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Climate-Smart Agriculture Amidst Climate Change to Enhance Agricultural Production: A Bibliometric Analysis

Author

Listed:
  • Collins C. Okolie

    (Disaster Management Training and Education Centre for Africa, University of the Free State, P.O. Box 339, Bloemfontein 9300, South Africa)

  • Gideon Danso-Abbeam

    (Disaster Management Training and Education Centre for Africa, University of the Free State, P.O. Box 339, Bloemfontein 9300, South Africa
    Department of Agribusiness, University for Development Studies, Tamale P.O. Box TL 1882, Ghana)

  • Okechukwu Groupson-Paul

    (Alex Ekweme Federal University Ndufu-Alike Ikwo, Abakaliki P.O. Box 1010, Ebonyi, Nigeria)

  • Abiodun A. Ogundeji

    (Disaster Management Training and Education Centre for Africa, University of the Free State, P.O. Box 339, Bloemfontein 9300, South Africa)

Abstract

Climate change significantly impacts global agricultural productivity. Therefore, a more dynamic farming system is needed to enable farmers to better adapt to climate change while contributing to efforts to produce enough food to feed the growing world population. In the context of climate change, this study analyzed the empirical scientific literature on the link between climate-smart agriculture and farm productivity. To evaluate the relevant articles, the authors used the search term “climate-smart agriculture amidst climate change to enhance agricultural production (CSA-CCAP)” to find studies published between 2009 and March 2022 using innovative bibliometric techniques. One hundred and sixteen published papers in BibTeX format were downloaded for further analysis. The most successful selected CSA approaches in Africa, such as in the Congo Basin forest, including sustainable land management practices, water-efficient maize hybrids, and others, aim to counteract climate change with signs of 200 percent output gains. The findings showed an annual growth rate of about 19%, demonstrating that research on CSA-CCAP expanded over time during the study period. Nonetheless, the research output on CSA-CCAP varied, with 2021 accounting for 30%, followed by 2020 with 16% as of March 2022. The study concluded that boosting agricultural productivity in the face of climate change may be accomplished through CSA to end hunger, eradicate poverty, and improve people’s well-being.

Suggested Citation

  • Collins C. Okolie & Gideon Danso-Abbeam & Okechukwu Groupson-Paul & Abiodun A. Ogundeji, 2022. "Climate-Smart Agriculture Amidst Climate Change to Enhance Agricultural Production: A Bibliometric Analysis," Land, MDPI, vol. 12(1), pages 1-23, December.
  • Handle: RePEc:gam:jlands:v:12:y:2022:i:1:p:50-:d:1013664
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    References listed on IDEAS

    as
    1. Baker, H. Kent & Kumar, Satish & Pattnaik, Debidutta, 2021. "Twenty-five years of the Journal of Corporate Finance: A scientometric analysis," Journal of Corporate Finance, Elsevier, vol. 66(C).
    2. Abiodun A. Ogundeji & Collins C. Okolie, 2022. "Perception and Adaptation Strategies of Smallholder Farmers to Drought Risk: A Scientometric Analysis," Agriculture, MDPI, vol. 12(8), pages 1-18, July.
    3. Tolulope E. Oladimeji & Oyakhilomen Oyinbo & Abubakar A. Hassan & Oseni Yusuf, 2020. "Understanding the Interdependence and Temporal Dynamics of Smallholders’ Adoption of Soil Conservation Practices: Evidence from Nigeria," Sustainability, MDPI, vol. 12(7), pages 1-21, March.
    4. Alvin Chandra & Karen E. McNamara & Paul Dargusch, 2018. "Climate-smart agriculture: perspectives and framings," Climate Policy, Taylor & Francis Journals, vol. 18(4), pages 526-541, April.
    5. Ludo Waltman & Nees Eck, 2013. "A smart local moving algorithm for large-scale modularity-based community detection," The European Physical Journal B: Condensed Matter and Complex Systems, Springer;EDP Sciences, vol. 86(11), pages 1-14, November.
    6. Amogne Asfaw & Belay Simane & Amare Bantider & Ali Hassen, 2019. "Determinants in the adoption of climate change adaptation strategies: evidence from rainfed-dependent smallholder farmers in north-central Ethiopia (Woleka sub-basin)," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 21(5), pages 2535-2565, October.
    7. Mazvimavi, Kizito & Twomlow, Steve, 2009. "Socioeconomic and institutional factors influencing adoption of conservation farming by vulnerable households in Zimbabwe," Agricultural Systems, Elsevier, vol. 101(1-2), pages 20-29, June.
    8. Vivek Kumar Singh & Prashasti Singh & Mousumi Karmakar & Jacqueline Leta & Philipp Mayr, 2021. "The journal coverage of Web of Science, Scopus and Dimensions: A comparative analysis," Scientometrics, Springer;Akadémiai Kiadó, vol. 126(6), pages 5113-5142, June.
    9. Choruma, Dennis Junior & Balkovic, Juraj & Pietsch, Stephan Alexander & Odume, Oghenekaro Nelson, 2021. "Using EPIC to simulate the effects of different irrigation and fertilizer levels on maize yield in the Eastern Cape, South Africa," Agricultural Water Management, Elsevier, vol. 254(C).
    10. Zakaria, Abraham & Azumah, Shaibu Baanni & Appiah-Twumasi, Mark & Dagunga, Gilbert, 2020. "Adoption of climate-smart agricultural practices among farm households in Ghana: The role of farmer participation in training programmes," Technology in Society, Elsevier, vol. 63(C).
    11. Hammond, James & Fraval, Simon & van Etten, Jacob & Suchini, Jose Gabriel & Mercado, Leida & Pagella, Tim & Frelat, Romain & Lannerstad, Mats & Douxchamps, Sabine & Teufel, Nils & Valbuena, Diego & va, 2017. "The Rural Household Multi-Indicator Survey (RHoMIS) for rapid characterisation of households to inform climate smart agriculture interventions: Description and applications in East Africa and Central ," Agricultural Systems, Elsevier, vol. 151(C), pages 225-233.
    12. Götz Schroth & Arzhvaël Jeusset & Andrea Gomes & Ciro Florence & Núbia Coelho & Deborah Faria & Peter Läderach, 2016. "Climate friendliness of cocoa agroforests is compatible with productivity increase," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 21(1), pages 67-80, January.
    13. Cobo, M.J. & López-Herrera, A.G. & Herrera-Viedma, E. & Herrera, F., 2011. "An approach for detecting, quantifying, and visualizing the evolution of a research field: A practical application to the Fuzzy Sets Theory field," Journal of Informetrics, Elsevier, vol. 5(1), pages 146-166.
    14. Nees Jan Eck & Ludo Waltman, 2017. "Citation-based clustering of publications using CitNetExplorer and VOSviewer," Scientometrics, Springer;Akadémiai Kiadó, vol. 111(2), pages 1053-1070, May.
    15. Lingxiu Dong, 2021. "Toward Resilient Agriculture Value Chains: Challenges and Opportunities," Production and Operations Management, Production and Operations Management Society, vol. 30(3), pages 666-675, March.
    16. Khatri-Chhetri, Arun & Pant, Anjali & Aggarwal, Pramod K. & Vasireddy, Vijya Vardhan & Yadav, Akhilesh, 2019. "Stakeholders prioritization of climate-smart agriculture interventions: Evaluation of a framework," Agricultural Systems, Elsevier, vol. 174(C), pages 23-31.
    17. Jeetendra Prakash Aryal & Tek Bahadur Sapkota & Dil Bahadur Rahut & M.L. Jat, 2020. "Agricultural sustainability under emerging climatic variability: the role of climate-smart agriculture and relevant policies in India," International Journal of Innovation and Sustainable Development, Inderscience Enterprises Ltd, vol. 14(2), pages 219-245.
    18. Olayide, Olawale Emmanuel & Tetteh, Isaac Kow & Popoola, Labode, 2016. "Differential impacts of rainfall and irrigation on agricultural production in Nigeria: Any lessons for climate-smart agriculture?," Agricultural Water Management, Elsevier, vol. 178(C), pages 30-36.
    19. Ylva Nyberg & Caroline Musee & Emmanuel Wachiye & Mattias Jonsson & Johanna Wetterlind & Ingrid Öborn, 2020. "Effects of Agroforestry and Other Sustainable Practices in the Kenya Agricultural Carbon Project (KACP)," Land, MDPI, vol. 9(10), pages 1-22, October.
    20. Collins C. Okolie & Abiodun A. Ogundeji, 2022. "Effect of COVID-19 on agricultural production and food security: A scientometric analysis," Palgrave Communications, Palgrave Macmillan, vol. 9(1), pages 1-13, December.
    21. Robert B. Zougmoré & Peter Läderach & Bruce M. Campbell, 2021. "Transforming Food Systems in Africa under Climate Change Pressure: Role of Climate-Smart Agriculture," Sustainability, MDPI, vol. 13(8), pages 1-17, April.
    22. Haitham Nobanee & Fatima Youssef Al Hamadi & Fatma Ali Abdulaziz & Lina Subhi Abukarsh & Aysha Falah Alqahtani & Shayma Khalifa AlSubaey & Sara Mohamed Alqahtani & Hamama Abdulla Almansoori, 2021. "A Bibliometric Analysis of Sustainability and Risk Management," Sustainability, MDPI, vol. 13(6), pages 1-16, March.
    23. Elisabeth Simelton & Mariette McCampbell, 2021. "Do Digital Climate Services for Farmers Encourage Resilient Farming Practices? Pinpointing Gaps through the Responsible Research and Innovation Framework," Agriculture, MDPI, vol. 11(10), pages 1-27, September.
    24. Zseleczky, Laura & Yosef, Sivan, 2014. "Are shocks becoming more frequent or intense?," IFPRI book chapters, in: Fan, Shenggen & Pandya-Lorch, Rajul & Yosef, Sivan (ed.), 2013 Global Food Policy Report, chapter 2, International Food Policy Research Institute (IFPRI).
    25. Parihar, C.M. & Jat, S.L. & Singh, A.K. & Majumdar, K. & Jat, M.L. & Saharawat, Y.S. & Pradhan, S. & Kuri, B.R., 2017. "Bio-energy, water-use efficiency and economics of maize-wheat-mungbean system under precision-conservation agriculture in semi-arid agro-ecosystem," Energy, Elsevier, vol. 119(C), pages 245-256.
    26. Muhammad Ali Imran & Asghar Ali & Muhammad Ashfaq & Sarfraz Hassan & Richard Culas & Chunbo Ma, 2018. "Impact of Climate Smart Agriculture (CSA) Practices on Cotton Production and Livelihood of Farmers in Punjab, Pakistan," Sustainability, MDPI, vol. 10(6), pages 1-20, June.
    27. Mark Edge & Sylvester O. Oikeh & Denis Kyetere & Stephen Mugo & Kingstone Mashingaidze, 2018. "Water Efficient Maize for Africa: A Public-Private Partnership in Technology Transfer to Smallholder Farmers in Sub-Saharan Africa," Innovation, Technology, and Knowledge Management, in: Nicholas Kalaitzandonakes & Elias G. Carayannis & Evangelos Grigoroudis & Stelios Rozakis (ed.), From Agriscience to Agribusiness, pages 391-412, Springer.
    28. Waltman, Ludo & van Eck, Nees Jan & Noyons, Ed C.M., 2010. "A unified approach to mapping and clustering of bibliometric networks," Journal of Informetrics, Elsevier, vol. 4(4), pages 629-635.
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