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Adoption of phytodesalination as a sustainable agricultural practice for improving the productivity of saline soils

Author

Listed:
  • Marcos A. Lastiri-Hernández

    (Instituto Politécnico Nacional, CIIDIR unidad Michoacán, Depto. Investigación)

  • D. Álvarez-Bernal

    (Instituto Politécnico Nacional, CIIDIR unidad Michoacán, Depto. Investigación)

  • R. Moncayo-Estrada

    (Instituto Politécnico Nacional, CICIMAR)

  • G. Cruz-Cárdenas

    (Instituto Politécnico Nacional, CIIDIR unidad Michoacán, Depto. Investigación)

  • J. T. Silva García

    (Instituto Politécnico Nacional, CIIDIR unidad Michoacán, Depto. Investigación)

Abstract

Due to the strong impact of soil salination on the productivity of crops, the implementation of sustainable agricultural practices (SAPs) such as phytodesalination is intended to reverse its effects. While this practice is used in most Middle Eastern countries, Mexico has just begun envisaging its benefits and potential. This study evaluated factors promoting the adoption of phytodesalination among agricultural producers based on the municipality of Villamar, Mexico. Two hundred forty-five semistructured surveys were designed and applied to farmers who participated in various events to disseminate the practice of phytodesalination. Information was gathered on the socioeconomic/demographic characteristics and affectation levels of their parcels due to the effects of salinity. Through a logistic regression using Lasso restriction, the factors influencing the farmers’ decisions to adopt phytodesalination in their specific productive models were evaluated. The results show that more than 87% of the surveyed farmers are male, that their average age is 52 years, that more than 82% have at most an elementary or high school education, that the average plot size in the study area is roughly 4 ha, that more than 76% of the farmers are native to the area and that approximately of 84% use their production exclusively for sales. According to the model employed [prediction of 90% and AUC (area under the curve) of 0.97], the surveyed farmers are mostly influenced by institutional (advice on implementing desalination), organizational (skills and competencies to spread halophyte species in accordance with parcel length and access to halophyte plants) and economic (time to implement phytodesalination) factors. The promotion of this approach and commitment of the region’s various institutions are recommended so that farmers can extend their knowledge of SAPs through a comprehensive strategic approach that allows them to address their specific challenges.

Suggested Citation

  • Marcos A. Lastiri-Hernández & D. Álvarez-Bernal & R. Moncayo-Estrada & G. Cruz-Cárdenas & J. T. Silva García, 2021. "Adoption of phytodesalination as a sustainable agricultural practice for improving the productivity of saline soils," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 23(6), pages 8798-8814, June.
  • Handle: RePEc:spr:endesu:v:23:y:2021:i:6:d:10.1007_s10668-020-00995-5
    DOI: 10.1007/s10668-020-00995-5
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    1. David R. Lee, 2005. "Agricultural Sustainability and Technology Adoption: Issues and Policies for Developing Countries," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 87(5), pages 1325-1334.
    2. Benin, Samuel & Mogues, Tewodaj & Cudjoe, Godsway & Randriamamonjy, Josee, 2009. "Public expenditures and agricultural productivity growth in Ghana," 2009 Conference, August 16-22, 2009, Beijing, China 51634, International Association of Agricultural Economists.
    3. Batte, Marvin T. & Dick, Warren A. & Fausey, Norman R. & Flanagan, Dennis C. & Gonzalez, Javier M. & Islam, Rafiq & Reeder, Randall & VanToai, Tara T. & Watts, Dexter B., 2018. "Cover Crops and Gypsum Applications: Soybean and Corn Yield and Profitability Impacts," Journal of the ASFMRA, American Society of Farm Managers and Rural Appraisers, vol. 2018.
    4. Menale Kassie & Precious Zikhali & Kebede Manjur & Sue Edwards, 2009. "Adoption of sustainable agriculture practices: Evidence from a semi‐arid region of Ethiopia," Natural Resources Forum, Blackwell Publishing, vol. 33(3), pages 189-198, August.
    5. Sophie Theis & Nicole Lefore & Ruth Meinzen-Dick & Elizabeth Bryan, 2018. "What happens after technology adoption? Gendered aspects of small-scale irrigation technologies in Ethiopia, Ghana, and Tanzania," Agriculture and Human Values, Springer;The Agriculture, Food, & Human Values Society (AFHVS), vol. 35(3), pages 671-684, September.
    6. 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.
    7. Beke, Tite Ehuitché, 2011. "Institutional constraints and adoption of improved rice varieties: Econometric evidence from Ivory Coast," Review of Agricultural and Environmental Studies - Revue d'Etudes en Agriculture et Environnement (RAEStud), Institut National de la Recherche Agronomique (INRA), vol. 92(2).
    8. Chander, Parkash & Thangavelu, Shandre M., 2004. "Technology adoption, education and immigration policy," Journal of Development Economics, Elsevier, vol. 75(1), pages 79-94, October.
    9. Tite Ehuitché Beke, 2011. "Institutional constraints and adoption of improved rice varieties: Econometric evidence from Ivory Coast," Review of Agricultural and Environmental Studies - Revue d'Etudes en Agriculture et Environnement, INRA Department of Economics, vol. 92(2), pages 117-141.
    10. Valerie Nelson & David Phillips, 2018. "Sector, Landscape or Rural Transformations? Exploring the Limits and Potential of Agricultural Sustainability Initiatives through a Cocoa Case Study," Business Strategy and the Environment, Wiley Blackwell, vol. 27(2), pages 252-262, February.
    11. Knowler, Duncan & Bradshaw, Ben, 2007. "Farmers' adoption of conservation agriculture: A review and synthesis of recent research," Food Policy, Elsevier, vol. 32(1), pages 25-48, February.
    12. Asafu-Adjaye, John, 2008. "Factors Affecting the Adoption of Soil Conservation Measures: A Case Study of Fijian Cane Farmers," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 33(1), pages 1-19, April.
    13. Corwin, Dennis L. & Rhoades, James D. & Simunek, Jirka, 2007. "Leaching requirement for soil salinity control: Steady-state versus transient models," Agricultural Water Management, Elsevier, vol. 90(3), pages 165-180, June.
    14. Elumalai Kannan & K. B. Ramappa, 2017. "Analysis of farm-level adoption of soil nutrient management technology by paddy farmers in Karnataka, India," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 19(6), pages 2317-2331, December.
    15. Lowell Hill & Paul Kau, 1973. "Application of Multivariate Probit to a Threshold Model of Grain Dryer Purchasing Decisions," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 55(1), pages 19-27.
    16. Nkamleu, G. B. & Adesina, A. A., 2000. "Determinants of chemical input use in peri-urban lowland systems: bivariate probit analysis in Cameroon," Agricultural Systems, Elsevier, vol. 63(2), pages 111-121, February.
    17. Kassie, Menale & Jaleta, Moti & Shiferaw, Bekele & Mmbando, Frank & Mekuria, Mulugetta, 2013. "Adoption of interrelated sustainable agricultural practices in smallholder systems: Evidence from rural Tanzania," Technological Forecasting and Social Change, Elsevier, vol. 80(3), pages 525-540.
    18. Valsecchi, Michele, 2014. "Land property rights and international migration: Evidence from Mexico," Journal of Development Economics, Elsevier, vol. 110(C), pages 276-290.
    19. Ward, Patrick S. & Bell, Andrew R. & Droppelmann, Klaus & Benton, Tim G., 2018. "Early adoption of conservation agriculture practices: Understanding partial compliance in programs with multiple adoption decisions," Land Use Policy, Elsevier, vol. 70(C), pages 27-37.
    20. Singh, Karam, 2000. "Education, Technology Adoption and Agricultural Productivity," Indian Journal of Agricultural Economics, Indian Society of Agricultural Economics, vol. 55(3), September.
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