journal article Jul 04, 2013

Assessing the susceptibility of alpine soils to erosion using soil physical and site indicators

Soil Use and Management Vol. 29 No. 4 pp. 586-596 · Wiley
View at Publisher Save 10.1111/sum.12063
Abstract
Abstract

Soil erosion in mountainous regions is a key issue in land use planning, and this is particularly true in the
A
lps where intense anthropogenic influences at low elevations and abandonment in higher regions often coexist to affect soils. Natural hazard and risk assessment are essential given the density of settlements and associated facilities. Soil loss due to water erosion is very common and is becoming more frequent as a consequence of climate change which affects precipitation regimes, frequency of extreme meteorological events, snow melt and vegetation. In this study, we describe the production of a map showing susceptibility to soil erosion in the
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osta
V
alley (northwest
I
talian
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lps). Most research on slope instability has focused on rock failures, but we investigated upper soil horizons by analysing chemical and physical properties, which could contribute to slope instability. The steps involved in creating the map are explained, and these involved
GIS
overlay, sampling, soil description, selection of relevant chemical and physical indicators of soil susceptibility to erosion, and overall erosion susceptibility assessment. The resultant indicator values correspond well with field observations to thus validate the methodology and demonstrate its usefulness in land use planning and management in
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lpine areas.
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References
47
[8]
Casagrande A. "Research on the Atterberg limits of soils" Public Roads (1932)
[12]
A GIS procedure for automatically calculating the USLE LS factor on topographically complex landscape units

P.J.J. Desmet, G. Govers

Journal of Soil and Water Conservation 10.1080/00224561.1996.12457102
[15]
Freppaz M. (2002)
[16]
Freppaz M. (2012)
[19]
IPCC 2007.Contribution of working groups I II and III to the fourth assessment report of the intergovernmental panel on climate change. Available at:http://www.ipcc.ch/publications_and_data/publications_ipcc_fourth_assessment_report_synthesis_report.htm; accessed 5/3/2013.
[20]
IUSS Working Group (2006)
[21]
Factors of Soil Formation

Hans Jenny

Soil Science 10.1097/00010694-194111000-00009
[23]
Soil carbon sequestration to mitigate climate change

R. Lal

Geoderma 10.1016/j.geoderma.2004.01.032
[29]
The measurement of diversity in different types of biological collections

E.C. Pielou

Journal of Theoretical Biology 10.1016/0022-5193(66)90013-0
[36]
S.I.S.S. (2010)
[37]
Soil Survey Staff (2010)
[38]
Stanchi S. (2008)
[39]
Stanchi S. "Linear regression models for liquid and plastic limit estimation in Alpine soils" Agrochimica (2009)
[40]
Stanchi S. "The influence of Alpine soil properties on shallow movement hazards, investigated through factor analysis" Natural Hazard and Earth System Science (2012)
[43]
U.S. Soil Conservation Service (1972)
[44]
Wischmeier W.H. (1978)
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Citations
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References
Details
Published
Jul 04, 2013
Vol/Issue
29(4)
Pages
586-596
License
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Cite This Article
S. Stanchi, M. Freppaz, D. Godone, et al. (2013). Assessing the susceptibility of alpine soils to erosion using soil physical and site indicators. Soil Use and Management, 29(4), 586-596. https://doi.org/10.1111/sum.12063