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      Combining multiple fallout radionuclides (137Cs, 7Be, 210Pbxs) to investigate temporal sediment source dynamics in tropical, ephemeral riverine systems

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          Most cited references42

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          Tracing suspended sediment sources in catchments and river systems.

          D Walling (2005)
          Recent years have seen a growing awareness of the wider environmental significance of the suspended sediment loads transported by rivers and streams. This includes the importance of fine sediment in the transport of nutrients and contaminants, including phosphorus (P). Sediment source exerts a key control on the physical and geochemical properties of suspended sediment, including its P content, and will also influence the potential for implementing effective sediment and diffuse source pollution control strategies. Information on suspended sediment source, defined in terms of both source type and spatial origin, is therefore increasingly needed. Such information is difficult to obtain using traditional monitoring techniques, but source tracing or fingerprinting techniques afford a valuable and effective alternative approach to establish the relative importance of potential sediment sources. This contribution reviews the development of source fingerprinting techniques, presents several examples of their application in UK catchments and discusses the need for future development of the approach and the potential for extending its application.
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            Fine-grained sediment in river systems: environmental significance and management issues

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              Source type ascription for fluvial suspended sediment based on a quantitative composite fingerprinting technique

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                Author and article information

                Journal
                Journal of Soils and Sediments
                J Soils Sediments
                Springer Science and Business Media LLC
                1439-0108
                1614-7480
                March 2016
                December 9 2015
                March 2016
                : 16
                : 3
                : 1130-1144
                Article
                10.1007/s11368-015-1316-y
                4ae56908-b3de-4a22-bfe0-63aceab98e41
                © 2016

                http://www.springer.com/tdm

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