Extending the timescale for using beryllium 7 measurements to document soil redistribution by erosion

Author:

Walling D. E.1,Schuller P.2,Zhang Y.1,Iroumé A.3

Affiliation:

1. Department of Geography; University of Exeter; Exeter UK

2. Instituto de Física, Facultad de Ciencias; Universidad Austral de Chile; Valdivia Chile

3. Instituto de Manejo Forestal, Facultad de Ciencias Forestales; Universidad Austral de Chile; Valdivia Chile

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference37 articles.

1. Atmospheric deposition fluxes of 7Be and 210Pb at Galveston and College Station, Texas;Baskaran;J. Geophys. Res.,1993

2. Benmansour , M. A. Nouira H. Bouksirat M. Duchemin M. El Oumri R. Mossadek A. Benkdad M. Ibn Majah 2008 Estimates of long and short-term rates of soil erosion using 137 Cs, 210 Pb ex and 7 Be measurements: Case study of one agricultural field in semi-arid west Morocco IAEA-TECDOC

3. Fallout beryllium-7 as a tracer in soil erosion investigations;Blake;Appl. Radiat. Isot.,1999

4. Factors controlling 7Be and 210Pb atmospheric deposition as revealed by sampling individual rain events in the region of Geneva, Switzerland;Caillet;J. Environ. Radioact.,2001

5. Vertical distribution of 210Pb excess, 7Be and 137Cs in selected grass covered soils in Southeast Queensland, Australia;Doering;J. Environ. Radioact.,2006

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