RCIN and OZwRCIN projects

Object

Title: Land-use changes and their impact on land degradation in the context of sustainable development of the Polish Western Carpathians during the transition to free-market economics (1986-2019)

Creator:

Bucała-Hrabia, Anna : Autor Affiliation ORCID

Date issued/created:

2023

Resource type:

Text

Subtitle:

Geographia Polonica Vol. 96 No. 1 (2023)

Publisher:

IGiPZ PAN

Place of publishing:

Warszawa

Description:

24 cm

Abstract:

The objective of this study was to analyse land use and land cover in three catchments of the Polish Western Carpathians, using good practice guidance for estimating land degradation in the context of the United Nations’ Sustainable Development Goals. Orthophotomap analysis indicates that the vast majority of changes, especially those related to the withdrawal of agriculture, have resulted in land improvement. Relatively minor changes leading to land degradation were associated with pressure from increasing population due to settlement development as well as the conversion of forested areas into grassland. The latter was dominant in the higher mountain catchments.

References:

Baumann, M., Kuemmerle, T., Elbakidze, M., Ozdogan, M., Radeloff, V. C., Keuler, N. S., … & Hostert, P. (2011). Patterns and drivers of post-socialist farmland abandonment in Western Ukraine. Land Use Policy, 28(3), 552-562. https://doi.org/10.1016/j.landusepol.2010.11.003 DOI
Bellwood, P. (2005). First farmers: The origins of agricultural societies. Blackwell Publishing: UK.
Bennett, A. F., & Saunders, D. A. (2010). Habitat fragmentation and landscape change. In N. Sodhi, & P. Ehrlich (Eds.), Conservation biology for all (pp. 88-106). Oxford, UK: University Press. DOI
Bonan, G. B. (2008). Forests and climate change: Forcings, feedbacks, and the climate benefits of forests. Science, 320, 1444-1449. https://doi.org/10.1126/science.1155121 DOI
Boardman, J., & Poesen, J. (Eds.). (2006). Soil erosion in Europe. Chichester: John Wiley & Sons. DOI
Brahma, B., Pathak, K., Lal, R., Kurmi, B., Das, M., Nath, P. C., … & Das, A. K. (2018). Ecosystem carbon sequestration through restoration of degraded lands in Northeast India. Land Degradation & Development, 29, 15-25. https://doi.org/10.1002/ldr.2816 DOI
Bucała-Hrabia, A. (2017). Long-term impact of socio-economic changes on agricultural land use in the Polish Carpathians. Land Use Policy, 64, 391-404. https://doi.org/10.1016/j.landusepol.2017.03.013 DOI
Bucała-Hrabia, A. (2018). Land use changes and their catchment-scale environmental impact in the Polish Western Carpathians during transition from centrally planned to free-market economics. Geographia Polonica, 91(2), 171-196. https://doi.org/10.7163/GPol.0116 DOI
Czajka, S. (1987). Ochotnica: dzieje gorczańskiej wsi 1416-1986. Jelenia Góra: KTN.
Ćwik, A., & Hrehorowicz-Gaber, H. (2021). Causes and effects of spatial chaos in the Polish Carpathians - a difficult way to sustainable development. European Countryside, 13(1), 153-174. https://doi.org/10.2478/euco-2021-0009 DOI
Davidar, P., Sahoo, S., Mammen, P. C., Acharya, P., Puyravaud, J. P., Arjunan, M.,Garrigues, J. P., & Roessing, K. (2010). Assessing the extent and causes of forest degradation in India: Where do we stand? Biological Conservation, 143, 2937-2944. https://doi.org/10.1016/j.biocon.2010.04.032 DOI
Dotterweich, M. (2008). The history of soil erosion and fluvial deposits in small catchments of central Europe: Deciphering the long-term interaction between humans and the environment - A review. Geomorphology, 101(1), 192-208. https://doi.org/10.1016/j.geomorph.2008.05.023 DOI
Easdale, M. H., Fari˜na, C., Hara, S., P'erez Le'on, N., Uma˜na, F., Tittonell, P., & Bruzzone, O. (2019). Trend-cycles of vegetation dynamics as a tool for land degradation assessment and monitoring. Ecological Indicators, 107, 105545. https://doi.org/10.1016/j.ecolind.2019.105545 DOI
Geist, H. J., & Lambin, E. F. (2002). Proximate causes and underlying driving forces of tropical deforestation tropical forests are disappearing as the result of many pressures, both local and regional, acting in various combinations in different geographical locations. BioScience, 52(2), 143-150. https://doi.org/10.1641/0006-3568(2002)052[0143:PCAUDF]2.0.CO;2 DOI
Gellrich, M., Baur, P., Koch, B., & Zimmermann, N. E. (2007). Agricultural land abandonment and natural forest re-growth in the Swiss mountains: a spatially explicit economic analysis. Agriculture, Ecosystems & Environment, 118(1-4), 93-108. https://doi.org/10.1016/j.agee.2006.05.001 DOI
Gil, E., Kijowska-Strugała, M., Demczuk, P. (2021). Soil erosion dynamics on a cultivated slope in the Western Polish Carpathians based on over 30 years of plot studies. Catena, 207, 105682. https://doi.org/10.1016/j.catena.2021.105682 DOI
Górz, B. (2002). Współczesne przemiany na obszarach wiejskich Podhala. Przegląd Geograficzny 74(3), 451-468.
Górz, B. (2003). Społeczeństwo i gospodarka Podhala w okresie transformacji. Wyd. Akademia Pedagogiczna, Kraków.
Grodzińska, K., & Szarek-Łukaszewska, G. (1997). Polish Mountain Forests: past, present and future. Environmental Pollution, 98(3), 369-374. https://doi.org/10.1016/S0269-7491(97)00145-0 DOI
Grodzki, W., Loch, J., & Armatys, P. (2006). Występowanie kornika drukarza Ips typographus (L.) w uszkodzonych przez wiatr drzewostanach świerkowych masywu Kudłonia w Gorczańskim Parku Narodowym. Ochrona Beskidów Zachodnich, 1, 125-137.
Griffiths, P., Kuemmerle, T., Baumann, M., Radeloff, V. C. Abrudan, I. V., Lieskovsky, J., Munteanu, C., Ostapowicz, K., & Hostert, P. (2014). Forest disturbances, forest recovery, and changes in forest types across the Carpathian ecoregion from 1985 to 2010 based on Landsat image composites. Remote Sensing of Environment, 151, 72-88. https://doi.org/10.1016/j.rse.2013.04.022 DOI
Guo, L. B., & Gifford, R. M. (2002). Soil carbon stocks and land use change: a meta analysis. Global change biology, 8(4), 345-360. https://doi.org/10.1046/j.1354-1013.2002.00486.x DOI
Hess, M. (1965). Piętra klimatyczne w polskich Karpatach Zachodnich. Zeszyty Naukowe UJ, Prace Geograficzne 11, 1-258.
IUSS Working Group WRB. (2015). World reference base for soil resources 2014.International soil classification system for naming soils and creating legends for soil maps: update 2015. World Soil Resources Reports 106, Rome, FAO.
Kaim, D. (2009). Zmiany pokrycia terenu na pograniczu polsko-słowackim na przykładzie Małych Pienin. Przegląd Geograficzny, 81(1), 93-105. DOI
Kaim, D., Kozak, J., Kolecka, N., Ziółkowska, E., Ostafin, K., Ostapowicz, K., … & Radeloff, V. C. (2016). Broad scale forest cover reconstruction from historical topographic maps. Applied Geography, 67, 39-48. https://doi.org/10.1016/j.apgeog.2015.12.003 DOI
Kanianska, R., Kizeková, M., Nováček, J., & Zeman, M. (2014). Land-use and land-cover changes in rural areas during different political systems: A case study of Slovakia from 1782 to 2006. Land Use Policy, 36, 554-566. https://doi.org/10.1016/j.landusepol.2013.09.018 DOI
Keenleyside, C., & Tucker, G. (2010). Farmland abandonment in the EU: An assessment of trends and prospects. London: WWF and IEEP. London.
Kertesz, A., & Křeček, J. (2019). Landscape degradation in the world and in Hungary. Hungarian Geographical Bulletin 68, 201-221. https://doi.org/10.15201/hungeobull.68.3.1 DOI
Kędra, M., & Szczepanek, R. (2019). Land cover transitions and changing climate conditions in the Polish Carpathians: Assessment and management implications. Land Degradation & Development, 30(9), 1040-1051. https://doi.org/10.1002/ldr.3291 DOI
Klimek, K. (1987). Man's impact on fluvial processes in the Polish Western Carpathians. Geografiska Annaler, 69A(1), 221-226. https://doi.org/10.1080/04353676.1987.11880209 DOI
Kijowska-Strugała, M. (2019). Sediment variability in a small catchment of the Polish Western Carpathians during transition from centrally planned to free-market economics, Geomorphology, 325, 119-129. https://doi.org/10.1016/j.geomorph.2018.10.008 DOI
Kolecka, N., Kozak, J., Kaim, D., Dobosz, M., Ostafin, K., Ostapowicz, K., Wężyk, P., & Price, B. (2017). Understanding farmland abandonment in the Polish Carpathians. Applied Geography, 88, 62-72. https://doi.org/10.1016/j.apgeog.2017.09.002 DOI
Kroczak, R., Fidelus-Orzechowska, J., Bucała-Hrabia, A., & Bryndal, T. (2018). Land use and land cover changes in small Carpathian catchments between the mid-19th and early 21st centuries and their record on the land surface, Journal of Mountain Science, 15(12), 2561-2578. https://doi.org/10.1007/s11629-018-5095-y DOI
Kuemmerle, T., Hostert, P., Radeloff, V. C., van der Linden, S., Perzanowski, K., & Kruhlov, I. (2008). Cross-border comparison of post-socialist farmland abandonment in the Carpathians. Ecosystems, 11, 614-628. https://doi.org/10.1007/s10021-008-9146-z DOI
Kupková, L., Bičík, I., & Jeleček, L. (2021). At the crossroads of European landscape changes: Major processes of landscape change in Czechia since the middle of the 19th Century and their driving forces. Land, 10(1), 34. https://doi.org/10.3390/land10010034 DOI
Lasanta-Martínez, T., Vicente-Serrano, S. M., & Cuadrat-Prats, J. M. (2005). Mountain Mediterranean landscape evolution caused by the abandonment of traditional primary activities: A study of the Spanish Central Pyrenees. Applied Geography, 25(1), 47-65. https://doi.org/10.1016/j.apgeog.2004.11.001 DOI
Lieskovský, J., Bezák, P., Špulerová, J., Lieskovský, T., Koleda, P., Dobrovodská, M., … & Gimmi, U. (2015). The abandonment of traditional agricultural landscape in Slovakia-Analysis of extent and driving forces. Journal of Rural Studies, 37, 75-84. https://doi.org/10.1016/j.jrurstud.2014.12.007 DOI
Metternicht, G., Zinck, J. A., Blanco, P. D., & Del Valle, H. F. (2010). Remote sensing of land degradation: Experiences from Latin America and the Caribbean. Journal of Environmental Quality, 39, 42-61. https://doi.org/10.2134/jeq2009.0127 DOI
Mitsova, D. (2014). Coupling land use change modeling with climate projections to estimate seasonal variability in runoff from an urbanizing catchment near Cincinnati, Ohio. ISPRS International Journal of Geo-Information, 3(4), 1256-1277. https://doi.org/10.3390/ijgi3041256 DOI
Munteanu, C., Kuemmerle, T., Boltiziar, M., Butsic, V., Gimmi, U., Halada, L., … & Lieskovský, J. (2014). Forest and agricultural land change in the Carpathian region - a meta-analysis of long-term patterns and drivers of change. Land Use Policy, 38, 685-697. https://doi.org/10.1016/j.landusepol.2014.01.012 DOI
Niedziałkowska, E. (1981). Rzeźba terenu. In L. Starkel (Ed.), Warunki naturalne zlewni Homerki i jej otoczenia (pp.13-21), Dokumentacja Geograficzna, 3.
Petraglia, M. D., & Allchin, B. (Eds.). (2007). The evolution and history of human populations in South Asia: Inter-disciplinary studies in archaeology, biological anthropology, linguistics and genetics. Dordrecht: Springer. https://doi.org/10.1007/1-4020-5562-5 DOI
Pointereau, P., Coulon, F., Girard, P., Lambotte, M., Stuczynski, T., Sanchez Ortega, V.,… & Report, F. (2008). Analysis of the driving forces behind farmland abandonment and the extent and location of agricultural areas that are actually abandoned or are in risk to be abandoned. JRC Scientific and Technical Report, Institute for Environment and Sustainability, European Commission. Joint Research Centre.
Potterf, M., & Bone, C. (2017). Simulating bark beetle population dynamics in responseto windthrow events. Ecological Complexity, 32, 21-30. https://doi.org/10.1016/j.ecocom.2017.08.003 DOI
Prokop, P. (2020). Remote sensing of severely degraded land: Detection of long-term land-use changes using high-resolution satellite images on the Meghalaya Plateau, northeast India. Remote Sensing Applications: Society and Environment, 20. https://doi.org/10.1016/j.rsase.2020.100432 DOI
Rączkowska, Z., Bucała-Hrabia, A., & Prokop, P. (2018). Geomorphological and sedimentological indicators of land degradation (Meghalaya Plateau, NE India). Land Degradation and Development, 29(8), 2746-2759. https://doi.org/10.1002/ldr.3020 DOI
Seidl, R., Schelhaas, M. J., Rammer, W., & Verkerk, P. J. (2014). Increasing forest disturbances in Europe and their impact on carbon storage. Nature Climate Change, 4(9), 806-810. https://doi.org/10.1038/nclimate2318 DOI
Skokanová, H., Falťan, V., & Havlíček, M. (2016). Driving forces of main landscape change processes from past 200 years in Central Europe-differences between old democratic and post-socialist countries. Ekológia (Bratislava), 35(1), 50-65. https://doi.org/10.1515/eko-2016-0004 DOI
Sims, N. C., Green, C., Newnham, G. J., England, J. R., Held, A., Wulder, M. A., & Kumar, L.… (2017). Good Practice Guidance. SDG Indicator 15.3.1. Proportion of Land that Is Degraded over Total Land Area, UNCCD-SPI. https://catalogue.unccd.int/1531_Good_Practice_Guidance_SDG_Indicator_15.3.1_Version_1.0.pdf
Sims, N. C., England, J. R., Newnham, G. J., Alexander, S., Green, C., Minelli, S., & Held, A. (2019). Developing good practice guidance for estimating land degradation in the context of the United Nations sustainable development goals. Environmental Science & Policy, 92, 349-355. https://doi.org/10.1016/j.envsci.2018.10.014 DOI
Soja, M. (2008). Cykle rozwoju ludności Karpat polskich w XIX i XX wieku. Kraków: Instytut Geografii i Gospodarki Przestrzennej Uniwersytetu Jagiellońskiego.
Starkel, L. (1972). Zachodnie Karpaty Zewnętrzne (fliszowe). In M. Klimaszewski (Ed.), Geomorfologia Polski (pp. 52-115). Warszawa: Państwowe Wydawnictwo Naukowe.
Starkel, L. (1990). Ewolucja środowiska przyrodniczego Karpat w okresie działalności człowieka. Problemy Zagospodarowania Ziem Górskich, 29, 34-46.
Starkel, L., Pietrzak, M., & Łajczak, M. (2007). Wpływ zmian użytkowania ziemi i wzrostu częstotliwości ekstremalnych opadów na obieg wody i erozje˛ oraz ochronę˛ zasobów przyrodniczych Karpat. Problemy Zagospodarowania Ziem Górskich, 54, 19-31.
Święchowicz, J. (2012). Water erosion on agricultural foothill slopes (Carpathian Foothills, Poland). Zeitschrift für Geomorphologie, 56(Suppl. 3). https://doi.org/10.1127/0372-8854/2012/S-00102 DOI
Tasser, E., Walde, J., Tappeiner, U., Teutsch, A., & Noggler, W. (2007). Land-use changes and natural reforestation in the Eastern Central Alps. Agriculture, Ecosystems & Environment, 118(1), 115-129. https://doi.org/10.1016/j.agee.2006.05.004 DOI
United Nations. Department of Economic and Social Affairs. (2022). https://sdgs.un.org/goals/goal15
Zorn, M., & Komac, B. (2009). Response of soil erosion to land use change with particular reference to the last 200 years (Julian Alps, Western Slovenia). Revista de Geomorfologie, 11, 39-47.

Relation:

Geographia Polonica

Volume:

96

Issue:

1

Start page:

131

End page:

143

Detailed Resource Type:

Article

Resource Identifier:

oai:rcin.org.pl:238341 ; doi:10.7163/GPol.0249 ; 0016-7282 (print) ; 2300-7362 (online) ; 10.7163/GPol.0249

Source:

CBGiOS. IGiPZ PAN, call nos.: Cz.2085, Cz.2173, Cz.2406 ; click here to follow the link

Language:

eng

Language of abstract:

eng

Rights:

Creative Commons Attribution BY 4.0 license

Terms of use:

Copyright-protected material. [CC BY 4.0] May be used within the scope specified in Creative Commons Attribution BY 4.0 license, full text available at: ; -

Digitizing institution:

Institute of Geography and Spatial Organization of the Polish Academy of Sciences

Original in:

Central Library of Geography and Environmental Protection. Institute of Geography and Spatial Organization PAS

Projects co-financed by:

European Union. European Regional Development Fund ; Programme Innovative Economy, 2010-2014, Priority Axis 2. R&D infrastructure

Access:

Open

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