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Published online 8 August 2008
Published in J Environ Qual 37:1894-1908 (2008)
DOI: 10.2134/jeq2007.0590
© 2008 American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America
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TECHNICAL REPORTS

Surface Water Quality

Thirty-Year Trends in Suspended Sediment in Seven Lake Erie Tributaries

R. Peter Richards*, David B. Baker, John P. Crumrine, Jack W. Kramer, D. Ellen Ewing and Barbara J. Merryfield

National Center for Water Quality Research, Heidelberg College, 310 E. Market Street, Tiffin, OH 44883

* Corresponding author (prichard{at}heidelberg.edu).

Received for publication November 7, 2007. Sediment is an important pollutant for Lake Erie and its tributaries as a carrier of other substances and as a pollutant in its own right. Environmental managers have called for major reductions in sediment loadings in Lake Erie tributaries. In this study, 30-yr (1975–2005) datasets with daily resolution are analyzed to identify and interpret trends in sediment concentrations and loads in major US tributaries to Lake Erie. The Maumee and Sandusky Rivers in agricultural northwest Ohio show continual decreases throughout this period, but the River Raisin shows increases, especially in the last decade. The urban and forested Cuyahoga River shows little trend before 2000 but shows increases since then. The mostly forested Grand River shows strong decreases before 1995, little change thereafter until the early 2000s, and then increases. In most cases, the greatest decreases or smallest increases, depending on the river, are associated with summer and fall and with low flow conditions, whereas the smallest decreases or greatest increases are associated with the spring and with high flow conditions. Analysis of concentration–flow relationships indicates that these changes are not due to weather but reflect positive and negative anthropogenic influences. Sediment decreases in the northwestern Ohio tributaries seem to reflect the successful use of agricultural practices to reduce erosion and prevent sediment loss. Opportunities for further reductions in sediment loads and concentrations lie in better management of sediment losses during winter and spring.

Abbreviations: BMP, best management practice • lnQ, natural log of flow • lnSS, natural log of TSS concentration • lnSSld, natural log of TSS load • LOWESS, locally weighted scatterplot smoother • NCWQR, National Center for Water Quality Research at Heidelberg College • SSdQ, lnSS adjusted for flow using LOWESS • TSS, total suspended sediment • USGS, U.S. Geological Survey




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Journal of Soil and Water ConservationHome page
R.P. Richards, D.B. Baker, and J.P. Crumrine
Improved water quality in Ohio tributaries to Lake Erie: A consequence of conservation practices
Journal of Soil and Water Conservation, May 1, 2009; 64(3): 200 - 211.
[Abstract] [PDF]




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