Use of a 137Cs re-sampling technique to investigate temporal changes in soil erosion and sediment mobilisation for a small forested catchment in southern Italy
Soil erosion and both its on-site and off-site impacts are increasingly seen as a serious environmental problem across the world. The need for an improved evidence base on soil loss and soil redistribution rates has directed attention to the use of fallout radionuclides, and particularly 137Cs, for...
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Published in | Journal of environmental radioactivity Vol. 138; pp. 137 - 148 |
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Format | Journal Article |
Language | English |
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01.12.2014
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Abstract | Soil erosion and both its on-site and off-site impacts are increasingly seen as a serious environmental problem across the world. The need for an improved evidence base on soil loss and soil redistribution rates has directed attention to the use of fallout radionuclides, and particularly 137Cs, for documenting soil redistribution rates. This approach possesses important advantages over more traditional means of documenting soil erosion and soil redistribution. However, one key limitation of the approach is the time-averaged or lumped nature of the estimated erosion rates. In nearly all cases, these will relate to the period extending from the main period of bomb fallout to the time of sampling. Increasing concern for the impact of global change, particularly that related to changing land use and climate change, has frequently directed attention to the need to document changes in soil redistribution rates within this period. Re-sampling techniques, which should be distinguished from repeat-sampling techniques, have the potential to meet this requirement. As an example, the use of a re-sampling technique to derive estimates of the mean annual net soil loss from a small (1.38 ha) forested catchment in southern Italy is reported. The catchment was originally sampled in 1998 and samples were collected from points very close to the original sampling points again in 2013. This made it possible to compare the estimate of mean annual erosion for the period 1954–1998 with that for the period 1999–2013. The availability of measurements of sediment yield from the catchment for parts of the overall period made it possible to compare the results provided by the 137Cs re-sampling study with the estimates of sediment yield for the same periods. In order to compare the estimates of soil loss and sediment yield for the two different periods, it was necessary to establish the uncertainty associated with the individual estimates. In the absence of a generally accepted procedure for such calculations, key factors influencing the uncertainty of the estimates were identified and a procedure developed. The results of the study demonstrated that there had been no significant change in mean annual soil loss in recent years and this was consistent with the information provided by the estimates of sediment yield from the catchment for the same periods. The study demonstrates the potential for using a re-sampling technique to document recent changes in soil redistribution rates.
•The study uses 137Cs measurements to document changes in soil erosion rates.•A small forested catchment in southern Italy is selected for a case study.•A re-sampling technique is employed to investigate changes in soil erosion rates.•The results are validated by comparison with catchment sediment yield data. |
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AbstractList | Soil erosion and both its on-site and off-site impacts are increasingly seen as a serious environmental problem across the world. The need for an improved evidence base on soil loss and soil redistribution rates has directed attention to the use of fallout radionuclides, and particularly 137Cs, for documenting soil redistribution rates. This approach possesses important advantages over more traditional means of documenting soil erosion and soil redistribution. However, one key limitation of the approach is the time-averaged or lumped nature of the estimated erosion rates. In nearly all cases, these will relate to the period extending from the main period of bomb fallout to the time of sampling. Increasing concern for the impact of global change, particularly that related to changing land use and climate change, has frequently directed attention to the need to document changes in soil redistribution rates within this period. Re-sampling techniques, which should be distinguished from repeat-sampling techniques, have the potential to meet this requirement. As an example, the use of a re-sampling technique to derive estimates of the mean annual net soil loss from a small (1.38 ha) forested catchment in southern Italy is reported. The catchment was originally sampled in 1998 and samples were collected from points very close to the original sampling points again in 2013. This made it possible to compare the estimate of mean annual erosion for the period 1954–1998 with that for the period 1999–2013. The availability of measurements of sediment yield from the catchment for parts of the overall period made it possible to compare the results provided by the 137Cs re-sampling study with the estimates of sediment yield for the same periods. In order to compare the estimates of soil loss and sediment yield for the two different periods, it was necessary to establish the uncertainty associated with the individual estimates. In the absence of a generally accepted procedure for such calculations, key factors influencing the uncertainty of the estimates were identified and a procedure developed. The results of the study demonstrated that there had been no significant change in mean annual soil loss in recent years and this was consistent with the information provided by the estimates of sediment yield from the catchment for the same periods. The study demonstrates the potential for using a re-sampling technique to document recent changes in soil redistribution rates.
•The study uses 137Cs measurements to document changes in soil erosion rates.•A small forested catchment in southern Italy is selected for a case study.•A re-sampling technique is employed to investigate changes in soil erosion rates.•The results are validated by comparison with catchment sediment yield data. |
Author | Alewell, Christine Walling, Des E. Porto, Paolo Meusburger, Katrin Zehringer, Markus Mabit, Lionel Mallimo, Nicola Callegari, Giovanni |
Author_xml | – sequence: 1 givenname: Paolo orcidid: 0000-0001-5597-0811 surname: Porto fullname: Porto, Paolo email: paolo.porto@unirc.it organization: Dipartimento di AGRARIA, Università degli Studi “Mediterranea” di Reggio Calabria, Italy – sequence: 2 givenname: Des E. surname: Walling fullname: Walling, Des E. organization: Geography, College of Life and Environmental Sciences, University of Exeter, Exeter, UK – sequence: 3 givenname: Christine surname: Alewell fullname: Alewell, Christine organization: Department of Environmental Sciences, University of Basel, Switzerland – sequence: 4 givenname: Giovanni surname: Callegari fullname: Callegari, Giovanni organization: C.N.R.– Istituto per i Sistemi Agricoli e Forestali del Mediterraneo, Sezione Ecologia e Idrologia Forestale, Rende (Cs), Italy – sequence: 5 givenname: Lionel surname: Mabit fullname: Mabit, Lionel organization: Soil and Water Management and Crop Nutrition Laboratory, FAO/IAEA Agriculture & Biotechnology Laboratories, IAEA Laboratories, Seibersdorf, Austria – sequence: 6 givenname: Nicola surname: Mallimo fullname: Mallimo, Nicola organization: Dipartimento di AGRARIA, Università degli Studi “Mediterranea” di Reggio Calabria, Italy – sequence: 7 givenname: Katrin surname: Meusburger fullname: Meusburger, Katrin organization: Department of Environmental Sciences, University of Basel, Switzerland – sequence: 8 givenname: Markus orcidid: 0000-0001-5721-1800 surname: Zehringer fullname: Zehringer, Markus organization: State Laboratory Basel-City, Switzerland |
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Keywords | Sediment yield Re-sampling Uncultivated soils Soil loss 137Cs Southern Italy Cs sediment yield modern Cs-137 soil erosion landform evolution |
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SubjectTerms | 137Cs Earth sciences Earth, ocean, space Exact sciences and technology Marine and continental quaternary Re-sampling Sediment yield Soil loss Soils Southern Italy Surficial geology Uncultivated soils |
Title | Use of a 137Cs re-sampling technique to investigate temporal changes in soil erosion and sediment mobilisation for a small forested catchment in southern Italy |
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