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Environmental Geochemistry and Health|November 12, 2013
Transport and redistribution of Chernobyl fallout radionuclides by fluvial processes: Some preliminary evidenceD E Walling, S B BradleyThe Science of the Total Environment|June 30, 1992
The transport and fluvial redistribution of Chernobyl-derived radiocaeisum within the River Wye basin, UKJ S Rowan, D E WallingWater Research|February 6, 2002
The phosphorus content of fluvial sediment in rural and industrialized river basinsPhilip N Owens, Desmond E WallingJournal of Environmental Radioactivity|October 25, 2008
Comparative advantages and limitations of the fallout radionuclides (137)Cs, (210)Pb(ex) and (7)Be for assessing soil erosion and sedimentationL Mabit, M Benmansour, D E WallingJournal of Applied Microbiology|April 20, 2001
Direct polymerase chain reaction detection of ropy Pediococcus damnosus strains in wineE Gindreau, E Walling, A Lonvaud-FunelJournal of Environmental Management|July 15, 2010
The use of 137Cs to establish longer-term soil erosion rates on footpaths in the UKS J Rodway-Dyer, D E WallingThe Science of the Total Environment|March 22, 2001
Controls on the nutrient content of suspended sediment transported by British riversD E Walling, Russell, B W WebbApplied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine|August 28, 1999
Fallout beryllium-7 as a tracer in soil erosion investigationsW H Blake, D E Walling, Q HePeptides|November 26, 1999
Regulating the activity of a cardioacceleratory peptideR Nichols, S Kaminski, E Walling, et al.Journal of Environmental Management|April 5, 2023
Sediment source fingerprinting and the temporal variability of source contributionsYing Liu, Des E Walling, Mingyi Yang, et al.Pageof 6