Stream network expansion: a riparian water quality factor
Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter...
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Published in: | Hydrological processes Vol. 19; no. 8; pp. 1715 - 1721 |
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John Wiley & Sons, Ltd
01-05-2005
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Abstract | Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter stream drainage densities were nearly two orders of magnitude greater than summer stream densities, and agricultural land use was much more abundant along transient portions (e.g. swales, road ditches) of stream networks. Water moving from agricultural fields into expanded stream networks during large hydrologic events has the opportunity to bypass downstream riparian buffers along perennial streams and contribute nonpoint‐source pollutants directly into perennial stream channels. Copyright © 2005 John Wiley & Sons, Ltd. |
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AbstractList | Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter stream drainage densities were nearly two orders of magnitude greater than summer stream densities, and agricultural land use was much more abundant along transient portions (e.g. swales, road ditches) of stream networks. Water moving from agricultural fields into expanded stream networks during large hydrologic events has the opportunity to bypass downstream riparian buffers along perennial streams and contribute nonpoint-source pollutants directly into perennial stream channels. Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter stream drainage densities were nearly two orders of magnitude greater than summer stream densities, and agricultural land use was much more abundant along transient portions (e.g. swales, road ditches) of stream networks. Water moving from agricultural fields into expanded stream networks during large hydrologic events has the opportunity to bypass downstream riparian buffers along perennial streams and contribute nonpoint‐source pollutants directly into perennial stream channels. Copyright © 2005 John Wiley & Sons, Ltd. |
Author | Wigington Jr, P. J. Moser, T. J. Lindeman, D. R. |
Author_xml | – sequence: 1 givenname: P. J. surname: Wigington Jr fullname: Wigington Jr, P. J. email: wigington.jim@epa.gov organization: US Environmental Protection Agency, Office of Research and Development, National Health and Environmental Effects Research Laboratory-Western Ecology Division, Corvallis, OR, USA – sequence: 2 givenname: T. J. surname: Moser fullname: Moser, T. J. organization: Dynamac Corporation, Corvallis, OR, USA – sequence: 3 givenname: D. R. surname: Lindeman fullname: Lindeman, D. R. organization: Dynamac Corporation, Corvallis, OR, USA |
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Cites_doi | 10.2134/jeq1994.00472425002300050007x 10.1007/BF02447513 10.2134/jeq1996.00472425002500040014x 10.1029/95WR01584 10.1046/j.1365-2427.1997.d01-539.x 10.1007/s002679900060 |
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Keywords | impact statements catchment aerial photography fertilizers nitrogen agricultural waste streams concentration drainage patterns nitrates pollution nonpoint sources North America pollutants agriculture drainage basins stream network expansion land use hydrochemistry water quality water resource management drainage riparian environment riparian areas |
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References | Roth NE, Allan JD, Erickson DL. 1996. Landscape influences on stream biotic integrity assessed at multiple spatial scales. Landscape Ecology 11: 141-156. Böhlke JK, Denver JM. 1995. Combined use of groundwater dating, chemical and isotopic analyses to resolve the history and fate of nitrate contamination in two agricultural watersheds, Atlantic coastal plain, Maryland. Water Resources Research 31: 2319-2339. Johnson LB, Richards C, Host GE, Arthur JW. 1997. Landscape influences on water chemistry in Midwestern stream ecosystems. Freshwater Biology 37: 193-208. Lowrance R, Altier LS, Newbold JD, Schnabel RR, Groffman PM, Denver JM, Gilliam JW, Robinson JL. 1997. Water quality functions of riparian forest buffers in Chesapeake Bay watersheds. Environmental Management 21: 687-712. Anderson JR, Hardy EE, Roach JT, Witmer RE. 1976. A land use and land cover classification system for use with remote sensor data. United States, Geological Survey Professional Paper 964. Hill AR. 1996. Nitrate removal in stream riparian zones. Journal of Environmental Quality 25: 743-755. Gilliam JW. 1994. Riparian wetlands and water quality. Journal of Environmental Quality 23: 896-900. Hulse D, Gregory S, Baker J (eds). 2002. Willamette River Basin Planning Atlas, Trajectories of Environmental and Ecological Change. Oregon State University Press: Corvallis, OR. Dunne T, Moore TR, Taylor CH. 1975. Recognition and prediction of runoff-producing zones in humid regions. Hydrological Sciences Bulletin 20: 305-327. Dunne T, Leopold LB. 1978. Water in Environmental Planning. W.H. Freeman: San Francisco. 1995; 31 1997; 21 1976; 964 1997; 37 1994; 23 1998 1987 1975; 20 2003 2002 1996; 25 1978 1967 1996; 11 Gilliam (10.1002/hyp.5866-BIB6) 1994; 23 Lazorchak (10.1002/hyp.5866-BIB11) 1998 Johnson (10.1002/hyp.5866-BIB10) 1997; 37 US (10.1002/hyp.5866-BIB14) 1987 Lowrance (10.1002/hyp.5866-BIB12) 1997; 21 Hulse (10.1002/hyp.5866-BIB9) 2002 Chesapeake Executive Council (10.1002/hyp.5866-BIB3) 2003 Böhlke (10.1002/hyp.5866-BIB2) 1995; 31 Dunne (10.1002/hyp.5866-BIB5) 1975; 20 Roth (10.1002/hyp.5866-BIB13) 1996; 11 Hewlett (10.1002/hyp.5866-BIB7) 1967 Anderson (10.1002/hyp.5866-BIB1) 1976; 964 Dunne (10.1002/hyp.5866-BIB4) 1978 Hill (10.1002/hyp.5866-BIB8) 1996; 25 |
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SubjectTerms | aerial photography agriculture catchment Earth sciences Earth, ocean, space Engineering and environment geology. Geothermics Exact sciences and technology Freshwater Hydrology Hydrology. Hydrogeology Pollution, environment geology riparian areas stream network expansion water quality Water resources |
Title | Stream network expansion: a riparian water quality factor |
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