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Why Have Economic Incentives Failed to Convince Farmers to Adopt Drip Irrigation in Southwestern Iran?

Author

Listed:
  • Masoud Yazdanpanah

    (Department of Agricultural Extension and Education, Agricultural Sciences and Natural Resources University of Khuzestan, Mollasani 6341773637, Iran)

  • Kurt Klein

    (Department of Economics, University of Lethbridge, Lethbridge, AB T1K 3M4, Canada)

  • Tahereh Zobeidi

    (International Institute for Applied Systems Analysis, A-2361 Laxenburg, Austria)

  • Stefan Sieber

    (Leibniz Centre for Agricultural Landscape Research, (ZALF), 15374 Müncheberg, Germany
    Department of Agricultural Economics, Humboldt University of Berlin, 10099 Berlin, Germany)

  • Katharina Löhr

    (Leibniz Centre for Agricultural Landscape Research, (ZALF), 15374 Müncheberg, Germany
    Division Urban Plant Ecophysiology, Humboldt University of Berlin, 14195 Berlin, Germany)

Abstract

Sustainable water usage is an important global concern and an urgent priority, especially in dryland regions such as Iran. The Iranian government is actively addressing the challenge of water scarcity by encouraging farmers to adopt new water application technology. Its main element to decrease water consumption is to encourage new irrigation systems, in particular drip irrigation. However, despite the benefits of drip irrigation technologies and the availability of generous government subsidies, adoption rates of the improved irrigation technology remain critically low among Iranian farmers. Therefore, this study seeks to determine what is limiting the uptake of improved irrigation technology in Iran. While it is well known that acceptance of new technology ultimately depends on multiple and interrelated factors, we examine those factors affecting farmers’ adoption from three theoretical perspectives in the adoption literature: farmers’ socio-economic characteristics, social capital, and technology characteristics. A cross-sectional survey was undertaken in Behbahan district in Khuzestan province in southwest Iran. The sample comprises 174 farmers who adopted drip irrigation in that region and 100 non-adopters who were located in the same region. Discriminant analysis reveals that a socio-economic approach is the strongest model to predict adoption of drip irrigation technology in the study area, followed by models of technical characteristics, and social capital. These results can help agricultural extension agents and policy-makers design appropriate and effective strategies that facilitate the adoption of drip irrigation at an increasing rate.

Suggested Citation

  • Masoud Yazdanpanah & Kurt Klein & Tahereh Zobeidi & Stefan Sieber & Katharina Löhr, 2022. "Why Have Economic Incentives Failed to Convince Farmers to Adopt Drip Irrigation in Southwestern Iran?," Sustainability, MDPI, vol. 14(4), pages 1-15, February.
  • Handle: RePEc:gam:jsusta:v:14:y:2022:i:4:p:2055-:d:747032
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    References listed on IDEAS

    as
    1. Micheels, Eric T. & Nolan, James F., 2016. "Examining the effects of absorptive capacity and social capital on the adoption of agricultural innovations: A Canadian Prairie case study," Agricultural Systems, Elsevier, vol. 145(C), pages 127-138.
    2. Zhang, Biao & Fu, Zetian & Wang, Jieqiong & Zhang, Lingxian, 2019. "Farmers’ adoption of water-saving irrigation technology alleviates water scarcity in metropolis suburbs: A case study of Beijing, China," Agricultural Water Management, Elsevier, vol. 212(C), pages 349-357.
    3. Feder, Gershon & Just, Richard E & Zilberman, David, 1985. "Adoption of Agricultural Innovations in Developing Countries: A Survey," Economic Development and Cultural Change, University of Chicago Press, vol. 33(2), pages 255-298, January.
    4. Rouzaneh, Davoud & Yazdanpanah, Masoud & Jahromi, Arman Bakhshi, 2021. "Evaluating micro-irrigation system performance through assessment of farmers' satisfaction: implications for adoption, longevity, and water use efficiency," Agricultural Water Management, Elsevier, vol. 246(C).
    5. Efthalia Dimara & Dimitrios Skuras, 1998. "Adoption of new tobacco varieties in Greece: Impacts of empirical findings on policy design," Agricultural Economics, International Association of Agricultural Economists, vol. 19(3), pages 297-307, December.
    6. Bjornlund, Henning & Nicol, Lorraine & Klein, K.K., 2009. "The adoption of improved irrigation technology and management practices--A study of two irrigation districts in Alberta, Canada," Agricultural Water Management, Elsevier, vol. 96(1), pages 121-131, January.
    7. Lambrecht, Isabel & Vanlauwe, Bernard & Merckx, Roel & Maertens, Miet, 2014. "Understanding the Process of Agricultural Technology Adoption: Mineral Fertilizer in Eastern DR Congo," World Development, Elsevier, vol. 59(C), pages 132-146.
    8. Narayan, Deepa & Pritchett, Lant, 1999. "Cents and Sociability: Household Income and Social Capital in Rural Tanzania," Economic Development and Cultural Change, University of Chicago Press, vol. 47(4), pages 871-897, July.
    9. Friedlander, Lonia & Tal, Alon & Lazarovitch, Naftali, 2013. "Technical considerations affecting adoption of drip irrigation in sub-Saharan Africa," Agricultural Water Management, Elsevier, vol. 126(C), pages 125-132.
    10. Franceschinis, Cristiano & Thiene, Mara & Scarpa, Riccardo & Rose, John & Moretto, Michele & Cavalli, Raffaele, 2017. "Adoption of renewable heating systems: An empirical test of the diffusion of innovation theory," Energy, Elsevier, vol. 125(C), pages 313-326.
    11. Feike, Til & Khor, Ling Yee & Mamitimin, Yusuyunjiang & Ha, Nan & Li, Lin & Abdusalih, Nurbay & Xiao, Haifeng & Doluschitz, Reiner, 2017. "Determinants of cotton farmers’ irrigation water management in arid Northwestern China," Agricultural Water Management, Elsevier, vol. 187(C), pages 1-10.
    12. Montaha Boazar & Abas Abdeshahi & Masoud Yazdanpanah, 2020. "Changing rice cropping patterns among farmers as a preventive policy to protect water resources," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 63(14), pages 2484-2500, December.
    13. Batz, F. -J. & Peters, K. J. & Janssen, W., 1999. "The influence of technology characteristics on the rate and speed of adoption," Agricultural Economics, Blackwell, vol. 21(2), pages 121-130, October.
    14. Santos, Susana & Gonçalves, Helena Martins, 2019. "Multichannel consumer behaviors in the mobile environment: Using fsQCA and discriminant analysis to understand webrooming motivations," Journal of Business Research, Elsevier, vol. 101(C), pages 757-766.
    15. Schimmelpfennig, David, 2016. "Farm Profits and Adoption of Precision Agriculture," Economic Research Report 249773, United States Department of Agriculture, Economic Research Service.
    16. Timothy G. Conley & Christopher R. Udry, 2010. "Learning about a New Technology: Pineapple in Ghana," American Economic Review, American Economic Association, vol. 100(1), pages 35-69, March.
    17. Yigezu, Yigezu Atnafe & Mugera, Amin & El-Shater, Tamer & Aw-Hassan, Aden & Piggin, Colin & Haddad, Atef & Khalil, Yaseen & Loss, Stephen, 2018. "Enhancing adoption of agricultural technologies requiring high initial investment among smallholders," Technological Forecasting and Social Change, Elsevier, vol. 134(C), pages 199-206.
    18. Sedighe Pakmehr & Masoud Yazdanpanah & Masoud Baradaran, 2021. "Explaining farmers’ response to climate change-induced water stress through cognitive theory of stress: an Iranian perspective," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 23(4), pages 5776-5793, April.
    19. Hunecke, Claudia & Engler, Alejandra & Jara-Rojas, Roberto & Poortvliet, P. Marijn, 2017. "Understanding the role of social capital in adoption decisions: An application to irrigation technology," Agricultural Systems, Elsevier, vol. 153(C), pages 221-231.
    20. Forough Jafary & Chris Bradley, 2018. "Groundwater Irrigation Management and the Existing Challenges from the Farmers’ Perspective in Central Iran," Land, MDPI, vol. 7(1), pages 1-21, January.
    21. Javad Torkamani & Shahrokh Shajari, 2008. "Adoption of New Irrigation Technology Under Production Risk," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 22(2), pages 229-237, February.
    22. Adekunle, Ademola & Osazuwa, Peter & Raghavan, Vijaya, 2016. "Socio-economic determinants of agricultural mechanisation in Africa: A research note based on cassava cultivation mechanisation," Technological Forecasting and Social Change, Elsevier, vol. 112(C), pages 313-319.
    23. Jonathan Isham, 2002. "The Effect of Social Capital on Fertiliser Adoption: Evidence from Rural Tanzania," Journal of African Economies, Centre for the Study of African Economies, vol. 11(1), pages 39-60, March.
    24. Ratchaneewan Chuchird & Nophea Sasaki & Issei Abe, 2017. "Influencing Factors of the Adoption of Agricultural Irrigation Technologies and the Economic Returns: A Case Study in Chaiyaphum Province, Thailand," Sustainability, MDPI, vol. 9(9), pages 1-16, August.
    25. Dimara, Efthalia & Skuras, Dimitrios, 1998. "Adoption of new tobacco varieties in Greece: Impacts of empirical findings on policy design," Agricultural Economics, Blackwell, vol. 19(3), pages 297-307, December.
    26. van Rijn, Fédes & Bulte, Erwin & Adekunle, Adewale, 2012. "Social capital and agricultural innovation in Sub-Saharan Africa," Agricultural Systems, Elsevier, vol. 108(C), pages 112-122.
    27. Awudu Abdulai & Wallace E. Huffman, 2005. "The Diffusion of New Agricultural Technologies: The Case of Crossbred-Cow Technology in Tanzania," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 87(3), pages 645-659.
    28. Abdulai, Awudu & Owusu, Victor & Bakang, John-Eudes A., 2011. "Adoption of safer irrigation technologies and cropping patterns: Evidence from Southern Ghana," Ecological Economics, Elsevier, vol. 70(7), pages 1415-1423, May.
    29. Lambert, Dayton M. & Paudel, Krishna P. & Larson, James A., 2015. "Bundled Adoption of Precision Agriculture Technologies by Cotton Producers," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 40(2), pages 1-21, May.
    30. Manda, Julius & Khonje, Makaiko G. & Alene, Arega D. & Tufa, Adane H & Abdoulaye, Tahirou & Mutenje, Munyaradzi & Setimela, Peter & Manyong, Victor, 2020. "Does cooperative membership increase and accelerate agricultural technology adoption? Empirical evidence from Zambia," Technological Forecasting and Social Change, Elsevier, vol. 158(C).
    31. Castillo, Gracia Maria Lanza & Engler, Alejandra & Wollni, Meike, 2021. "Planned behavior and social capital: Understanding farmers’ behavior toward pressurized irrigation technologies," Agricultural Water Management, Elsevier, vol. 243(C).
    32. F.‐J. Batz & K.J. Peters & W. Janssen, 1999. "The influence of technology characteristics on the rate and speed of adoption," Agricultural Economics, International Association of Agricultural Economists, vol. 21(2), pages 121-130, October.
    33. Nazari, Bijan & Liaghat, Abdolmajid & Akbari, Mohammad Reza & Keshavarz, Marzieh, 2018. "Irrigation water management in Iran: Implications for water use efficiency improvement," Agricultural Water Management, Elsevier, vol. 208(C), pages 7-18.
    34. Moslem Savari & Hamed Eskandari Damaneh & Hadi Eskandari Damaneh, 2021. "Factors influencing farmers’ management behaviors toward coping with drought: evidence from Iran," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 64(11), pages 2021-2046, July.
    35. Ephraim Chirwa, 2005. "Adoption of fertiliser and hybrid seeds by smallholder maize farmers in Southern Malawi," Development Southern Africa, Taylor & Francis Journals, vol. 22(1), pages 1-12.
    36. Tomaš Simin, Mirela & Janković, Dejan, 2014. "Applicability Of Diffusion Of Innovation Theory In Organic Agriculture," Economics of Agriculture, Institute of Agricultural Economics, vol. 61(2), pages 1-13, June.
    37. Laura McCann & Haluk Gedikoglu & Bob Broz & John Lory & Ray Massey, 2015. "Effects of observability and complexity on farmers’ adoption of environmental practices," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 58(8), pages 1346-1362, August.
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