An Analysis of Land Use and Land Cover Changes, and Implications for Conservation in Mukumbura (Ward 2), Mt Darwin, Zimbabwe, 2002-2022 — Oak Academic Publishing
Research ArticleOpen AccessGoogle Scholar indexed
An Analysis of Land Use and Land Cover Changes, and Implications for Conservation in Mukumbura (Ward 2), Mt Darwin, Zimbabwe, 2002-2022
Department of Wildlife Ecology and Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
,
Zimbabwe Parks and Wildlife Management Authority, Harare, Zimbabwe
,
Zimbabwe Parks and Wildlife Management Authority, Harare, Zimbabwe
,
Department of Wildlife Ecology and Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
,
Department of Wildlife Ecology and Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
,
Department of Geoinformatics and Environmental Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
1 Department of Wildlife Ecology and Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
2 Zimbabwe Parks and Wildlife Management Authority, Harare, Zimbabwe
3 Zimbabwe Parks and Wildlife Management Authority, Harare, Zimbabwe
4 Department of Wildlife Ecology and Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
5 Department of Wildlife Ecology and Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
6 Department of Geoinformatics and Environmental Conservation, Chinhoyi University of Technology, Chinhoyi, Zimbabwe
Understanding trends of land use land cover (LULC) changes is important for biodiversity monitoring and conservation planning, and identifying the areas affected by change and designing sustainable solutions to reduce the changes. The study aims to evaluate and quantify the historical changes in land use and land cover in Mukumbura (Ward 2), Mt Darwin, Zimbabwe, from 2002 to 2022. The objective of the study was to analyse the LULC changes in Ward 2 (Mukumbura), Mt Darwin, Northern Zimbabwe, for a period of 20 years using geospatial techniques. Landsat satellite images were processed using Google Earth Engine (GEE) and the supervised classification with maximum likelihood algorithm was employed to generate LULC maps between 2002 and 2022 with a five (5) year interval, investigating the following variables, forest cover, barren land, water cover and the fields. Findings revealed a substantial reduction in forest cover by 38.8%, water bodies (wetlands, ponds, and rivers) declined by 55.6%, whilst fields (crop/agricultural fields) increased by 93.3% and the barren land cover increased by 26.3% from 2002 to 2022. These findings point to substantial changes in LULC over the observed years. LULC changes have resulted in habitat fragmentation, reduced biodiversity, and the disruption of ecosystem functions. The study concludes that if these deforestation trends, cultivation, and settlement land expansion continue, the ward will have limited indigenous fruit trees. Therefore, the causes for LULC changes must be controlled, sustainable forest resources use practiced, hence the need to domesticate the indigenous fruit trees in arborloo toilets.
Cianciullo, S., Attorre, F., Trezza, F.R., Rezende, M., Ntumi, C., Campira, J., et al . (2023) Analysis of Land Cover Dynamics in Mozambique (2001-2016). Rendiconti Lincei . Scienze Fisiche e Naturali , 34, 81-92. https://doi.org/10.1007/s12210-023-01133-9
Nedd, R., Light, K., Owens, M., James, N., Johnson, E. and Anandhi, A. (2021) A Synthesis of Land Use/land Cover Studies: Definitions, Classification Systems, Meta-Studies, Challenges and Knowledge Gaps on a Global Landscape. Land , 10, Article 994. https://doi.org/10.3390/land10090994
Gunathilaka, M.D.K.L., Halwatura, D., Manawadu, L. and 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, 218-231. https://doi.org/10.1177/09754253221120606
Mariye, M., Maryo, M. and Li, J. (2022) The Study of Land Use and Land Cover (LULC) Dynamics and the Perception of Local People in Aykoleba, Northern Ethiopia. Journal of the Indian Society of Remote Sensing , 50, 775-789. https://doi.org/10.1007/s12524-021-01462-y
Zhang, T., Cheng, C. and Wu, X. (2023) Mapping the Spatial Heterogeneity of Global Land Use and Land Cover from 2020 to 2100 at a 1 Km Resolution. Scientific Data , 10, Article No. 748. https://doi.org/10.1038/s41597-023-02637-7
Srivastava, A., Shukla, S., Singh, P. and Jha, P.K. (2023) Spatio-Temporal Dynamics of Land Use/cover and Land Surface Temperature in Prayagraj City, India. Indoor and Built Environment , 32, 1250-1268. https://doi.org/10.1177/1420326x231159633
Allan, A., Soltani, A., Abdi, M.H. and Zarei, M. (2022) Driving Forces behind Land Use and Land Cover Change: A Systematic and Bibliometric Review. Land , 11, Article 1222. https://doi.org/10.3390/land11081222
Twisa, S. and Buchroithner, M.F. (2019) Land-use and Land-Cover (LULC) Change Detection in Wami River Basin, Tanzania. Land , 8, Article 136. https://doi.org/10.3390/land8090136
Nyanda, H.N., Kegamba, J.J. and Sangha, K.K. (2018) Impacts of Land Cover Change on Conservation, a Linkage of Spatial Analysis and Anthropogenic Activities in Tanzania. Open Journal of Forestry , 8, 344-361. https://doi.org/10.4236/ojf.2018.83022
Abebe, G., Getachew, D. and Ewunetu, A. (2021) Analysing Land Use/Land Cover Changes and Its Dynamics Using Remote Sensing and GIS in Gubalafito District, Northeastern Ethiopia. SN Applied Sciences , 4, Article No. 30. https://doi.org/10.1007/s42452-021-04915-8
Debie, E., Anteneh, M. and Asmare, T. (2022) Land Use/cover Changes and Surface Temperature Dynamics over Abaminus Watershed, Northwest Ethiopia. Air , Soil and Water Research , 15. https://doi.org/10.1177/11786221221097917
Mahamba, J.A., Mulondi, G.K., Kapiri, M.M. and Sahani, W.M. (2022) Land Use and Land Cover Dynamics in the Urban Watershed of Kimemi River (Butembo/D.R.C). Journal of Geoscience and Environment Protection , 10, 204-219. https://doi.org/10.4236/gep.2022.106013
Mulatu, K., Hundera, K. and Senbeta, F. (2024) Analysis of Land Use/ Land Cover Changes and Landscape Fragmentation in the Baro-Akobo Basin, Southwestern Ethiopia. Heliyon , 10, e28378. https://doi.org/10.1016/j.heliyon.2024.e28378
Muche, M., Yemata, G., Molla, E., Adnew, W. and 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, e0289962. https://doi.org/10.1371/journal.pone.0289962
Munthali, M.G., Mustak, S., Adeola, A., Botai, J., Singh, S.K. and Davis, N. (2020) Modelling Land Use and Land Cover Dynamics of Dedza District of Malawi Using Hybrid Cellular Automata and Markov Model. Remote Sensing Applications : Society and Environment , 17, Article ID: 100276. https://doi.org/10.1016/j.rsase.2019.100276
Islam, H., Abbasi, H., Karam, A., Chughtai, A.H. and Ahmed Jiskani, M. (2021) Geospatial Analysis of Wetlands Based on Land Use/Land Cover Dynamics Using Remote Sensing and GIS in Sindh, Pakistan. Science Progress , 104. https://doi.org/10.1177/00368504211026143
Gogoi, P.P., Vinoj, V., Swain, D., Roberts, G., Dash, J. and Tripathy, S. (2019) Land Use and Land Cover Change Effect on Surface Temperature over Eastern India. Scientific Reports , 9, Article No. 8859. https://doi.org/10.1038/s41598-019-45213-z
Nyatuame, M., Agodzo, S., Amekudzi, L.K. and Mensah-Brako, B. (2023) Assessment of Past and Future Land Use/cover Change over Tordzie Watershed in Ghana. Frontiers in Environmental Science , 11, Article 1139264. https://doi.org/10.3389/fenvs.2023.1139264
Anteneh, M. (2022) Analysis of Land Use/land Cover Change and Its Implication on Natural Resources of the Dedo Watershed, Southwest Ethiopia. The Scientific World Journal , 2022, Article ID: 6471291. https://doi.org/10.1155/2022/6471291
Ayele, G.T., Tebeje, A.K., Demissie, S.S., Belete, M.A., Jemberrie, M.A., Teshome, W.M., et al . (2018) Time Series Land Cover Mapping and Change Detection Analysis Using Geographic Information System and Remote Sensing, Northern Ethiopia. Air , Soil and Water Research , 11. https://doi.org/10.1177/1178622117751603
Hailu, A., Mammo, S. and Kidane, M. (2020) Dynamics of Land Use, Land Cover Change Trend and Its Drivers in Jimma Geneti District, Western Ethiopia. Land Use Policy , 99, Article ID: 105011. https://doi.org/10.1016/j.landusepol.2020.105011
Fasika, A., Motuma, T. and Gizaw, T. (2019) Land Use Land Cover Change Trend and Its Drivers in Somodo Watershed South Western, Ethiopia. African Journal of Agricultural Research , 14, 102-117. https://doi.org/10.5897/ajar2018.13672
Wolf, I.D., Sobhani, P. and Esmaeilzadeh, H. (2023) Assessing Changes in Land Use/ Land Cover and Ecological Risk to Conserve Protected Areas in Urban-Rural Contexts. Land , 12, Article 231. https://doi.org/10.3390/land12010231
Mehra, N. and Swain, J.B. (2024) Assessment of Land Use Land Cover Change and Its Effects Using Artificial Neural Network-Based Cellular Automation. Journal of Engineering and Applied Science , 71, Article No. 70. https://doi.org/10.1186/s44147-024-00402-0
Ramachandra, T.V. and Setturu, B. (2019) Sustainable Management of Bannerghatta National Park, India, with the Insights in Land Cover Dynamics. FIIB Business Review , 8, 118-131. https://doi.org/10.1177/2319714519828462
Hassan, Z., Shabbir, R., Ahmad, S.S., Malik, A.H., Aziz, N., Butt, A., et al . (2016) Dynamics of Land Use and Land Cover Change (LULCC) Using Geospatial Techniques: A Case Study of Islamabad Pakistan. SpringerPlus , 5, Article No. 812. https://doi.org/10.1186/s40064-016-2414-z
Alemie, B.K. and Amsalu, T. (2020) Does Land Tenure Insecurity Affect Forest Cover Change? Evidence from Gerejeda State Forest in Ethiopia. Journal of Land and Rural Studies , 8, 101-120. https://doi.org/10.1177/2321024920914781
Kumar, S. and Singh, R. (2021) Geospatial Applications in Land Use/Land Cover Change Detection for Sustainable Regional Development: The Case of Central Haryana, India. Geomatics and Environmental Engineering , 15, 81-98. https://doi.org/10.7494/geom.2021.15.3.81
Seyam, M.M.H., Haque, M.R. and Rahman, M.M. (2023) Identifying the Land Use Land Cover (LULC) Changes Using Remote Sensing and GIS Approach: A Case Study at Bhaluka in Mymensingh, Bangladesh. Case Studies in Chemical and Environmental Engineering , 7, Article ID: 100293. https://doi.org/10.1016/j.cscee.2022.100293
Matsa, M. and Muringaniza, K. (2011) An Assessment of the Land Use and Land Cover Changes in Shurugwi District, Midlands Province, Zimbabwe. Ethiopian Journal of Environmental Studies and Management , 4, 88-100. https://doi.org/10.4314/ejesm.v4i2.10
Lu, D., Mausel, P., Brondízio, E. and Moran, E. (2004) Change Detection Techniques. International Journal of Remote Sensing , 25, 2365-2401. https://doi.org/10.1080/0143116031000139863
Banerjee, S., Kauranne, T. and Mikkila, M. (2020) Land Use Change and Wildlife Conservation—Case Analysis of LULC Change of Pench-Satpuda Wildlife Corridor in Madhya Pradesh, India. Sustainability , 12, Article 4902. https://doi.org/10.3390/su12124902
Kaudo, B.O., Mwenja, P., Epasit, D., Ekai, D., Isacko, D. and Owino, J. (2022) Effect of Potting Tube Size on Growth and Development of Zizyphus Mauritiana Seedlings. East African Journal of Forestry and Agroforestry , 5, 118-129. https://doi.org/10.37284/eajfa.5.1.795
Chama, E., Shibru, S., Gebre, T., Demissew, S. and Woldu, Z. (2023) Forest Products Monetary Contribution to Households’ Income: A Means to Improve the Livelihood of a Low-Income Rural Community in South Ethiopia. Heliyon , 9, e21553. https://doi.org/10.1016/j.heliyon.2023.e21553
Suleiman, M.S., Wasonga, V.O., Mbau, J.S., Suleiman, A. and Elhadi, Y.A. (2017) Non-timber Forest Products and Their Contribution to Households Income around Falgore Game Reserve in Kano, Nigeria. Ecological Processes , 6, Article No. 23. https://doi.org/10.1186/s13717-017-0090-8
Handavu, F., Chirwa, P.W.C. and Syampungani, S. (2019) Socio-Economic Factors Influencing Land-Use and Land-Cover Changes in the Miombo Woodlands of the Copperbelt Province in Zambia. Forest Policy and Economics , 100, 75-94. https://doi.org/10.1016/j.forpol.2018.10.010
Näschen, K., Diekkrüger, B., Evers, M., Höllermann, B., Steinbach, S. and Thonfeld, F. (2019) The Impact of Land Use/land Cover Change (LULCC) on Water Resources in a Tropical Catchment in Tanzania under Different Climate Change Scenarios. Sustainability , 11, Article 7083. https://doi.org/10.3390/su11247083
Kibet, R., Olatubara, C.O., Ikporukpo, C.O. and Jebiwott, A. (2021) Land Use Land Cover Changes and Encroachment Issues in Kapkatet Wetland, Kenya. Open Journal of Ecology , 11, 493-506. https://doi.org/10.4236/oje.2021.117032
kullo, E.D., Forkuo, E.K., Biney, E., Harris, E. and Quaye-Ballard, J.A. (2021) The Impact of Land Use and Land Cover Changes on Socioeconomic Factors and Livelihood in the Atwima Nwabiagya District of the Ashanti Region, Ghana. Environmental Challenges , 5, Article ID: 100226. https://doi.org/10.1016/j.envc.2021.100226
Das, N., Mondal, P., Sutradhar, S. and Ghosh, R. (2021) Assessment of Variation of Land Use/Land Cover and Its Impact on Land Surface Temperature of Asansol Subdivision. The Egyptian Journal of Remote Sensing and Space Science , 24, 131-149. https://doi.org/10.1016/j.ejrs.2020.05.001
Zimbabwe National Statistics Agency (Zimstat) (2022) Zimbabwe Population Census. Mt Darwin. https://zimbabwe.opendataforafrica.org/arfkbif/zimbabwe-population-census-2022?districts=1000190-mount-darwin
Zimbabwe National Statistics Agency (Zimstat) (2012) Census 2012. Preliminary Report. https://mdgs.un.org/unsd/demographic-social/census/documents/Zimbabwe/ZWE_CensusPreliminary2012.pdf
Mavhura, E., Manatsa, D. and Mushore, T. (2015) Adaptation to Drought in Arid and Semi-Arid Environments: Case of the Zambezi Valley, Zimbabwe. Jàmbá : Journal of Disaster Risk Studies , 7, Article No. 144. https://doi.org/10.4102/jamba.v7i1.144
Zimbabwe National Statistics Agency (Zimstat) (2002) Census 2002. https://www.zimstat.co.zw/2002-population-11631657/
Velastegui-Montoya, A., Montalván-Burbano, N., Carrión-Mero, P., Rivera-Torres, H., Sadeck, L. and Adami, M. (2023) Google Earth Engine: A Global Analysis and Future Trends. Remote Sensing , 15, Article 3675. https://doi.org/10.3390/rs15143675
Simon, S.M., Glaum, P. and Valdovinos, F.S. (2023) Interpreting Random Forest Analysis of Ecological Models to Move from Prediction to Explanation. Scientific Reports , 13, Article No. 3881. https://doi.org/10.1038/s41598-023-30313-8
Chisadza, B., Ncube, F., Macherera, M., Bangira, T. and Gwate, O. (2023) Spatio-temporal Variations in the Ecological Vulnerability of the Upper Mzingwane Sub-Catchment of Zimbabwe. Geomatics , Natural Hazards and Risk , 14, Article ID: 2190857. https://doi.org/10.1080/19475705.2023.2190857
Laborte, A.G., Maunahan, A.A. and Hijmans, R.J. (2010) Spectral Signature Generalization and Expansion Can Improve the Accuracy of Satellite Image Classification. PLOS ONE , 5, e10516. https://doi.org/10.1371/journal.pone.0010516
Wei, X., Zhang, W., Zhang, Z., Huang, H. and Meng, L. (2023) Urban Land Use Land Cover Classification Based on GF-6 Satellite Imagery and Multi-Feature Optimization. Geocarto International , 38, Article ID: 2236579. https://doi.org/10.1080/10106049.2023.2236579
Adepoju, K.A. and Adelabu, S.A. (2019) Improving Accuracy of Landsat-8 OLI Classification Using Image Composite and Multisource Data with Google Earth Engine. Remote Sensing Letters , 11, 107-116. https://doi.org/10.1080/2150704x.2019.1690792
Lahai, M.K., Kabba, V.T.S. and Mansaray, L.R. (2022) Impacts of Land-Use and Land-Cover Change on Rural Livelihoods: Evidence from Eastern Sierra Leone. Applied Geography , 147, Article ID: 102784. https://doi.org/10.1016/j.apgeog.2022.102784
Guyassa, E., Raj, A.J., Gidey, K. and Tadesse, A. (2014) Domestication of Indigenous Fruit and Fodder Trees/Shrubs in Dryland Agroforestry and Its Implication on Food Security. International Journal of Ecosystem , 4, 83-88. https://doi.org/10.5923/j.ije.20140402.06
Taloor, A.K., Kumar, V., Singh, V.K., Singh, A.K., Kale, R.V., Sharma, R., et al . (2020) Correction To: Land Use Land Cover Dynamics Using Remote Sensing and GIS Techniques in Western Doon Valley, Uttarakhand, India. In: Sahdev, S., Singh, R. and Kumar, M., Eds., Geoecology of Landscape Dynamics , Springer, C1. https://doi.org/10.1007/978-981-15-2097-6_23
Yesuph, A.Y. and Dagnew, A.B. (2019) Land Use/cover Spatiotemporal Dynamics, Driving Forces and Implications at the Beshillo Catchment of the Blue Nile Basin, North Eastern Highlands of Ethiopia. Environmental Systems Research , 8, Article No. 21. https://doi.org/10.1186/s40068-019-0148-y
Yagoub, Y.E., Musa, O.S., Siddig, A.A., Bo, Z., Li, Z. and Wang, F. (2017) Assessing the Impacts of Land Use Changes on Vegetation Cover in Eastern Sudan. International Journal of Research in Agricultural Sciences , 4, 70-76. https://ijras.org/administrator/components/com_jresearch/files/publications/IJRAS_505_FINAL.pdf
Kilama Luwa, J., Bamutaze, Y., Majaliwa Mwanjalolo, J., Waiswa, D., Pilesjö, P. and Mukengere, E.B. (2020) Impacts of Land Use and Land Cover Change in Response to Different Driving Forces in Uganda: Evidence from a Review. African Geographical Review , 40, 378-394. https://doi.org/10.1080/19376812.2020.1832547
Semper-Pascual, A., Burton, C., Baumann, M., Decarre, J., Gavier-Pizarro, G., Gómez-Valencia, B., et al . (2021) How Do Habitat Amount and Habitat Fragmentation Drive Time-Delayed Responses of Biodiversity to Land-Use Change? Proceedin gs of the Royal Society B : Biological Sciences , 288, Article ID: 20202466. https://doi.org/10.1098/rspb.2020.2466
Yuan, R., Zhang, N. and Zhang, Q. (2024) The Impact of Habitat Loss and Fragmentation on Biodiversity in Global Protected Areas. Science of the Total Environment , 931, Article ID: 173004. https://doi.org/10.1016/j.scitotenv.2024.173004
Yan, Z., Guo, Y., Sun, B., Gao, Z., Qin, P., Li, Y., et al . (2024) Combating Land Degradation through Human Efforts: Ongoing Challenges for Sustainable Development of Global Drylands. Journal of Environmental Management , 354, Article ID: 120254. https://doi.org/10.1016/j.jenvman.2024.120254
Sulieman, A.M.E. and Mariod, A.A. (2019) Domestication of Indigenous Fruit Trees. In: Mariod, A., Ed., Wild Fruits : Composition , Nutritional Value and Products , Springer, 59-81. https://doi.org/10.1007/978-3-030-31885-7_6
Jha, D., Hangargekar, P., Akbar, M., Parihar, A.S., Kashyap, S., Joshi, A., et al . (2024) REMOVED: Ziziphus Mauritiana: An In-Depth Review of Its Medicinal Attributes and Pharmacological Activities. Intelligent Pharmacy , 2, 274-283. https://doi.org/10.1016/j.ipha.2023.12.001