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2015 | Vol. 63, nr 1 | 1--9
Tytuł artykułu

A new model for hazard evaluation of vegetation degradation using DPSIR framework, a case study: Sadra Region, Iran

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Vegetation degradation causes reduction in the available biomass, and decline in the vegetative cover. The Sadra watershed which covers the upper reaches of Marharlu basin, in southern Iran, has been chosen for a test hazard assessment of this type of degradation. The different kinds of data for indicators of vegetation degradation were gathered from collecting of field data like percent canopy and biomass and also records and published reports of the governmental offices of Iran. A new model has been developed for assessing the hazard of vegetation degradation using DPSIR (Driving forces, Pressures, State, Impacts and Responses) framework. The approach is based on the use of indicators, which may be direct or indirect, ecological, technical, socioeconomic or cultural causes of environmental hazard. Taking into consideration fourteen indicators of vegetation degradation the model identifies areas with different hazard class. The preparation of hazard maps based on the Geographic Information System (GIS) analysis of these indicators will be helpful for prioritizing the areas to initiate remedial measures. By fixing the thresholds of severity classes of the fourteen indicators, a hazard map for each indicator was first prepared in GIS. The hazard classes were defined on the basis of hazard scores arrived at by assigning the appropriate attributes to the indicators and the final hazard map was prepared by intersecting fourteen hazard maps in five main hazard layers including anthropogenic, natural, current state of hazard, livestock pressure and trend of degradation in the GIS. Results show among the five main hazard maps used in the model, the most main effective indicator in vegetation degradation of the study area is ‘Current State of Hazard’. Also areas under severe hazard class have been found to be widespread (58%) and areas under moderate hazard class have been found (42%) in the Sadra watershed.
Wydawca

Rocznik
Strony
1--9
Opis fizyczny
Bibliogr. 25 poz., rys., tab., wz.
Twórcy
autor
  • Department of Natural Resources and Environment, Shiraz University, Shiraz, Iran, masoudi@shirazu.ac.ir
autor
  • Department of Environment in Fars Province, Shiraz, Iran
Bibliografia
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  • 4. EEA 1999 - Environment in the European Union at the turn of the century, environmental assessment report no. 2 - Copenhagen: EEA.
  • 5. FAO 1994 - Land degradation in South Asia: its severity causes and effects upon the people - FAO, UNDP, UNEP, Rome.
  • 6. FAO 2002 - Land Degradation Assessment in Drylands: LADA - FAO, Rome.
  • 7. FAO/UNEP 1984 - Provisional methodology for assessment and mapping of desertification - Food and Agriculture Organization of the United Nations, Rome, 84 pp.
  • 8. Feiznia S., Gooya A.N., Ahmadi H., Azarnivand H. 2001 - Investigation on desertification factors in Hossein-Abad Mish Mast plain and a proposal for a regional model - J. of Biaban 6: 1-14 (in Persian).
  • 9. Grainger A. 1996 - The degradation of tropical rain forest in Southeast Asia: taxonomy and appraisal (Land Degradation in the Tropics, Eds: M.E. Eden, J.T. Parry) - London, Mansell Publishers, pp. 61-75.
  • 10. Grunblatt J., Ottichilo W.K., Sinange R.K. 1992 - A GIS approach to desertification assessment and mapping - J. of Arid Environ. 23: 81-102.
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  • 13. Le Houerou H. N., Hoste C.H. 1977 - Rangeland production and annual rainfall relations in the Mediterranean Basin and in the African Sahelo - Sudanian zone - J. of Rang. Manag. 30: 181-189.
  • 14. Masoudi M. 2010 - Risk assessment and remedial measures of land degradation, in parts of Southern Iran - Lambert Academic Publishing (LAP), Germany, 220 pp.
  • 15. Noruzi R. 2008 - Hazard assessment of ground water resource degradation using GIS in Mond Miyani and Kol basins - MSc. thesis of Department of Desert Region Management, Tehran University, Iran.
  • 16. Oldeman L.R., Hakkeling R.T.A., Sombroek W.G. 1991 - World map of the status of human-induced soil degradation: an explanatory note - Nairobi, UNEP, 27 pp + 3 maps.
  • 17. Pickup G., Bastin G.N., Chewings V.H. 1994 - Remote sensing based condition assessment for non-equilibrium rangelands under large-scale commercial grazing - Ecol. Appl. 4: 497-517.
  • 18. Ponce Hernandez R., Koohafkan P. 2004 - Methodological framework for land Degradation Assessment in Drylands (LADA) - FAO Report.
  • 19. Ringrose S., Sefe F., Ekose G. 1995 - Progress towards the evaluation of desertification in Botswana - Desertif. Cont. Bul. 27: 62- 68.
  • 20. Rowntree K.M. 1988 - Equilibrium concepts, vegetation change and soil erosion in semiarid areas: some considerations for Karoo (In: Geomorphological studies in southern Africa, Eds: G.F. Dardis, B.P. Moon) - Balkema, Rotterdam Netherlands, pp. 175-185
  • 21. Singh S., Kar A., Joshi D.C., Ram B., Kumar S., Vats P.C., Singh N., Raina P., Kolarkar A.S., Dhir R.P 1992 - Desertification mapping in Western Rajasthan - Annal. of Arid Zon. 31: 237-246.
  • 22. Trimble S.W. 1990 - Geomorphic effects of vegetation cover and management: Some time and space considerations in prediction of soil erosion and sediment yield (In: Vegetation and erosion, processes and environments, Ed: J.B. Thornes) - John Wiley & Sons, New York, pp. 55-65.
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  • 25. Zehtabian G., Jafari R. 2002 - Evaluation of water resources degradation in Kashan area using desertification model - J. of Ecol. 30: 19-30 (in Persian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e02b1105-f79f-4a61-b6db-7c8c7fc8a661
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