Potential of agrivoltaics in Mexico: Opportunities and challenges for energy and agricultural sustainability

Agrivoltaics, defined as the co-location of agricultural production and photovoltaic electricity generation on the same land, has emerged as a promising strategy for expanding renewable energy while maintaining productive agricultural use. This study presents a national-scale screening of the theoretical upper-bound agrivoltaic electricity potential in Mexico and identifies the main opportunities and challenges for future implementation. The assessment combines cultivated area, state-level average solar irradiation, photovoltaic efficiency, and literature-derived agrivoltaic density scenarios for crops cultivated in Mexico with documented agrivoltaic relevance. Results show that maize presents the highest theoretical electricity estimate at the national level (9219.89 TWh yr −1 ), followed by wheat (809.12 TWh yr −1 ) and green chili (435.07 TWh yr −1 ), mainly due to their cultivated area and adopted density assumptions. On a per-hectare basis, strawberry, raspberry, green chili, and tomato show the highest estimates, ranging from 2.04 to 2.73 GWh yr −1 ha −1 under the reference-density scenario. Crop classification by agrivoltaic density and rotation compatibility indicates that crop management constraints should be considered when moving from national estimates to site-specific planning. Under an unconstrained upper-bound scenario, allocating an equivalent area corresponding to 1% of the selected agricultural land would correspond to 14.79% of national electricity consumption and an avoided emission estimate of 22.38 million tons of CO 2 per year. The results provide a screening-level reference for prioritizing regions, crops, and research pathways, while technical, economic, spatial, and social challenges require site-specific assessment before implementation. • Theoretical agrivoltaic electricity potential is estimated for Mexico. • Solar resource, crop area, PV efficiency, and agrivoltaic density are integrated. • Sinaloa, Chiapas, and Jalisco show the highest state-level estimates. • Maize, wheat, and green chili show the highest national estimates. • Strawberry, raspberry, green chili, and tomato lead per-hectare estimates.

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Journal
Journal of Cleaner Production
Published
2026-09-11
DOI
https://doi.org/10.1016/j.jclepro.2026.149433
Primary Topic
Photovoltaic Systems and Sustainability
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article
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article

Potential of agrivoltaics in Mexico: Opportunities and challenges for energy and agricultural sustainability

S. Islas, N. Velázquez, Jesús Armando Aguilar Jiménez, José Daniel Gámez Avilez et al.
Journal of Cleaner Production
Photovoltaic Systems and Sustainability
article

Potential of agrivoltaics in Mexico: Opportunities and challenges for energy and agricultural sustainability

S. Islas, N. Velázquez, Jesús Armando Aguilar Jiménez, José Daniel Gámez Avilez, Naomi Akane Saguchi Pérez de Alva
article en

Abstract

Agrivoltaics, defined as the co-location of agricultural production and photovoltaic electricity generation on the same land, has emerged as a promising strategy for expanding renewable energy while maintaining productive agricultural use. This study presents a national-scale screening of the theoretical upper-bound agrivoltaic electricity potential in Mexico and identifies the main opportunities and challenges for future implementation. The assessment combines cultivated area, state-level average solar irradiation, photovoltaic efficiency, and literature-derived agrivoltaic density scenarios for crops cultivated in Mexico with documented agrivoltaic relevance. Results show that maize presents the highest theoretical electricity estimate at the national level (9219.89 TWh yr −1 ), followed by wheat (809.12 TWh yr −1 ) and green chili (435.07 TWh yr −1 ), mainly due to their cultivated area and adopted density assumptions. On a per-hectare basis, strawberry, raspberry, green chili, and tomato show the highest estimates, ranging from 2.04 to 2.73 GWh yr −1 ha −1 under the reference-density scenario. Crop classification by agrivoltaic density and rotation compatibility indicates that crop management constraints should be considered when moving from national estimates to site-specific planning. Under an unconstrained upper-bound scenario, allocating an equivalent area corresponding to 1% of the selected agricultural land would correspond to 14.79% of national electricity consumption and an avoided emission estimate of 22.38 million tons of CO 2 per year. The results provide a screening-level reference for prioritizing regions, crops, and research pathways, while technical, economic, spatial, and social challenges require site-specific assessment before implementation. • Theoretical agrivoltaic electricity potential is estimated for Mexico. • Solar resource, crop area, PV efficiency, and agrivoltaic density are integrated. • Sinaloa, Chiapas, and Jalisco show the highest state-level estimates. • Maize, wheat, and green chili show the highest national estimates. • Strawberry, raspberry, green chili, and tomato lead per-hectare estimates.

Journal of Cleaner ProductionVol. 577
Universidad Autónoma de Baja California (MX)
Zero hunger
Openalex Percentile: Top 18%
Photovoltaic Systems and Sustainability
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