Page 185 - AJWEP-22-4
P. 185

Land suitability for coffee Abaya and Gelana

                   Amazonas, Peru: Integrated use of AHP, GIS and RS.   interventions. Discov Sustain. 2024;5(1):106.
                   ISPRS Int J Geo-Inform. 2020;9(11):673.              doi: 10.1007/s43621-024-00282-7
                   doi: 10.3390/ijgi9110673                         56.  Yirga  F,  Asfaw  Z,  Alemu  A,  Ewnetu  Z,  Teketay  D.
                44.  Pereira JMC, Duckstein L. A multiple criteria decision-  Exploring the contribution  of agroforestry practices
                   making approach to GIS-based land suitability evaluation.   to income and livelihoods of rural households in
                   Int J Geograph Inform Sci. 1993;7(5):407-424.        the  central  highlands  of Ethiopia.  Agroforest  Syst.
                45.  Yalew SG, Van Griensven A, Mul ML, van der Zaag P.   2024;98(6):1355-1375.
                   Land  suitability  analysis  for  agriculture  in  the  Abbay      doi: 10.1007/s10457-024-01008-4
                   basin using remote sensing, GIS and AHP techniques.   57.  Mulugeta  H.  Land Suitability  and crop Suitability
                   Model Earth Syst Environ. 2016;2:1-14.               Analysis Using Remote Sensing and GIS  Application;
                46.  Malczewski J. Local weighted linear combination. Trans   A Case Study in Legambo Woreda, Ethiopia. [An MSc
                   GIS. 2011;15:439-455.                                Thesis  Submitted  to  the  School  of  Graduate  Studies,
                   doi: 10.1111/j.1467-9671.2011.01275.x                Addis Ababa University, Ethiopia]; 2010.
                47.  Bezu A. Analyzing  impacts of climate  variability  and   58.  Zeleke  G,  Teshome  M,  Ayele  L.  Environmental  and
                   changes in Ethiopia:  A  review.  Am J Mod Energy.   sustainability indicators farmers ’ livelihood vulnerability
                   2020;6(3):65.                                        to  climate-related  risks in  the North  Wello.  Environ
                   doi: 10.11648/j.ajme.20200603.11                     Sustain Indic. 2023;17:100220.
                48.  Unger PW.  Guidelines: Land Evaluation  for Rainfed      doi: 10.1016/j.indic.2022.100220
                   Agriculture. Rome: Food and Agriculture Organization   59.  Juita N, Ridwan I, Jannah R, Parahyanti AAM. Arabica
                   (FAO); 1984. p. 110.                                 coffee  land  suitability  with  a  parametric  approach
                49.  Ayal DY, Michael T, Getahun AB, Ture K, Zeleke TT,   based on square root. IOP Conf Ser Earth Environ Sci.
                   Tesfaye B. Climate variability induced household food   2021;807(2):22076.
                   insecurity  coping  strategy  in  Gambella  Zuria  Woreda,      doi: 10.1088/1755-1315/807/2/022076
                   Southwestern, Ethiopia. Climate Serv. 2023;30:100382.  60.  Li T, Singh RK, Cui L, et al. Navigating the landscape
                   doi: 10.1016/j.cliser.2023.100382                    of global sustainable  livelihood  research: Past
                50.  Dejene  T,  Dalle  G,  Woldeamanuel  T,  Mekuyie  M.   insights  and  future  trajectory.  Environ Sci  Pollut  Res.
                   Temporal climate conditions and spatial drought      2023;30(46):103291-103312.
                   patterns  across rangelands  in  pastoral  areas  of  West      doi: 10.1007/s11356-023-29567-6
                   Guji and Borana zones, Southern Ethiopia. Pastoralism.   61.  Mollick  T,  Azam  MG,  Karim  S.  Geospatial-based
                   2023;13(1):18.                                       machine  learning  techniques  for land  use and land
                   doi: 10.1186/s13570-023-00278-4                      cover mapping using a high-resolution unmanned
                51.  IPCC.  Climate  Change  2021:  The Physical  Science   aerial vehicle image. Remote Sens Applic Soc Environ.
                   Basis:  Summary  for  Policymakers  Technical  Summary   2023;29:100859.
                   Frequently  Asked Questions Glossary. Switzerland:      doi: 10.1016/j.rsase.2022.100859
                   Intergovernmental  Panel on Climate  Change;  2021.   62.  Abdulaziz  AM,  Harald  G,  Khalid  S.  Macroeconomic
                   Available  from: https://www.ipcc.ch/report/ar6/wg1   effects  of  improving  road  transport  infrastructure  in
                   [Last accessed on 2024 Jul 22].                      Ethiopia:  A  computable general equilibrium  model
                52.  World Bank.  Ethiopia; Sustainable Land Management   analysis. J Econ Int Finance. 2020;12(3):105-119.
                   Project I and II Report No 153559. United States: World      doi: 10.5897/jeif2020.1048
                   Bank; 2020. p. 110.                              63.  Hameed A,  Hussain  SA,  Suleria  HAR.  “Coffee  Bean-
                53.  McVicar TR, Körner C. On the use of elevation, altitude,   Related”  agroecological  factors  affecting  the  coffee.
                   and height in the ecological and climatological literature.   In: Co-Evolution of Secondary Metabolites. New York:
                   Oecologia. 2013;171(2):335-337.                      Springer International Publishing; 2020. p. 641-705.
                   doi: 10.1007/s00442-012-2416-7                   64.  Habib-ur-Rahman M, Ahmad A, Raza A, et al. Impact
                54.  Fachruddin  F, Fadhil  R, Syafriandi  S, Dahlan  D.   of climate change on agricultural production;  Issues,
                   Suitability analysis of scrubland for arabica and robusta   challenges, and opportunities in Asia. Front Plant Sci.
                   coffee plants in Aceh Besar Regency. IOP Conf Ser Earth   2022;13:925548.
                   Environ Sci. 2021;644(1):012011.                     doi: 10.3389/fpls.2022.925548
                   doi: 10.1088/1755-1315/644/1/012011              65.  Ahenkan  A, Suleiman  N, Boon EK. Improving
                55.  Solomon N, Birhane E, Tilahun M, et al. Revitalizing   Nutrition and Health through Non-timber Forest
                   Ethiopia’s highland soil degradation: A comprehensive   Product in Ghana. Journal of Rural and Commun Dev.
                   review  on  land  degradation  and  effective  management   2017;12(2/3):210-235.








                Volume 22 Issue 4 (2025)                       177                           doi: 10.36922/AJWEP025190143
   180   181   182   183   184   185   186   187   188   189   190