 2017

H. Fölster
Affiliation:
Institut für Bodenkunde und Waldernährung, Universitat Göttingen, 34 Göttingen, Busgenweg 2, West Germany
W. Hetsch
Affiliation:
Institut für Bodenkunde und Waldernährung, Universitat Göttingen, 34 Göttingen, Busgenweg 2, West Germany

Abstract

This paper presents paleosol chronosequences from the Eastern Cordillera of Colombia, covering the last 35,000 yr. The changes in the morphology of the soils which developed in successive layers of volcanic ash reflect climatic changes and are correlated to the palynological studies of Van Der Hammen. Middle Pleniglacial soils are regarded as gleyed (Polylepis) forest soils formed under low evapotranspiration, and soils of the Middle/Upper Pleniglacial transition as humiferous (grassland) Paramo soils. An intervening arid erosion phase was followed by a humid and warmer period (Holocene) during which humiferous soils developed partly under forest, partly under grassland, but throughout under conditions of higher evapotranspiration.

Type
Original Articles
Copyright
University of Washington

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References

Carrera, E., Pichott, J., Alexander, F.B., 1968. Estudio general de clasification de los suelos de la cuenca alta del Rio Bogotá para fines agricolas. Departmento Agrologico, Instituto Geografico Agustin Codazzi. Vol. IV, No. 1.Google Scholar
Colmet-Daage, F., Cucalon, F., Gantheyron, J., Moreau, B., 1967. Characteristiques de quelques sols d'Equateur derivés de cendres volcaniques. Cahier ORSTOM, Serie Pedology. 5, 353 392.Google Scholar
De Ploey, J., 1968. Quaternary phenomena in the Western Congo. 7th Congress, International Quaternary Association, Proceedings. 8, Univ. of Utah Press, 501 517.Google Scholar
Espinal, S., Montenegro, E., 1963. Formaciones vegetales de Colombia. Instituto Geografico, Bogotá. Google Scholar
Faure, H., 1966. Une importante période humide du Quaternaire supérieure au Sahara. Bulletin Association Sénégalaise Étude Quaternaire Quest Africaine. No. 10–11.Google Scholar
Fölster, H., ölster, 1969. Slope development in SW-Nigeria during late Pleistocene and Holocene. Göttinger Bodenkundliche Berichte. 10, 3 56.Google Scholar
Fölster, H., Hetsch, W., Schrimpff, E., ölster et al., 1977. Late Quaternary paleosols in the Western and Central Cordillera of Colombia. Palaeogeography, Palaeoclimatology, and Paleoecology. 21, 245 264.Google Scholar
Fölster, H., von Christen, H., ölster and von Christen, 1977. The influence of Quaternary uplift on the altitude zonation of mountain soils on diabase and volcanic ash in humid parts of the Colombian Andes. Catena (Giessen). 3, 233 263.Google Scholar
Hetsch, W., 1976. Die Beziehung von Niederschlag und Bodenbildung in der Andenkordillere Venezuelas. Göttinger Bodenkundliche Berichte. 41, 167.Google Scholar
1969. Instituto Nacional de Investigaciones Geologico-Mineras. Mapa geologíco, K II, Zipaquira. Colombia. Google Scholar
Jungerius, P.D., 1975. The properties of volcanic ash soils in dry parts of the Colombian Andes and their relation to soil erodability. Catena (Giessen). 2, 69 80.Google Scholar
Michel, P., 1973. Less bassins des fleuves Sénégal et Gambie. Mémoires ORSTOM. No 63.Google Scholar
Servant, M., Servant, S., Delibrias, G., 1969. Chronologie du Quaternaire récent des basses régions du Tchad. Comptes Rendus Hebdomadaires des Seances de l'Academie des Sciences. 269, 1603 1606.Google Scholar
1961. Servicio Geologico Nacional, Colombia. Mapa geologico, K 10, Villeta. .Google Scholar
1967. United States Department of Agriculture. Soil Classification, A Comprehensive System. 7th Approximation Supplement. Washington, D.C. .Google Scholar
1973. United States Department of Agriculture. Soil Taxonomy, Preliminary Manuscript. Washington, D.C. .Google Scholar
Van der Hammen, T., 1965. The age of the Mondoñedo formation and the Mastodon fauna of Mosquera (Sabana de Bogotá). Geologie en Mijnbouw. 44, 384 390.Google Scholar
Van der Hammen, T., 1968. Climatic and vegetational succession in the Equatorial Andes of Colombia. Colloquium Geograficum. Vol. 9, 187 194 Bonn..Google Scholar
Van der Hammen, T., Gonzalez, E., 1964. A pollen diagram from the Quaternary of the Sabana de Bogotá (Colombia) and its significance for the geology of the Northern Andes. Geologie et Mijnbouw. 43, 113 117.Google Scholar
Van Geel, B., Van der Hammen, T., 1973. Upper Quaternary vegetational and climatic sequence of the Fuquene area (Eastern Cordillera, Colombia). Palaeogeography, Palaeoclimatology, and Palaeoecology. 14, 9 92.CrossRefGoogle Scholar
Zöttle, H.W., öttle, 1974. Andosol-Entwicklung und Ernährung von Cupressus-Aufforstungen in der Zentralkordillere Kolumbiens. Mitteilungen der Deutschen Bodenkundlichen Gesellschaft. 20, 220 224.Google Scholar