Requirements for transitioning to solar energy in poultry farms: Evidence from Kermanshah city

Document Type : Original Article

Authors
1 MSc, Department of Agricultural Extension and Education, Faculty of Agriculture, Razi University, Kermanshah, Iran
2 Associate Professor, Department of Agricultural Extension and Education, Faculty of Agriculture, Razi University, Kermanshah, Iran
3 PhD, Department of Agricultural Extension and Education, Faculty of Agriculture, Razi University, Kermanshah, Iran
Abstract
The poultry industry faces high energy consumption and electricity imbalance challenges. Given the high potential of solar radiation in Iran, the present study aimed to investigate the implications of applying solar energy in poultry farms in Kermanshah city. This qualitative study was conducted with a conventional content analysis approach. The study population included all active industrial poultry farmers in Kermanshah city (86 units), livestock experts from the Agricultural Jihad Organization, and experts from the Electricity Distribution Company. Using purposive sampling and theoretical saturation criteria, semi-structured interviews were conducted with 20 people (16 poultry farmers and 4 experts). The data were analyzed with MAXQDA software and open and axial coding methods. Validity and reliability were confirmed with Lincoln and Guba criteria (1994). The findings of this study show that the application of solar energy in poultry farms in Kermanshah province is a multidimensional process and depends on the simultaneous interaction of economic, managerial, research, socio-cultural, and legal-political factors. The results indicate that focusing solely on short-term economic savings cannot guarantee the success of this transition, but rather, realizing long-term benefits requires targeted government incentives, reducing investment risks, and creating economic certainty for operators. In this regard, the role of poultry farm management as a facilitating or inhibiting factor stands out; in such a way that managerial commitment, strategic planning, and human resource empowerment can pave the way for the effective adoption and utilization of solar technologies.
Keywords

سازمان جهاد کشاورزی استان کرمانشاه. (1402)گزارش سالانه آمار تولید طیور سازمان جهاد کشاورزی استان کرمانشاه.

محمدی، محسن. (۱۴۰۰). کاربرد انرژی‌های تجدیدپذیر در صنعت طیور: مطالعه موردی مرغ‌داری‌های استان اصفهان. مجله تحقیقات انرژی‌های تجدیدپذیر, 10 (1)، 22-35.

موسوی، سید علی؛ علیزاده، محمد. (۱۴۰۰). کاربرد انرژی‌های تجدیدپذیر در صنعت طیور: مطالعه موردی مرغداری‌های استان اصفهانمجله انرژی ایران,. 24 (2). ۶۷-۸۴.

موقری، علیرضا؛ طاووسی، تقی. (۱۳۹۲). تحلیل ساعات آفتابی و پتانسیل تابش خورشیدی در استان کرمانشاه. جغرافیا و برنامه‌ریزی محیطی. 24 (4). ۱۴۵-۱۶۲.

Ahmadpour, A., Mousavi-Avval, S. H., & Rafiee, S. (2020). Energy use and greenhouse gas emissions in poultry production: A case study in IranJournal of Cleaner Production, 259, 120845.
Ajzen, I. (1991). The theory of planned behavior. Organizational Behavior and Human Decision Processes, 50(2), 179-211.
Antonucci, M. C., Volterrani, A., Serra, M., Cornaro, C., Petitta, M., & Bovesecchi, G. (2025). Transforming risk perception and fostering cooperatively the Agri-PhotoVoltaics technology with farmers in five countries: A sociological perspective from the REGACE projectAgriVoltaics Conference Proceedings, 3.
Ashraf, A., & Sagheer, M. (2025). Renewable energy capacity and technological innovations: A review of global trends and future directions. Environmental Progress & Sustainable Energy, 44, e70071.
Athumani, A. J., Mwasilu, F., & Makolo, P. (2025). Adoption of agrivoltaics in developing countries: A review on challenges, opportunities and future prospects. Tanzania Journal of Engineering and Technology, 44(3).
BroilerNet. (2025). Zero carbon footprint farms. BroilerNet Good Practice Collectionhttps://broilernet.eu/zero-carbon-footprint-farms/
Carper, E. (2025). An examination of farmer perceptions, social acceptance, and the disruptive potential of agrivoltaics in northwest India [PhD thesis, University of New York]. White Rose eTheses Online. 
Creswell, J. W. (2009). Research design: Qualitative, quantitative, and mixed methods approaches (3rd ed.). Sage Publications.
Cui, Y., Liu, Z., Wang, S., & Li, X. (2020). Energy-saving analysis of a solar-assisted poultry house in northern China. Energy and Buildings, 223, 110-122. 
Duque Oliva, E. J., & Atehortua Santamaria, R. (2025). Decoding solar adoption: A systematic review of theories and factors of photovoltaic technology adoption in households of developing countriesSustainability, 17(12), 5494. https://doi.org/10.3390/su17125494
European Commission. (2022). Direct energy use in the EU livestock sector: A review recommending energy efficiency measures and renewable energy sources adoption. EU-FarmBook Platform.
Ghasemi-Mobtaker, H., Mostashari-Rad, F., & Saber, Z. (2022). A comparative study of energy consumption and environmental impacts of poultry production systems in Iran. Journal of Environmental Management, 302, 114-126.
Grzinic, G., Piotrowicz-Cieślak, A., Klimkowicz-Pawlas, A., Górny, R. L., Ławniczek-Wałczyk, A., Piechowicz, L., Olkowska, E., Potrykus, M., Tankiewicz, M., Krupka, M., Siebielec, G., & Wolska, L. (2023). Intensive poultry farming: A review of the impact on the environment and human healthScience of the Total Environment, 858, 160014.
Guba, E. G., & Lincoln, Y. S. (1994). Competing paradigms in qualitative research. In N. K. Denzin & Y. S. Lincoln (Eds.), Handbook of qualitative research (pp. 105-117). Sage.
IRENA. (2020). Renewable power generation costs in 2019. International Renewable Energy Agencyhttps://www.irena.org/publications/2020/Jun/Renewable-Power-Costs-in-2019
Jalali, M., Banakar, A., & Farzaneh, B. (2024). Economic analysis of solar energy used for supplying heating load and electricity required for a poultry houseIranian Journal of Biosystems Engineering, 55(1), 45-62.
Kim, S., Lee, H., Park, J., & Choi, Y. (2024). A study on farmers' acceptance intention of agro photovoltaics: Focusing on the extended Unified Theory of Acceptance and Use of TechnologyKorean Journal of Agricultural Economics, 65(2), 123- 145.
Luthra, S., Kumar, S., Garg, D., & Haleem, A. (2015). Barriers to renewable/sustainable energy technologies adoption: Indian perspectiveRenewable and Sustainable Energy Reviews, 41, 762-776.
Merheb, C. (2025). Site-specific challenges of deploying agrivoltaicsNature Sustainability.
Mohammadi, M. (2021). Application of renewable energies in poultry industry: A case study of poultry farms in Isfahan province. Journal of Renewable Energy Research, 10(1), 22-35.
Mohammadi, Z., Mirdamadi, S. M., Farajollah Hosseini, S. J., & Lashgarara, F. (2020). Qualitative analysis of effective factors on the feasibility of utilizing solar technology in the poultry industryInternational Journal of Environmental Science and Technology, 17, 4859-4870.
Mostafaeipour, A., Qolipour, M., & Rezaei, M. (2019). Energy efficiency and renewable energy status in IranJournal of Cleaner Production, 218, 287-298.
Rogers, E. M. (2003). Diffusion of innovations (5th ed.). Free Press.
Shafiee, Z., Ghatrehsamani, S., & Hosseinzadeh Samani, B. (2026). Solar energy optimization for energy-efficient poultry farming: A multi-climate simulation approach. Environmental Progress & Sustainable Energy, e70383
Shahsavari, A., & Akbari, M. (2018). Potential of solar energy in Iran for carbon dioxide mitigation. International Journal of Environmental Science and Technology, 15(3), 577-586. 15.
Shahzad, S., Abbas, Q., & Khan, A. R. (2023). Analysis of obstacles to adoption of solar energy in emerging economies using spherical fuzzy AHP decision support system: A case of PakistanEnergy Reports, 10, 381-395.
Teagasc. (2025). AgroRES – Solar PV for the poultry sector. Teagasc Agriculture and Food Development Authorityhttps://teagasc.ie/rural-economy/rural-development/poultry/energy/agrores-solar-pv-for-the-poultry-sector/
Tornatzky, L. G., & Fleischer, M. (1990). The processes of technological innovation. Lexington Books.
Vanbaelinghem, L., Costantino, A., Grassauer, F., & Pelletier, N. (2024). Alternative heating, ventilation, and air conditioning (HVAC) system considerations for reducing energy use and emissions in egg industries in temperate and continental climates: A systematic review of current systems, insights, and future directionsSustainability, 16, 4895.
Venkatesh, V., Morris, M. G., Davis, G. B., & Davis, F. D. (2003). User acceptance of information technology: Toward a unified viewMIS Quarterly, 27(3), 425-478.
Waris, I., Hameed, I., & Ahmad, H. (2023). Predicting household sign up for solar energy: An empirical study based on the extended theory of planned behaviorInternational Journal of Energy Sector Management, 17(3), 455-474.
Zhang, X., Wang, Y., & Li, Z. (2022). Environmental impact assessment of renewable energy systems in livestock houses: A review. Science of the Total Environment, 806, 150-165.

  • Receive Date 05 February 2026
  • Revise Date 15 May 2026
  • Accept Date 25 July 2026
  • Publish Date 22 May 2026