Linking land use, erosion and sediment yields in river basins

被引:3
作者
D. E. Walling
机构
[1] University of Exeter,Department of Geography
来源
Hydrobiologia | 1999年 / 410卷
关键词
erosion; sediment yield; sediment storage; sediment budget; floodplain sedimentation;
D O I
暂无
中图分类号
学科分类号
摘要
Results obtained from erosion plots and catchment experiments provide clear evidence of the sensitivity of erosion rates to land use change and related human activity. Evidence for the impact of land use on the sediment yields of world rivers is less clear, although examples of rivers where sediment yields have both increased and decreased in recent decades can be identified. The apparent lack of sensitivity of river sediment loads to land use change reflects, at least in part, the buffering capacity associated with many river basins. This buffering capacity is closely related to the sediment delivery ratio of a river basin, in that basins with high sediment delivery ratios are likely to exhibit a reduced buffering capacity. Investigations of the impact of land use and related human activity on sediment yields should consider the overall sediment budget of a catchment rather than simply the sediment output. Information on the sediment budget of a drainage basin is difficult to assemble using traditional techniques, but recent developments in the application of fingerprinting techniques to establish sediment sources and in the use of environmental radionuclides, such as caesium-137 and lead-210, to document sediment storage offer considerable potential for providing such information. Sediment storage within a river basin can give rise to environmental problems where sediment-associated pollutants accumulate in sediment sinks. The accumulation of phosphorus on river floodplains as a result of overbank sedimentation can, for example, represent an important phosphorus sink.
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页码:223 / 240
页数:17
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  • [1] Alford D.(1992)Streamflow and sediment transport from mountain watersheds of the Chao Phraya basin, southern Thailand: a reconnaissance study Mountain Res. Devel. 12 257-268
  • [2] Dietrich W. B.(1978)Sediment budget for a small catchment in mountainous terrain Z. Geomorph. Supplbd. 29 191-206
  • [3] Dunne T.(1967)Man, vegetation and the sediment yields of rivers Nature 215 925-928
  • [4] Douglas I.(1992)Sediment budgets of river catchments and river channel aggradation on the Russian plain Geomorphology (Moscow) 4 62-71
  • [5] Golosov V. N.(1994)On the reduction of water and sediment yield of the Yellow River in later years Int. J. Sediment. Res. 9 1-12
  • [6] Ivanova N. N.(1996)Rates of overbank sedimentation on the floodplains of British lowland rivers documented using fallout caesium-137 Geogr. Ann. 78A 223-234
  • [7] Litvin L. F.(1996)Erosion of material in ground surface and sediment yield in the Upper Yangtze River Int. J. Sediment. Res. 11 43-53
  • [8] Sidorchuk A.Y.(1998)Recent changes of sediment yield in the Upper Yangtze, China Env. Mmt. 22 697-709
  • [9] Gu W.(1992)Geomorphic/tectonic control of sediment discharge to the ocean: the importance of small mountainous rivers J. Geol. 100 325-344
  • [10] He Q.(1987)Man's in-fluence on the erosion and transport of sediment by Asian rivers: The Yellow River (Huanghe) example J. Geol. 95 751-762