Research Article
BibTex RIS Cite

Assessing Two Decades of Land Use/Land Cover Changes in the Uluabat Lake Ramsar Site using Multi-Temporal Satellite Imagery

Year 2024, Volume: 10 Issue: 2, 100 - 111
https://doi.org/10.33904/ejfe.1318353

Abstract

The Ramsar Convention on Wetlands designates over 2,000 sites of international importance, providing crucial habitats for diverse species. Uluabat Lake faces anthropogenic pressures such as urbanization, agriculture, and industrialization, affecting its ecological integrity. The land use/land cover (LULC) changes in the lake's catchment area were assessed using multi-temporal Landsat 7 and Landsat 9 satellite images from 2002 and 2022, along with 2019 management plans. Data were pre-processed with ENVI and stored in ERDAS Imagine program. Then, pixel-based image analysis with maximum likelihood classification (MLC) was employed to generate LULC maps and evaluated classification accuracy using ground truth data and the kappa coefficient. The results revealed a 15.8% reduction in lake area, from 136.1 km² in 2002 to 114.5 km² in 2022, primarily due to sediment transport from surrounding agricultural land and tributary streams. Urban-agricultural and reed-swamp areas increased by 74.7% and 59.6%, respectively, while shrubs and forests declined by 35.64%, largely from reed conversion to agriculture in the Mustafakemalpaşa River delta. Overall classification accuracy ranged from 88.2% to 91% with a kappa coefficient of 0.81 to 0.82, respectively. These transformations highlight the increase in reed and swamp areas and the decrease in lake area, emphasizing the need for effective conservation and management practices.

References

  • Aksoy, E. and Özsoy, G. 2002. Investigation of multi-temporal land use/cover and shoreline changes of the Uluabat Lake Ramsar Site using RS and GIS. In Proceedings of the International Conference on Sustainable Land Use and Management, 10: 13.
  • Albalawi, E.K. 2023. Comparing pixel-based to object-based image classifications for assessing LULC change in an arid environment of northern west Saudi Arabia. The Egyptian Journal of Environmental Change, 15(1):55-76. https://doi.org/10.21608/ejec. 2023.286642
  • Anadolu Agency, 2023. “Türkiye'de 105 sulak alan bulunuyor.” https://www.aa.com.tr/tr/yesilhat/dogal-yasam/turkiyede-105-sulak-alan-bulunuyor/1819657 coronavirus/2175200 (2021), Accessed 1st June 2023
  • Bai, Y., Jiang, B., Alatalo, J. M., Chen, Z., Wang, X., Xu, W. 2016. Impacts of land management on ecosystem service delivery in the Baiyangdian river basin. Environmental Earth Sciences, 75(3). https://doi.org/10.1007/s12665-015-4831-7
  • Bandara, B., Silva, R., Dayawansa, N. 2019. Analysis of forest cover loss in the forest complex: a remotely sensed change detection and fragmentation analysis. Tropical Agricultural Research, 30(4):81. https://doi.org/10.4038/tar.v30i4.8330
  • Bermoy, M.M., Cacayan, V.O., Carido, J.C., Apdohan, A.G., Cacayan, A.O. 2023. Prediction of future land use land cover (lulc) and assessment of its impact on the water supply availability of Butuan city-taguibo river watershed and forest reserve (trwfr), philippines. The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLVIII-4/W6-2022, 81-86. https://doi.org/10.5194/isprs-archives-xlviii-4-w6-20 22-81-2023
  • Biswas, T., Pal, S.C., Saha, A., Ruidas, D., Islam, A.R.M.T., Shit, M. 2023. Hydro-chemical assessment of groundwater pollutant and corresponding health risk in the Ganges delta, Indo-Bangladesh region. Journal of Cleaner Production, 382:135229.
  • Burian, S.J., Brown, M.J., McPherson, T.N. 2002. Evaluation of land use/land cover datasets for urban watershed modeling. Water Science and Technology, 45(9):269-276. https://doi.org/10.2166/wst.2002. 0256
  • Butt, A., Shabbir, R., Ahmad, S.S., Aziz, N. 2015. Land use change mapping and analysis using remote sensing and GIS: a case study of Simly watershed, Islamabad, Pakistan. Egyptian Journal of Remote Sensing and Space Science, 18(2):251–259. https://doi.org/10.1016/j.ejrs.2015.07.003.
  • Çağırankaya, S.S. and Meriç, B.T. 2013. Turkey’s Important Wetlands: Ramsar Sites. Republic of Turkey Ministry of Agriculture and Forestry General Directorate of Nature Conservation and National Parks. Ankara, Turkey.
  • Cetin, M. 2009. A satellite-based assessment of the impact of urban expansion around a lagoon. International journal of Environmental Science and Technology, 6(4):579–590. https://doi.org/10.1007/ BF03326098.
  • Cohen, J. 1960. A coefficient of agreement for nominal scales. Educational and Psychological Measurement. 20(1):37–46. doi:10.1177/001316446002000104.
  • Congalton, R. G., Green, K. (2009). Assessing the Accuracy of Remotely Sensed Data: Principles and Practices (Second Edition). CRC Press Taylor & Francis Group.
  • Corner, R. J., Dewan, A. M., Chakma, S. 2014. Chapter 5 monitoring and prediction of land-use and land-cover (LULC) change. In A. M. Dewan & R. J. Corner (Eds.), Dhaka megacity: geospatial perspectives on urbanisation, environment and health (pp.75–97). Dordrecht: Springer http://www.springer. com/series/10180. Accessed 30 Jan 2020.
  • Demirel, Ö. 2005. Doğa koruma ve milli parklar. Karadeniz Teknik Üniversitesi. Rektörlüğü Genel Yayın No. 219, 424, Trabzon.
  • Deng, J. S., Wang, K., Hong, Y., Qi, J.G. 2009. Spatio-temporal dynamics and evolution of land use change and landscape pattern in response to rapid urbanization. Landscape and Urban Planning, 92(3–4):187–198. https://doi.org/10.1016/j.landurbplan. 2009.05.001.
  • Deng, L., Liu, G., Shangguan, Z. 2014. Land‐use conversion and changing soil carbon stocks in China's ‘grain‐for‐green’ program: a synthesis. Global Change Biology, 20(11):3544-3556. https://doi.org 10.1111/gcb.12508
  • Djimadoumngar, K. N. and Adegoke, J. 2018. Satellite-Based Assessment of Land Use and Land Cover (LULC) Changes around Lake Fitri, Republic of Chad. Journal of Sustainable Development, 11(5): 71.
  • FAO, 2011. FAOSTAT. Food and Agriculture Organization of the United Nations
  • Fletcher S., Kawabe M., Rewhorn S. 2011. Wetland conservation and sustainable coastal governance in Japan and England. Marine pollution bulletin, 62(5):956–962.
  • Gardner, R., Finlayson, M. 2018. Global Wetland outlook: state of the world’s wetlands and their services to people. Ramsar Convention Secretariat, 2018, Stetson University College of Law Research Paper No. 2020-5. Available at https://ssrn.com/abstract=3261606
  • Gencal, B., Taş, İ., Akay, A.E. 2018. Spatiotemporal Change Detection of the Linden Forests in Bursa, Turkey. European Journal of Forest Engineering, 4(2):50-55.
  • Gunathilaka, M., Halwatura, D., Manawadu, L., Munasinghe, D. 2022. Application of satellite remote sensing and dapsi(w)r(m) framework as a tool to assess land use impacts on urban lakes in Sri Lanka. Environment and Urbanization Asia, 13(2):218-231. https://doi.org/10.1177/09754253221120606
  • Habte, D.G., Belliethathan, S., Ayenew, T. 2021. Evaluation of the status of land use/land cover change using remote sensing and GIS in Jewha Watershed, Northeastern Ethiopia. SN Applied Sciences, 3:1-10.
  • Hacısalihoğlu S., Karaer F., Katip A. 2016. Applications of geographic information system (GIS) analysis of lake Uluabat. Environmental Monitoring and Assessment, 188(6):1–14.
  • Hacısalihoğlu, S. and Karaer, F. 2016. Relationships of heavy metals in water and surface sediment with different chemical fractions in Lake Uluabat, turkey. Polish Journal of Environmental Studies, 25(5):1937-1946. https://doi.org/10.15244/pjoes/62908
  • Hacısalihoğlu, S. and Karaer, F. 2018. Evaluation of water quality in eutrophic shallow lakes: case study on Lake Uluabat, Turkey. International Journal of Agriculture Environment and Food Sciences, 2(1):18-28. https://doi.org/10.31015/jaefs.18004
  • Hacısalihoğlu, S., Karaer, F., Katip, A. 2016. Applications of geographic information system (gis) analysis of Lake Uluabat. Environmental Monitoring and Assessment, 188(6). https://doi.org/10.1007/ s10661-016-5332-1
  • Hadeel, A. S., Jabbar, M. T., Chen, X. 2011. Remote sensing and gis application in the detection of environmental degradation indicators. Geo-Spatial Information Science, 14(1):39-47. https://doi.org/ 10.1007/s11806-011-0441-z
  • Hishe, S., Bewket, W., Nyssen, J., Lyimo, J. 2020. Analysing past land use land cover change and CA-Markov-based future modelling in the Middle Suluh Valley, Northern Ethiopia. Geocarto International, 35(3):225–255. https://doi.org/10.1080/10106049. 2018.1516241.
  • Ikiel, C., Ustaoglu, B., Dutucu, A.A., Kilic, D.E. 2013. Remote sensing and GIS-based integrated analysis of land cover change in Duzce plain and its surroundings (northwestern Turkey). Environmental Monitoring and Assessment, 185(2):1699–1709. https://doi.org/ 10.1007/ s10661-012-2661-6.
  • İşçen, C., Emiroğlu, Ö., İlhan, S., Arslan, N., Yılmaz, V., Ahıska, S. 2007. Application of multivariate statistical techniques in the assessment of surface water quality in Uluabat Lake, Turkey. Environmental Monitoring and Assessment, 144(1-3):269-276. https://doi.org/10.1007/s10661-007-9989-3
  • Islam, A.R.M.T., Kabir, M.M., Faruk, S., Al Jahin, J., Bodrud-Doza, M., Didar-ul-Alam, M., ... and Choudhury, T.R. 2021. Sustainable groundwater quality in southeast coastal Bangladesh: co-dispersions, sources, and probabilistic health risk assessment. Environment, Development and Sustainability, 1-30.
  • Kadhim, N.A., Hussein, A.K., Jaber, A.S., Abojassim, A.A. 2020. Land Use and Land Cover Change Detection Using Satellite Images for The Kufa District. Najaf, Iraq.
  • Katip, A. and Karaer, F. 2013. Research on the non-point pollution loads in the lake Uluabat basin. Journal of Environmental Protection, 04(07):29-37. https://doi.org/10.4236/jep.2013.47a004
  • Lambin, É., Geist, H., Lepers, E. 2003. Dynamics of land-use and land-cover change in tropical regions. Annual Review of Environment and Resources, 28(1):205-241. https://doi.org/10.1146/annurev. energy.28.050302.105459
  • Li, S., Yang, H., Lacayo, M., Liu, J., Lei, G. 2018. Impacts of land-use and land-cover changes on water yield: a case study in jing-jin-ji, china. Sustainability, 10(4), 960. https://doi.org/10.3390/su10040960
  • Mabwoga, S.O. and Thukral, A. K. 2014. Characterization of change in the Harike wetland, a Ramsar site in India, using landsat satellite data. SpringerPlus, 3(1):1-11.
  • Mahaxay, M., Arunpraparut, W., Trisurat, Y., Tangtham, N. 2016. Calibration of hydrological streamflow modeling using Modis. Journal of Geological Resource and Engineering, 4(1). https://doi.org/10.17265/2328-2193/2015.01.007
  • Mao, D., Wang, Z., Wang, Y., Choi, C., Jia, M., Jackson, M., … and Fuller, R. 2021. Remote observations in china’s ramsar sites: wetland dynamics, anthropogenic threats, and implications for sustainable development goals. Journal of Remote Sensing, 2021(10):1-13. https://doi.org/10.34133/2021/ 9849343
  • Muche, M., Yemata, G., Molla, E., Adnew, W., Muasya, A.M. 2023. Land use and land cover changes and their impact on ecosystem service values in the north-eastern highlands of Ethiopia. PLOS ONE 18(9): e0289962. https://doi.org/10.1371/journal.pone.0289962
  • Nielsen, A., Trolle, D., Søndergaard, M., Lauridsen, T., Bjerring, R., Olesen, J., … and Jeppesen, E. 2012. Watershed land use effects on lake water quality in Denmark. Ecological Applications, 22(4):1187-1200. https://doi.org/10.1890/11-1831.1
  • Özesmi, U. and Özesmi, S. 2003. A participatory approach to ecosystem conservation: fuzzy cognitive maps and stakeholder group analysis in Uluabat Lake, Turkey. Environmental Management, 31(4):518-531. https://doi.org/10.1007/s00267-002-2841-1
  • Ozsoy, G., Aksoy, E., Dirim, M., Tümsavaş, Z. 2012. Determination of soil erosion risk in the Mustafakemalpasa river basin, turkey, using the revised universal soil loss equation, geographic information system, and remote sensing. Environmental Management, 50(4):679-694. https://doi.org/10.1007/s00267-012-9904-8
  • Pal, S. C., Ruidas, D., Saha, A., Islam, A. R. M. T., Chowdhuri, I. 2022. Application of novel data-mining technique-based nitrate concentration susceptibility prediction approach for coastal aquifers in India. Journal of Cleaner Production, 131205.
  • Rahman, S.H.A.A., Shukri, M.A.H.M., Ab Latip, A.S., Abd Latif, Z. 2022. Land use and land cover change analysis using satellite images in Gua Musang, Kelantan. In IOP Conference Series: Earth and Environmental Science (Vol. 1019, No. 1, p. 012025). IOP Publishing.
  • Rahmi, K.I.N., Ali, A., Maghribi, A.A., Aldiansyah, S., Atiqi, R. 2022. Monitoring of land use land cover change using google earth engine in urban area: Kendari city 2000-2021. IOP Conference Series: Earth and Environmental Science, 950(1):012081. https://doi.org/10.1088/1755-1315/950/1/012081
  • Rizwan, M., Zhang, W., Abbas, Z., Guo, F., Gwiazdzinski, L. 2022. Spatiotemporal change analysis and prediction of future land use and land cover changes using qgis molusce plugin and remote sensing big data: a case study of Linyi, China. Land, 11(3):419. https://doi.org/10.3390/land11030419
  • Ruidas, D., Pal, S. C., Chowdhuri, I., Saha, A., Biswas, T., Islam, A. R. M. T., Shit, M. 2023. Hydrogeochemical evaluation for human health risk assessment from contamination of coastal groundwater aquifers of Indo-Bangladesh Ramsar site. Journal of Cleaner Production, 399, 136647.
  • Saana B.Y., Sixtus F., Samuel A.S., Godfred M., Napoleon K.T. 2016. Assessment of the quality of groundwater for drinking purposes in the Upper West and Northern regions of Ghana. SpringerPlus. 5. 10.1186/s40064-016-3676-1.
  • Saharan, M.A., Vyas, N.K., Borana, S.L., Yadav, S.K. 2018. Classification and assessment of the land use – land cover changes in Jodhpur city using remote sensing technologies. The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-5, 767-771. https:// doi.org/10.5194/isprs-archives-xlii-5-767-2018
  • Sajikumar, N. and Remya, R. 2015. Impact of land cover and land use change on runoff characteristics. Journal of Environmental Management, 161:460-468. https://doi.org/10.1016/j.jenvman.2014.12.041
  • Sarzana, T., Maltese, A., Capolupo, A., Tarantino, E. 2020. Post-processing of pixel and object-based land cover classifications of very high spatial resolution images. In Computational Science and Its Applications–ICCSA 2020: 20th International Conference, Cagliari, Italy, July 1–4, 2020, Proceedings, Part IV 20 (pp. 797-812). Springer International Publishing.
  • Shen, Y., Chapelle, F.H., Strom, E.W., Benner, R. 2015. Origins and bioavailability of dissolved organic matter in groundwater. Biogeochemistry, 122:61-78.
  • Symeonakis, E., Calvo-Cases, A., Arnau-Rosalén, E. 2007. Land use change and land degradation in Southeastern Mediterranean Spain. Environmental Management, 40(1):80-94. https://doi.org/10.1007/ s00267-004-0059-0
  • Tu, T., Baykal, M.T. 2023. Monitoring the changes of Lake Uluabat Ramsar site and its surroundings in the 1985-2021 period using RS and GIS methods.
  • Tyagi, S., Sharma, B., Singh, P., Dobhal, R. 2013. Water quality assessment in terms of water quality index. American Journal of Water Resources, 1(3):34-38.
  • UNESCO 2012. Shaping the Education of Tomorrow: 2012 Full-Length Report on the UN Decade of Education for Sustainable Development. Simplified Chinese Version, 20. http://unesdoc.unesco.org/ images/0021/ 002166/216606c.pdf
  • UNESCO 2015. SDG4-Education 2030, Incheon Declaration (ID) and Framework for Action. For the Implementation of Sustainable Development Goal 4, Ensure Inclusive and Equitable Quality Education and Promote Lifelong Learning Opportunities for All, ED-2016/WS/28.
  • Welch, G. and Welch, H., 1998. Breeding Bird Survey of Uluabat Lake, DHKD,1998.
  • Verma, S., Agrawal, S., Dutta, K. 2021. Satellite imagery driven assessment of land use land cover, urbanization and surface temperature pattern dynamics over tropical megacities. The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLVI-4/W6-2021, 313-320. https://doi.org/10.5194/isprs-archives-xlvi-4-w6-2021-313-2021.
  • Vollmer, D., Regan, H.M., Andelman, S.J. 2016. Assessing the sustainability of freshwater systems: A critical review of composite indicators. Ambio, 45:765-780.
  • Vollmer, Derek, and Adrienne Grêt-Regamey. 2013. Rivers as Municipal Infrastructure: Demand for Environmental Services in Informal Settlements along an Indonesian River. Global Environmental Change, 23 (6):1542–55.
  • World Bank Group. 2016. Valuing water resources in Turkey: A methodological overview and case study. World Bank.
  • Zaitunah, A., Ahmad, A., Pasaribu, I. 2022. Lands cover dynamics of siais lake catchment area, tapanuli selatan district, indonesia. Iop Conference Series Earth and Environmental Science, 1116(1):012084. https://doi.org/10.1088/1755-1315/1116/1/012084
  • Zekarias, T., Govindu, V., Kebede, Y., Gelaw, A. 2021. Geospatial analysis of wetland land use/land cover dynamics on Lake Abaya-chamo, Southern Rift-valley of Ethiopia... https://doi.org/10.21203/rs.3.rs-407287/v2
  • Zeng, Q., Bridgewater, P., Cai, L., Yun, J., Lei, G. 2014. Perspectives on zonation in ramsar sites, and other protected areas: making sense of the tower of babel. Open Journal of Ecology, 04(13):788-796. https://doi.org/10.4236/oje.2014.413067.
Year 2024, Volume: 10 Issue: 2, 100 - 111
https://doi.org/10.33904/ejfe.1318353

Abstract

References

  • Aksoy, E. and Özsoy, G. 2002. Investigation of multi-temporal land use/cover and shoreline changes of the Uluabat Lake Ramsar Site using RS and GIS. In Proceedings of the International Conference on Sustainable Land Use and Management, 10: 13.
  • Albalawi, E.K. 2023. Comparing pixel-based to object-based image classifications for assessing LULC change in an arid environment of northern west Saudi Arabia. The Egyptian Journal of Environmental Change, 15(1):55-76. https://doi.org/10.21608/ejec. 2023.286642
  • Anadolu Agency, 2023. “Türkiye'de 105 sulak alan bulunuyor.” https://www.aa.com.tr/tr/yesilhat/dogal-yasam/turkiyede-105-sulak-alan-bulunuyor/1819657 coronavirus/2175200 (2021), Accessed 1st June 2023
  • Bai, Y., Jiang, B., Alatalo, J. M., Chen, Z., Wang, X., Xu, W. 2016. Impacts of land management on ecosystem service delivery in the Baiyangdian river basin. Environmental Earth Sciences, 75(3). https://doi.org/10.1007/s12665-015-4831-7
  • Bandara, B., Silva, R., Dayawansa, N. 2019. Analysis of forest cover loss in the forest complex: a remotely sensed change detection and fragmentation analysis. Tropical Agricultural Research, 30(4):81. https://doi.org/10.4038/tar.v30i4.8330
  • Bermoy, M.M., Cacayan, V.O., Carido, J.C., Apdohan, A.G., Cacayan, A.O. 2023. Prediction of future land use land cover (lulc) and assessment of its impact on the water supply availability of Butuan city-taguibo river watershed and forest reserve (trwfr), philippines. The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLVIII-4/W6-2022, 81-86. https://doi.org/10.5194/isprs-archives-xlviii-4-w6-20 22-81-2023
  • Biswas, T., Pal, S.C., Saha, A., Ruidas, D., Islam, A.R.M.T., Shit, M. 2023. Hydro-chemical assessment of groundwater pollutant and corresponding health risk in the Ganges delta, Indo-Bangladesh region. Journal of Cleaner Production, 382:135229.
  • Burian, S.J., Brown, M.J., McPherson, T.N. 2002. Evaluation of land use/land cover datasets for urban watershed modeling. Water Science and Technology, 45(9):269-276. https://doi.org/10.2166/wst.2002. 0256
  • Butt, A., Shabbir, R., Ahmad, S.S., Aziz, N. 2015. Land use change mapping and analysis using remote sensing and GIS: a case study of Simly watershed, Islamabad, Pakistan. Egyptian Journal of Remote Sensing and Space Science, 18(2):251–259. https://doi.org/10.1016/j.ejrs.2015.07.003.
  • Çağırankaya, S.S. and Meriç, B.T. 2013. Turkey’s Important Wetlands: Ramsar Sites. Republic of Turkey Ministry of Agriculture and Forestry General Directorate of Nature Conservation and National Parks. Ankara, Turkey.
  • Cetin, M. 2009. A satellite-based assessment of the impact of urban expansion around a lagoon. International journal of Environmental Science and Technology, 6(4):579–590. https://doi.org/10.1007/ BF03326098.
  • Cohen, J. 1960. A coefficient of agreement for nominal scales. Educational and Psychological Measurement. 20(1):37–46. doi:10.1177/001316446002000104.
  • Congalton, R. G., Green, K. (2009). Assessing the Accuracy of Remotely Sensed Data: Principles and Practices (Second Edition). CRC Press Taylor & Francis Group.
  • Corner, R. J., Dewan, A. M., Chakma, S. 2014. Chapter 5 monitoring and prediction of land-use and land-cover (LULC) change. In A. M. Dewan & R. J. Corner (Eds.), Dhaka megacity: geospatial perspectives on urbanisation, environment and health (pp.75–97). Dordrecht: Springer http://www.springer. com/series/10180. Accessed 30 Jan 2020.
  • Demirel, Ö. 2005. Doğa koruma ve milli parklar. Karadeniz Teknik Üniversitesi. Rektörlüğü Genel Yayın No. 219, 424, Trabzon.
  • Deng, J. S., Wang, K., Hong, Y., Qi, J.G. 2009. Spatio-temporal dynamics and evolution of land use change and landscape pattern in response to rapid urbanization. Landscape and Urban Planning, 92(3–4):187–198. https://doi.org/10.1016/j.landurbplan. 2009.05.001.
  • Deng, L., Liu, G., Shangguan, Z. 2014. Land‐use conversion and changing soil carbon stocks in China's ‘grain‐for‐green’ program: a synthesis. Global Change Biology, 20(11):3544-3556. https://doi.org 10.1111/gcb.12508
  • Djimadoumngar, K. N. and Adegoke, J. 2018. Satellite-Based Assessment of Land Use and Land Cover (LULC) Changes around Lake Fitri, Republic of Chad. Journal of Sustainable Development, 11(5): 71.
  • FAO, 2011. FAOSTAT. Food and Agriculture Organization of the United Nations
  • Fletcher S., Kawabe M., Rewhorn S. 2011. Wetland conservation and sustainable coastal governance in Japan and England. Marine pollution bulletin, 62(5):956–962.
  • Gardner, R., Finlayson, M. 2018. Global Wetland outlook: state of the world’s wetlands and their services to people. Ramsar Convention Secretariat, 2018, Stetson University College of Law Research Paper No. 2020-5. Available at https://ssrn.com/abstract=3261606
  • Gencal, B., Taş, İ., Akay, A.E. 2018. Spatiotemporal Change Detection of the Linden Forests in Bursa, Turkey. European Journal of Forest Engineering, 4(2):50-55.
  • Gunathilaka, M., Halwatura, D., Manawadu, L., Munasinghe, D. 2022. Application of satellite remote sensing and dapsi(w)r(m) framework as a tool to assess land use impacts on urban lakes in Sri Lanka. Environment and Urbanization Asia, 13(2):218-231. https://doi.org/10.1177/09754253221120606
  • Habte, D.G., Belliethathan, S., Ayenew, T. 2021. Evaluation of the status of land use/land cover change using remote sensing and GIS in Jewha Watershed, Northeastern Ethiopia. SN Applied Sciences, 3:1-10.
  • Hacısalihoğlu S., Karaer F., Katip A. 2016. Applications of geographic information system (GIS) analysis of lake Uluabat. Environmental Monitoring and Assessment, 188(6):1–14.
  • Hacısalihoğlu, S. and Karaer, F. 2016. Relationships of heavy metals in water and surface sediment with different chemical fractions in Lake Uluabat, turkey. Polish Journal of Environmental Studies, 25(5):1937-1946. https://doi.org/10.15244/pjoes/62908
  • Hacısalihoğlu, S. and Karaer, F. 2018. Evaluation of water quality in eutrophic shallow lakes: case study on Lake Uluabat, Turkey. International Journal of Agriculture Environment and Food Sciences, 2(1):18-28. https://doi.org/10.31015/jaefs.18004
  • Hacısalihoğlu, S., Karaer, F., Katip, A. 2016. Applications of geographic information system (gis) analysis of Lake Uluabat. Environmental Monitoring and Assessment, 188(6). https://doi.org/10.1007/ s10661-016-5332-1
  • Hadeel, A. S., Jabbar, M. T., Chen, X. 2011. Remote sensing and gis application in the detection of environmental degradation indicators. Geo-Spatial Information Science, 14(1):39-47. https://doi.org/ 10.1007/s11806-011-0441-z
  • Hishe, S., Bewket, W., Nyssen, J., Lyimo, J. 2020. Analysing past land use land cover change and CA-Markov-based future modelling in the Middle Suluh Valley, Northern Ethiopia. Geocarto International, 35(3):225–255. https://doi.org/10.1080/10106049. 2018.1516241.
  • Ikiel, C., Ustaoglu, B., Dutucu, A.A., Kilic, D.E. 2013. Remote sensing and GIS-based integrated analysis of land cover change in Duzce plain and its surroundings (northwestern Turkey). Environmental Monitoring and Assessment, 185(2):1699–1709. https://doi.org/ 10.1007/ s10661-012-2661-6.
  • İşçen, C., Emiroğlu, Ö., İlhan, S., Arslan, N., Yılmaz, V., Ahıska, S. 2007. Application of multivariate statistical techniques in the assessment of surface water quality in Uluabat Lake, Turkey. Environmental Monitoring and Assessment, 144(1-3):269-276. https://doi.org/10.1007/s10661-007-9989-3
  • Islam, A.R.M.T., Kabir, M.M., Faruk, S., Al Jahin, J., Bodrud-Doza, M., Didar-ul-Alam, M., ... and Choudhury, T.R. 2021. Sustainable groundwater quality in southeast coastal Bangladesh: co-dispersions, sources, and probabilistic health risk assessment. Environment, Development and Sustainability, 1-30.
  • Kadhim, N.A., Hussein, A.K., Jaber, A.S., Abojassim, A.A. 2020. Land Use and Land Cover Change Detection Using Satellite Images for The Kufa District. Najaf, Iraq.
  • Katip, A. and Karaer, F. 2013. Research on the non-point pollution loads in the lake Uluabat basin. Journal of Environmental Protection, 04(07):29-37. https://doi.org/10.4236/jep.2013.47a004
  • Lambin, É., Geist, H., Lepers, E. 2003. Dynamics of land-use and land-cover change in tropical regions. Annual Review of Environment and Resources, 28(1):205-241. https://doi.org/10.1146/annurev. energy.28.050302.105459
  • Li, S., Yang, H., Lacayo, M., Liu, J., Lei, G. 2018. Impacts of land-use and land-cover changes on water yield: a case study in jing-jin-ji, china. Sustainability, 10(4), 960. https://doi.org/10.3390/su10040960
  • Mabwoga, S.O. and Thukral, A. K. 2014. Characterization of change in the Harike wetland, a Ramsar site in India, using landsat satellite data. SpringerPlus, 3(1):1-11.
  • Mahaxay, M., Arunpraparut, W., Trisurat, Y., Tangtham, N. 2016. Calibration of hydrological streamflow modeling using Modis. Journal of Geological Resource and Engineering, 4(1). https://doi.org/10.17265/2328-2193/2015.01.007
  • Mao, D., Wang, Z., Wang, Y., Choi, C., Jia, M., Jackson, M., … and Fuller, R. 2021. Remote observations in china’s ramsar sites: wetland dynamics, anthropogenic threats, and implications for sustainable development goals. Journal of Remote Sensing, 2021(10):1-13. https://doi.org/10.34133/2021/ 9849343
  • Muche, M., Yemata, G., Molla, E., Adnew, W., Muasya, A.M. 2023. Land use and land cover changes and their impact on ecosystem service values in the north-eastern highlands of Ethiopia. PLOS ONE 18(9): e0289962. https://doi.org/10.1371/journal.pone.0289962
  • Nielsen, A., Trolle, D., Søndergaard, M., Lauridsen, T., Bjerring, R., Olesen, J., … and Jeppesen, E. 2012. Watershed land use effects on lake water quality in Denmark. Ecological Applications, 22(4):1187-1200. https://doi.org/10.1890/11-1831.1
  • Özesmi, U. and Özesmi, S. 2003. A participatory approach to ecosystem conservation: fuzzy cognitive maps and stakeholder group analysis in Uluabat Lake, Turkey. Environmental Management, 31(4):518-531. https://doi.org/10.1007/s00267-002-2841-1
  • Ozsoy, G., Aksoy, E., Dirim, M., Tümsavaş, Z. 2012. Determination of soil erosion risk in the Mustafakemalpasa river basin, turkey, using the revised universal soil loss equation, geographic information system, and remote sensing. Environmental Management, 50(4):679-694. https://doi.org/10.1007/s00267-012-9904-8
  • Pal, S. C., Ruidas, D., Saha, A., Islam, A. R. M. T., Chowdhuri, I. 2022. Application of novel data-mining technique-based nitrate concentration susceptibility prediction approach for coastal aquifers in India. Journal of Cleaner Production, 131205.
  • Rahman, S.H.A.A., Shukri, M.A.H.M., Ab Latip, A.S., Abd Latif, Z. 2022. Land use and land cover change analysis using satellite images in Gua Musang, Kelantan. In IOP Conference Series: Earth and Environmental Science (Vol. 1019, No. 1, p. 012025). IOP Publishing.
  • Rahmi, K.I.N., Ali, A., Maghribi, A.A., Aldiansyah, S., Atiqi, R. 2022. Monitoring of land use land cover change using google earth engine in urban area: Kendari city 2000-2021. IOP Conference Series: Earth and Environmental Science, 950(1):012081. https://doi.org/10.1088/1755-1315/950/1/012081
  • Rizwan, M., Zhang, W., Abbas, Z., Guo, F., Gwiazdzinski, L. 2022. Spatiotemporal change analysis and prediction of future land use and land cover changes using qgis molusce plugin and remote sensing big data: a case study of Linyi, China. Land, 11(3):419. https://doi.org/10.3390/land11030419
  • Ruidas, D., Pal, S. C., Chowdhuri, I., Saha, A., Biswas, T., Islam, A. R. M. T., Shit, M. 2023. Hydrogeochemical evaluation for human health risk assessment from contamination of coastal groundwater aquifers of Indo-Bangladesh Ramsar site. Journal of Cleaner Production, 399, 136647.
  • Saana B.Y., Sixtus F., Samuel A.S., Godfred M., Napoleon K.T. 2016. Assessment of the quality of groundwater for drinking purposes in the Upper West and Northern regions of Ghana. SpringerPlus. 5. 10.1186/s40064-016-3676-1.
  • Saharan, M.A., Vyas, N.K., Borana, S.L., Yadav, S.K. 2018. Classification and assessment of the land use – land cover changes in Jodhpur city using remote sensing technologies. The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-5, 767-771. https:// doi.org/10.5194/isprs-archives-xlii-5-767-2018
  • Sajikumar, N. and Remya, R. 2015. Impact of land cover and land use change on runoff characteristics. Journal of Environmental Management, 161:460-468. https://doi.org/10.1016/j.jenvman.2014.12.041
  • Sarzana, T., Maltese, A., Capolupo, A., Tarantino, E. 2020. Post-processing of pixel and object-based land cover classifications of very high spatial resolution images. In Computational Science and Its Applications–ICCSA 2020: 20th International Conference, Cagliari, Italy, July 1–4, 2020, Proceedings, Part IV 20 (pp. 797-812). Springer International Publishing.
  • Shen, Y., Chapelle, F.H., Strom, E.W., Benner, R. 2015. Origins and bioavailability of dissolved organic matter in groundwater. Biogeochemistry, 122:61-78.
  • Symeonakis, E., Calvo-Cases, A., Arnau-Rosalén, E. 2007. Land use change and land degradation in Southeastern Mediterranean Spain. Environmental Management, 40(1):80-94. https://doi.org/10.1007/ s00267-004-0059-0
  • Tu, T., Baykal, M.T. 2023. Monitoring the changes of Lake Uluabat Ramsar site and its surroundings in the 1985-2021 period using RS and GIS methods.
  • Tyagi, S., Sharma, B., Singh, P., Dobhal, R. 2013. Water quality assessment in terms of water quality index. American Journal of Water Resources, 1(3):34-38.
  • UNESCO 2012. Shaping the Education of Tomorrow: 2012 Full-Length Report on the UN Decade of Education for Sustainable Development. Simplified Chinese Version, 20. http://unesdoc.unesco.org/ images/0021/ 002166/216606c.pdf
  • UNESCO 2015. SDG4-Education 2030, Incheon Declaration (ID) and Framework for Action. For the Implementation of Sustainable Development Goal 4, Ensure Inclusive and Equitable Quality Education and Promote Lifelong Learning Opportunities for All, ED-2016/WS/28.
  • Welch, G. and Welch, H., 1998. Breeding Bird Survey of Uluabat Lake, DHKD,1998.
  • Verma, S., Agrawal, S., Dutta, K. 2021. Satellite imagery driven assessment of land use land cover, urbanization and surface temperature pattern dynamics over tropical megacities. The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLVI-4/W6-2021, 313-320. https://doi.org/10.5194/isprs-archives-xlvi-4-w6-2021-313-2021.
  • Vollmer, D., Regan, H.M., Andelman, S.J. 2016. Assessing the sustainability of freshwater systems: A critical review of composite indicators. Ambio, 45:765-780.
  • Vollmer, Derek, and Adrienne Grêt-Regamey. 2013. Rivers as Municipal Infrastructure: Demand for Environmental Services in Informal Settlements along an Indonesian River. Global Environmental Change, 23 (6):1542–55.
  • World Bank Group. 2016. Valuing water resources in Turkey: A methodological overview and case study. World Bank.
  • Zaitunah, A., Ahmad, A., Pasaribu, I. 2022. Lands cover dynamics of siais lake catchment area, tapanuli selatan district, indonesia. Iop Conference Series Earth and Environmental Science, 1116(1):012084. https://doi.org/10.1088/1755-1315/1116/1/012084
  • Zekarias, T., Govindu, V., Kebede, Y., Gelaw, A. 2021. Geospatial analysis of wetland land use/land cover dynamics on Lake Abaya-chamo, Southern Rift-valley of Ethiopia... https://doi.org/10.21203/rs.3.rs-407287/v2
  • Zeng, Q., Bridgewater, P., Cai, L., Yun, J., Lei, G. 2014. Perspectives on zonation in ramsar sites, and other protected areas: making sense of the tower of babel. Open Journal of Ecology, 04(13):788-796. https://doi.org/10.4236/oje.2014.413067.
There are 67 citations in total.

Details

Primary Language English
Subjects Forestry Sciences (Other)
Journal Section Research Articles
Authors

Emre Kılınçarslan 0000-0001-9178-5760

Burhan Gencal 0000-0001-7185-5725

İnanç Taş 0000-0002-4504-6876

Early Pub Date October 18, 2024
Publication Date
Published in Issue Year 2024 Volume: 10 Issue: 2

Cite

APA Kılınçarslan, E., Gencal, B., & Taş, İ. (2024). Assessing Two Decades of Land Use/Land Cover Changes in the Uluabat Lake Ramsar Site using Multi-Temporal Satellite Imagery. European Journal of Forest Engineering, 10(2), 100-111. https://doi.org/10.33904/ejfe.1318353

Creative Commons License

The works published in European Journal of Forest Engineering (EJFE) are licensed under a  Creative Commons Attribution-NonCommercial 4.0 International License.