Articles | Volume 17, issue 11
https://doi.org/10.5194/hess-17-4607-2013
https://doi.org/10.5194/hess-17-4607-2013
Research article
 | 
21 Nov 2013
Research article |  | 21 Nov 2013

Comparative analysis of hydrologic signatures in two agricultural watersheds in east-central Illinois: legacies of the past to inform the future

M. A. Yaeger, M. Sivapalan, G. F. McIsaac, and X. Cai

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Cited articles

Baumhardt, R. L.: Dust Bowl era, in: Encyclopedia of Water Science, edited by: Stewart, B. A. and Howell, T. A., Marcel-Dekker, NY, 187–191, 2003.
Bogue, A.: From Prairie to Corn Belt: Farming on the Illinois and Iowa Prairies in the Nineteenth Century, Iowa State University Press, Ames, IA, 1994.
Bogue, M. B.: The Swamp Land Act and wet land utilization in Illinois, 1850–1890, Agr. Hist., 25, 169–180, 1951.
Cook, B. I., Miller, R. L., and Seager, R.: Amplification of the North American "Dust Bowl" drought through human-induced land degradation, P. Natl. Acad. Sci., 106, 4997–5001, 2009.
David, M. B., McIsaac, G. F., Royer, T. V., Darmody, R. G., and Gentry, L. E.: Estimated historical and current nitrogen balances for Illinois, Sci. World J., 1, 597–604, 2001.