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Localizing agricultural impacts of 21st century climate pathways in data scarce catchments: A case study of the Nyando catchment, Kenya

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  • Lekarkar, Katoria
  • Nkwasa, Albert
  • Villani, Lorenzo
  • van Griensven, Ann

Abstract

Climate change is projected to increase the volatility of agricultural productivity within the Sub-Saharan Africa region. However, current knowledge of climate change impacts in this region is largely derived from coarse-grid global datasets that lack sufficient detail for local applications. The derived impacts are thus generalized across large spatial scales, with a limited representation the differential exposure across the region. It is thus necessary to conduct localized assessments to derive local vulnerabilities and develop context-specific mitigation strategies. This study utilizes downscaled outputs from regional climate models to quantify the effects of climate change on maize and sugarcane crops at catchment-scale, hereby the Nyando catchment in Kenya. The findings indicate that climate change will reduce the suitability of conditions to the growth of both crops, with sub-optimal conditions for maize increasing by up to 600%. The analysis of crop yields show that maize yields are projected to decline by about 23.9% under the RCP4.5 scenario and 29.4% under RCP8.5. Sugarcane yields are similarly projected to decrease by 17.0% and 28.6% for RCP4.5 and RCP8.5 respectively. The underlying climatic changes suggest that future warming outweighs the effects of precipitation in explaining crop yield declines. More broadly, the methodology applied in this study can be readily adapted and utilized for agricultural areas throughout the Sub-Saharan region. By adopting this localized impact assessment approach policymakers and sector players will be empowered with information at a higher spatial detail which empowers targeted, region-specific adaptation strategies.

Suggested Citation

  • Lekarkar, Katoria & Nkwasa, Albert & Villani, Lorenzo & van Griensven, Ann, 2024. "Localizing agricultural impacts of 21st century climate pathways in data scarce catchments: A case study of the Nyando catchment, Kenya," Agricultural Water Management, Elsevier, vol. 294(C).
  • Handle: RePEc:eee:agiwat:v:294:y:2024:i:c:s0378377424000313
    DOI: 10.1016/j.agwat.2024.108696
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    1. Sinnathamby, Sumathy & Douglas-Mankin, Kyle R. & Craige, Collin, 2017. "Field-scale calibration of crop-yield parameters in the Soil and Water Assessment Tool (SWAT)," Agricultural Water Management, Elsevier, vol. 180(PA), pages 61-69.
    2. Tian, Xin & Dong, Jianzhi & Jin, Shuangyan & He, Hai & Yin, Hao & Chen, Xi, 2023. "Climate change impacts on regional agricultural irrigation water use in semi-arid environments," Agricultural Water Management, Elsevier, vol. 281(C).
    3. Frank Davenport & Chris Funk & Gideon Galu, 2018. "How will East African maize yields respond to climate change and can agricultural development mitigate this response?," Climatic Change, Springer, vol. 147(3), pages 491-506, April.
    4. Chen, Yong & Marek, Gary W. & Marek, Thomas H. & Moorhead, Jerry E. & Heflin, Kevin R. & Brauer, David K. & Gowda, Prasanna H. & Srinivasan, Raghavan, 2019. "Simulating the impacts of climate change on hydrology and crop production in the Northern High Plains of Texas using an improved SWAT model," Agricultural Water Management, Elsevier, vol. 221(C), pages 13-24.
    5. Jeyrani, F. & Morid, S. & Srinivasan, R., 2021. "Assessing basin blue–green available water components under different management and climate scenarios using SWAT," Agricultural Water Management, Elsevier, vol. 256(C).
    6. Olaf Erenstein & Moti Jaleta & Kai Sonder & Khondoker Mottaleb & B.M. Prasanna, 2022. "Global maize production, consumption and trade: trends and R&D implications," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 14(5), pages 1295-1319, October.
    7. Adeline Bichet & Arona Diedhiou & Benoit Hingray & Guillaume Evin & N’Datchoh Evelyne Touré & Klutse Nana Ama Browne & Kouakou Kouadio, 2020. "Assessing uncertainties in the regional projections of precipitation in CORDEX-AFRICA," Climatic Change, Springer, vol. 162(2), pages 583-601, September.
    8. Jalloh, Abdulai & Nelson, Gerald C. & Thomas, Timothy S. & Zougmoré, Robert & Roy-Macauley, Harold, 2013. "West african agriculture and climate change: A comprehensive analysis:," Issue briefs 75, International Food Policy Research Institute (IFPRI).
    9. Strauch, Michael & Volk, Martin, 2013. "SWAT plant growth modification for improved modeling of perennial vegetation in the tropics," Ecological Modelling, Elsevier, vol. 269(C), pages 98-112.
    10. Stockle, Claudio O. & Williams, Jimmy R. & Rosenberg, Norman J. & Jones, C. Allan, 1992. "A method for estimating the direct and climatic effects of rising atmospheric carbon dioxide on growth and yield of crops: Part I--Modification of the EPIC model for climate change analysis," Agricultural Systems, Elsevier, vol. 38(3), pages 225-238.
    11. Waithaka, Michael & Nelson, Gerald C. & Thomas, Timothy S. & Kyotalimye, Miriam (ed.), 2013. "East African agriculture and climate change: A comprehensive analysis," IFPRI books, International Food Policy Research Institute (IFPRI), number 978-0-89629-205-5.
    12. Kun Jia & Wei Zhang & Bingyan Xie & Xitong Xue & Feng Zhang & Dongrui Han, 2022. "Does Climate Change Increase Crop Water Requirements of Winter Wheat and Summer Maize in the Lower Reaches of the Yellow River Basin?," IJERPH, MDPI, vol. 19(24), pages 1-12, December.
    13. Ariel Ortiz-Bobea & Toby R. Ault & Carlos M. Carrillo & Robert G. Chambers & David B. Lobell, 2021. "Anthropogenic climate change has slowed global agricultural productivity growth," Nature Climate Change, Nature, vol. 11(4), pages 306-312, April.
    Full references (including those not matched with items on IDEAS)

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