- اختصاصی، م.ر. و سپهر، ع. (۱۳۹۰). روشها و مدلهای ارزیابی و تهیة نقشة بیابانزایی، انتشارات دانشگاه یزد.
- سپهر، ع. (1392). تعادل ترمودینامیکی و فروپاشی کاتاستروفیک اکوسیستم: بیابانیشدن و گذرهای بحرانی، مجلة جغرافیا و برنامهریزی محیطی، 25(2): 119-132.
- سپهر، ع. و پرویان، ن. (۱۳۹۲). تهیة نقشة آسیبپذیری بیابانزایی و اولویتبندی راهبردهای مقابله در اکوسیستمهای استان خراسان رضوی بر پایة الگوریتم نارتبهای پرامسه، مجلة پژوهشهای دانشزمین، 2(8): ۵۸-۷۱.
- مومنی، م. (۱۳۸۵). مباحث نوین تحقیق در عملیات، انتشارات دانشکدة مدیریت دانشگاه تهران.
- Allbed, A. and Kumar, L. (2013). Soil Salinity Mapping and Monitoring in Arid and Semi-Arid Regions Using Remote Sensing Technology, Advances in Remote Sensing, 2: 373-385.
- Bailey, R.G. (2014). Ecoregions, Springer Science, New York.
- Bailey, R.G. (1996). Ecosystem geography, Springer, New York.
- Blonk, H.; Lindeiger, E. and Broers, J. (1997). Towards a Methodology for Taking Physical Degradation of Ecosystems into Account in LCA, 6th SETAC-Europe Meeting, 2: 91-98.
- Cowell, S.J. and Clift, R. (2000). A methodology for assessing soil quantity and quality in life cycle assessment, Journal of Cleaner Production, 8(4): 321-331.
- Cowell, S.J. and Lindeijer, E. (2000). Impacts on ecosystems due to land use: biodiversity, life support, and soil quality in life cycle assessment, In Agricultural data for life cycle assessment, 8(4): 313-319.
- DESERTLINKS (2004). Desertification Indicator System for Mediterranean Europe (DIS4ME). European Commission, Contract EVK2-CT-2001-00109, http://www.kcl.ac.uk/projects/desertlinks/ (last accessed date August 5, 2008).
- Ekhtesasi, M.R. and Sepehr, A. (2011). Methods and Models of Desertification Assessment and Mapping, Yazd Univercity.
- Garrigues, E.; Corson, M.S.; Angers, D.A.; Werf, H. and Walter, C. (2012). Soil quality in Life Cycle assessment: Towards development of an indicator, Elsevier, 18: 434-442.
- ISO, 2006a. ISO 14040 International Standards. In: Environmental Management – Life Cycle Assessment – Principles and Framework. International Organisation for Standardization, Geneva, Switzerland.
- Jabbar, M.T. (2012). Assessment of Soil Salinity Risk on the Agricultural Area in Basrah Province, Iraq: Using Remote Sensing and GIS Technique, Journal of Earth Science, 23(6): 881–891.
- Khan, M.N.; Rastoskuev, V.V.; Sato, Y. and Shiozawa, S. (2005). Assessment of hydrosaline land degradation by using a simple approach of remote sensing indicators, Elsevier, 77(1-3): 96-109.
- Koellner, T. and Scholz, R. (2007). Assessment of Land Use Impacts on the Natural Environment, International Journal of Life Cycle Assessment, 13(1): 32-48.
- Mehta, M.; Anh, V.Le.; Saha, S.K. and Agrawal, Sh. (2012). Evaluation of Indices and Parameters Obtained from Optical and Thermal Bands of Landsat 7 ETM+ for Mapping of Salt- Affected Soils and Water-Logged Areas, Asian Journal of Geoinformatics, 12(4): 9-16.
- Mila i Canals, L.; Bauer, C.; Depestele, J.; Dubreuil, A.; Freiermuth Knuchel, R.; Gaillard, G.; Michelsen, O.; Muller-Wenk, R. and Rydgren, B. (2007). Key elements in framework for land use impact assessment within LCA, The International Journal of Life Cycle Assessment, 12(1): 5–15.
- Momeni, M. (2007). New Issues of Operation Research, Univercity of Tehran.
- Nunez, M. (2011). Modelling Location-dependent environmental impacts in Life Cycle Assessment: Water use, desertification and soil erosion. Doctoral thesis, Dr. Assumpcio Anton Vallejo, Environmental Science and Technology, Univercity Autonoma de Barcelona, 203p.
- Nunez, M.; Civit, B.; Muñoz, P.; Arena, A.P.; Rieradevall, J. and Antón, A. (2010). Assessing potential desertification environmental impact in life cycle assessment, Int J Life Cycle Assess, 15(1): 67–78.
- Sepehr, A. (2014). Thermo dynamic Equlibrium and Catastrophic Collapse: Desertification and Critical Transition, Geography and Environmental Planning, 25(2): 119-132.
- Sepehr, A. and Parvian, N. (2014). Desertification vulnerability mapping and Developing Combating Strategies in the Ecosystem of Khorasan Razavi Province using PROMETHEE Algoritm, Journal of Earth Science researchers, 2(8): 58-71.
- Sepehr, A.; Zucca, Cl. and Nowjavan, M.R (2014). Desertification Inherent Status Using Factors Representing Ecological Resilience, British Journal of Environment & Climate Change, 4(3): 279-291.
- Society of Environmental Toxicology and Chemistry (SETAC) and SETAC Foundation for Environmental Education Inc. (1991). ‘A Technical Framework for Life−cycle Assessment’, Washington, DC: Society of Environmental Toxicology and Chemistry and SETAC Foundation for Environmental Education Inc. (Workshop held in Smugglers Notch, Vermont, August 18-83, 1990).
- Tervonen, T.; Sepehr, A. and Kadzinski, M. (2015). Regional anti-desertification management with a multi-criteria inference approach, Journal of Environmental Management, 162: 9-19.
- United Nations (1994). United Nations Convention to Combat Desertification in Countries Experiencing serious Drought and/or Desertification, Particularly in Africa.
- Wagendrop, T.; Gulinck, H.; Coppin, P. and Muys, B. (2006). Land use impact evaluation in life cycle assessment based on ecosystem thermodynamics, Elsevier, 31(1): 112-125.
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