Spatial Scenarios of Land-Use/Cover Change for the Management and Conservation of Paramos and Andean Forests in Boyacá, Colombia †
Abstract
:1. Introduction
2. Methods
2.1. Land-Use/Cover Changes
2.2. Transition Sub-Models and Drivers of Change
2.3. Scenarios Construction and Predictions
3. Results and Discussion
3.1. Land-Use/Cover Change
3.1.1. Land-Use/Cover Change during 1998–2010
3.1.2. Land-Use/Cover Change during 2010–2018
3.2. Transition Sub-Models and Drivers of Change
3.3. Spatial Explicit Land-Use Scenarios for 2030 and 2050
4. Conclusions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
Appendix A
References
- Bax, V.; Francesconi, W.; Quintero, M. Spatial modeling of deforestation processes in the Central Peruvian Amazon. J. Nat. Conserv. 2016, 29, 79–88. [Google Scholar] [CrossRef]
- Foley, J.A.; DeFries, R.; Asner, G.P.; Barford, C.; Bonan, G.; Carpenter, S.R.; Snyder, P.K. Global consequences of land use. Science 2005, 309, 570–574. [Google Scholar] [CrossRef] [PubMed]
- The Food and Agriculture Organization of the United Nations and Earthscan. The State of the World’s Land and Water Resources for Food and Agriculture. Managing Systems at Risk; The Food and Agriculture Organization of the United Nations and Earthscan: Rome, Italy; New York, NY, USA, 2011; p. 285. [Google Scholar]
- Smith, P.; Gregory, P.J.; Vuuren, D.; Van Rounsevell, M.; Obersteiner, M.; Havlı, P.; Bellarby, J. Competition for land. Philos. Trans. R. Soc. 2010, 2941–2957. [Google Scholar] [CrossRef]
- Asner, G.P.; Elmore, A.J.; Olander, L.P.; Martin, R.E.; Harris, A.T. Grazing systems, ecosystem responses, and global change. Annu. Rev. Environ. Resour. 2004, 29, 261–299. [Google Scholar] [CrossRef]
- Wanumen-mesa, A.M. ¿Son los paisajes agrícolas dinámicos o estables? Estudio de caso en el lago de Tota (Boyacá, Colombia). Cuad. Geogr. Rev. Colomb. Geogr. 2020, 29, 207–223. [Google Scholar] [CrossRef]
- Wassenaar, T.; Gerber, P.; Verburg, P.H.; Rosales, M.; Ibrahim, M.; Steinfeld, H. Projecting land use changes in the Neotropics: The geography of pasture expansion into forest. Glob. Environ. Chang. 2007, 17, 86–104. [Google Scholar] [CrossRef]
- Cortés-Duque, J.; Sarmiento Pinzón, C.E. Visión Socioecosistémica de los Páramos y la alta Montaña Colombiana: Memorias del Proceso de Definición de Criterios Para la Delimitación de Páramos; Instituto de Investigación de Recursos Biológicos Alexander von Humboldt: Bogotá, Colombia, 2013; p. 235. Available online: http://repository.humboldt.org.co/handle/20.500.11761/31458#.WwYqtgebLwc.mendeley (accessed on 3 February 2020).
- Etter, A.; Mcalpine, C.; Wilson, K.; Phinn, S.; Possingham, H. Regional patterns of agricultural land use and deforestation in Colombia. Agric. Ecosyst. Environ. 2006, 114, 369–386. [Google Scholar] [CrossRef]
- Mittermeier, R.A.; Myers, N.; Thomsen, J.B.; Da Fonseca, G.A.B.; Olivieri, S. Biodiversity Hotspots and Major Tropical Wilderness Areas: Approaches to Setting Conservation Priorities. Conserv. Biol. 1998, 12, 516–520. [Google Scholar] [CrossRef]
- Hofstede, R.; Segarra, P.; Patricio, M.V. Los Paramos del Mundo. Proyecto Altlas Mundial del los Paramos; Global Peatland Iniciative/NC-IUCN/Ecociencia: Quito, Ecuador, 2003; 297p. [Google Scholar]
- Gobernación de Boyacá. Plan de Desarrollo 2016–2019. 2016. Available online: http://sedboyaca.gov.co/plan-de-desarrollo-boyaca-2016-2019/ (accessed on 9 November 2019).
- Beniston, M. Climatic change in mountain regions: A review of possible impacts. Clim. Chang. 2003, 59, 5–31. [Google Scholar] [CrossRef]
- Kindu, M.; Schneider, T.; Döllerer, M.; Teketay, D.; Knoke, T. Scenario modelling of land use/land cover changes in Munessa-Shashemene landscape of the Ethiopian highlands. Sci. Total Environ. 2018, 622–623, 534–546. [Google Scholar] [CrossRef]
- Eastman, J.; TerrSet, R. Manual; Clatk University: Worcester, MA, USA, 2015; p. 394. [Google Scholar]
- Puyravaud, J.P. Standardizing the calculation of the annual rate of deforestation. For. Ecol. Manag. 2003, 177, 593–596. [Google Scholar] [CrossRef]
- Armenteras, D.; Rodríguez, N.; Retana, J.; Morales, M. Understanding deforestation in montane and lowland forests of the Colombian Andes. Reg. Environ. Chang. 2010, 11, 693–705. [Google Scholar] [CrossRef]
- Eastman, R.; Solorzano, L.; van Fossen, M. Transition Potential Modeling for Land-Cover Change. In GIS, Spatial Analysys and Modeling; Maguire, J.D., Baty, M., Goodchild, M., Eds.; Redlands: New York, NY, USA, 2005; p. 423. [Google Scholar]
- Riahi, K.; Rao, S.; Krey, V.; Cho, C.; Chirkov, V.; Fischer, G. RCP 8.5—A scenario of comparatively high greenhouse gas emissions. Clim. Chang. 2011, 109, 33–57. [Google Scholar] [CrossRef]
- Thomson, A.M.; Calvin, K.V.; Smith, S.J.; Kyle, G.P.; Volke, A.; Patel, P.; Edmonds, J.A. RCP4.5: A Pathway for Stabilization of Radiative Forcing by 2100. Clim. Chang. 2011, 109, 1–25. [Google Scholar] [CrossRef]
- Rodríguez Eraso, N.; Armenteras-Pascual, D.; Alumbreros, J.R. Land use and land cover change in the Colombian Andes: Dynamics and future scenarios. J. Land Use Sci. 2012, 8, 154–174. [Google Scholar] [CrossRef]
- Redo, D.J.; Aide, T.M.; Clark, M.L. The Relative Importance of Socioeconomic and Environmental Variables in Explaining Land Change in Bolivia, 2001–2010. Ann. Assoc. Am. Geogr. 2012, 102, 778–807. [Google Scholar] [CrossRef]
- UNEP—United Nations Environment Programme. Latin America and the Caribbean: Environment Outlook, 2010, GEO LAC 3; UNEP: Panama City, Panama, 2010. [Google Scholar]
- Gutiérrez, B.N.; Gärtner, S.; López, H.J.Y.; Pacheco, C.E.; Reif, A. The recovery of the lower montane cloud forest in the Mucujún watershed, Mérida, Venezuela. Reg. Environ. Chang. 2013, 13, 1069–1085. [Google Scholar] [CrossRef]
- Sánchez-Cuervo, A.M.; Aide, T.M.; Clark, M.L.; Etter, A. Land Cover Change in Colombia: Surprising Forest Recovery Trends between 2001 and 2010. PLoS ONE 2012, 7. [Google Scholar] [CrossRef]
- Aide, T.M.; Grau, H.R.; Graesser, J.; Chacon, E.; Francisco, M.; Jose, M.; Rueda, X. Woody vegetation dynamics in the tropical and subtropical Andes from 2001 to 2014: Satellite image interpretation and expert validation. Glob. Chang. Biol. 2019, 2112–2126. [Google Scholar] [CrossRef]
- Armenteras, D.; Gast, F.; Villareal, H. Andean forest fragmentation and the representativeness of protected natural areas in the eastern Andes, Colombia. Biol. Conserv. 2003, 113, 245–256. [Google Scholar] [CrossRef]
- DeFries, R.; Hansen, A.J.; Newton, A.C.; Hansen, M.C. Increasing isolation of protected areas in tropical forests over the past twenty years. Ecol. Appl. 2005, 15, 19–26. [Google Scholar] [CrossRef]
- Sekercioglu, C.H.; Schneider, S.H.; Fay, J.P.; Loarie, S.R. Climate change, elevational range shifts, and bird extinctions. Conserv. Biol. 2008, 22, 140–150. [Google Scholar] [CrossRef] [PubMed]
- Agudelo-hz, W.J.; Urbina-cardona, N.; Armenteras-pascual, D. Critical shifts on spatial traits and the risk of extinction of Andean anurans: An assessment of the combined effects of climate and land-use change in Colombia. Perspect. Ecol. Conserv. 2019, 17, 206–219. [Google Scholar] [CrossRef]
- Jantz, S.M.; Barker, B.; Brooks, T.M.; Chini, L.P.; Huang, Q.; Moore, R.M.; Hurtt, G.C. Future habitat loss and extinctions driven by land-use change in biodiversity hotspots under four scenarios of climate-change mitigation. Conserv. Biol. 2015, 29, 1122–1131. [Google Scholar] [CrossRef] [PubMed]
- Sarmiento, C.C.; Cadena, M.; Sarmiento, J.Z. Aportes a la conservación estratégica de los paramos de Colombia: Actualización de la Cartografía de los Complejos de Paramo a Escala 1:100.000. Repositorio Instituto de Investigación de Recursos Biológicos Alexander von Humboldt. 2013. Available online: http://repository.humboldt.org.co/handle/20.500.11761/31406 (accessed on 20 January 2020).
Land Cover | 1998% | 2010% | Persistence | Gain | Loss | Annual Exchange Rate |
---|---|---|---|---|---|---|
Pastures-crops | 39 | 34.7 | 597.986 | 66.736 | 145.721 | −0.9 |
Secondary Vegetation | 10.4 | 17.1 | 131.37 | 197.228 | 66.978 | 4.2 |
Andean Forest | 29.2 | 24.8 | 432.893 | 41.716 | 122.853 | −1.3 |
Paramo | 11.4 | 10 | 137.739 | 54.583 | 78.923 | −1 |
Bushes | 3 | 7 | 43.385 | 90.011 | 14.392 | 7 |
Cobertura | 2010 | 2018 | Persistence | Gain | Loss | Annual Exchange Rate |
---|---|---|---|---|---|---|
Pastures-crops | 34.7 | 41.8 | 610.661 | 191.458 | 54.062 | 2.3 |
Secondary Vegetation | 17.1 | 17.6 | 175.805 | 161.41 | 152.792 | 0.3 |
Andean Forest | 24.8 | 18.4 | 319.771 | 33.725 | 154.837 | −3.7 |
Paramo | 10 | 10.1 | 146.634 | 47.91 | 45.688 | 0.1 |
Bushes | 7 | 6.5 | 72.253 | 52.238 | 61.143 | −0.9 |
TR | AI | CO | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
2010 | 2030 | 2050 | 2030 | 2050 | 2030 | 2050 | |||||||
% A | % A | % C | % A | % C | % A | % C | % A | % C | % A | % C | % A | % C | |
P-C | 34.7 | 29.66 | −14.45 | 27.68 | −20.17 | 31.40 | −9.43 | 29.42 | −15.15 | 28.27 | −18.45 | 26.29 | −24.16 |
SV | 17.1 | 28.26 | 64.92 | 32.68 | 90.65 | 28.26 | 64.91 | 32.67 | 90.65 | 29.65 | 73.00 | 34.06 | 98.74 |
AF | 24.8 | 18.65 | −24.67 | 15.65 | −36.79 | 17.41 | −29.67 | 14.41 | −41.80 | 18.65 | −24.67 | 15.64 | −36.80 |
P | 10 | 6.10 | −39.17 | 4.54 | −54.78 | 5.60 | −44.17 | 4.03 | −59.78 | 6.10 | −39.17 | 4.54 | −54.78 |
B | 7 | 10.88 | 56.32 | 13.02 | 87.11 | 10.88 | 56.35 | 13.02 | 87.10 | 10.88 | 56.35 | 13.02 | 87.10 |
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Castellanos-Mora, L.; Agudelo-Hz, W. Spatial Scenarios of Land-Use/Cover Change for the Management and Conservation of Paramos and Andean Forests in Boyacá, Colombia. Environ. Sci. Proc. 2021, 3, 87. https://doi.org/10.3390/IECF2020-08023
Castellanos-Mora L, Agudelo-Hz W. Spatial Scenarios of Land-Use/Cover Change for the Management and Conservation of Paramos and Andean Forests in Boyacá, Colombia. Environmental Sciences Proceedings. 2021; 3(1):87. https://doi.org/10.3390/IECF2020-08023
Chicago/Turabian StyleCastellanos-Mora, Luisa, and William Agudelo-Hz. 2021. "Spatial Scenarios of Land-Use/Cover Change for the Management and Conservation of Paramos and Andean Forests in Boyacá, Colombia" Environmental Sciences Proceedings 3, no. 1: 87. https://doi.org/10.3390/IECF2020-08023
APA StyleCastellanos-Mora, L., & Agudelo-Hz, W. (2021). Spatial Scenarios of Land-Use/Cover Change for the Management and Conservation of Paramos and Andean Forests in Boyacá, Colombia. Environmental Sciences Proceedings, 3(1), 87. https://doi.org/10.3390/IECF2020-08023