Research Article
Open Access Peer-reviewed

Climate Change Readiness in Arab Universities: Policy Paths for the Future of Climate Action

Mohamed Ramadan A. Rezk1, Leonardo Piccinetti2, Donatella Santoro3, Nahed Salem1, Trevor Uyi Omoruyi4, Mohammed Mahgoub Hassan5,, Alaa A. El-Bary6

1Academy of Scientific Research and Technology (ASRT), 11516, Cairo, Egypt

2Sustainable Innovation Technology Services Ltd, Ducart Suite, Castletroy, Ireland

3REDINN, Italy

4Chester Business School, Queens Park Campus, Chester, United Kingdom

5National Center for Research, Ministry of Higher Education and Scientific Research, - Sudan

6Arab Academy for Science, Technology and Maritime Transport, P.O.Box 1029, Alexandria, Egypt

Journal of Business and Management Sciences. 2025, 13(5), 169-183. DOI: 10.12691/jbms-13-5-2
Received October 01, 2025; Revised November 01, 2025; Accepted November 09, 2025

Abstract

Climate change is a growing global crisis with far-reaching implications for environmental, economic, social, and public health stability. The Arab region, comprising 22 countries in the Middle East and North Africa (MENA), faces unique challenges due to its arid climate, limited freshwater resources, and reliance on climate-sensitive sectors such as agriculture and energy. Rising temperatures, intensified heatwaves, and increasing water scarcity have already begun to disrupt ecosystems, exacerbate food insecurity, and challenge the region’s socio-economic development. Given the region’s projected population growth and the expected decline in agricultural productivity, it is crucial to identify sustainable pathways to address these interconnected crises. Universities, as key institutions of knowledge, research, and societal engagement, hold significant potential in tackling climate change and driving adaptation and mitigation strategies. This paper examines how Arab universities can contribute more effectively to climate action, focusing on their roles in research, curriculum development, sustainable campus operations, and community outreach. Through a combination of PEST (Political, Economic, Social, and Technological) analysis, expert surveys, and Policy Pathways Mapping, the study assesses the factors influencing the ability of Arab universities to engage in climate change initiatives. It identifies key barriers, including inadequate funding, fragmented research efforts, and weak policy integration, as well as opportunities for improving institutional responses to climate challenges. The paper proposes strategic policy pathways that emphasize the importance of regional collaboration, sustainable financing, and the integration of climate change into educational frameworks. It further outlines actionable recommendations for enhancing universities' roles in climate change mitigation and adaptation, such as fostering interdisciplinary research, expanding climate literacy, adopting green campus practices, and strengthening community engagement. By implementing these policy pathways, Arab universities can become critical drivers of change in the region’s climate response efforts, advancing both national and global climate goals. The paper concludes with a call for a comprehensive, coordinated approach to align higher education institutions with climate action frameworks and policies, ensuring that universities fulfill their potential as leaders in climate resilience and sustainability.

Keywords:

Climate change, Arab universities, PEST analysis, sustainable development
[1]  Kumekawa, I. (2024). Lessons from Environmental and Economic Crises. Enterprise & Society, 25(2), 628–636.View Article
 
[2]  Galaz, V. (2020). Climate and environmental crises. Oxford Research Encyclopedia of Politics.View Article
 
[3]  Rezk, M. R. A., Piccinetti, L., Radwan, A. et al. (2020). Egypt beyond covid 19, the best and the worst-case scenarios. Entrepreneurship and Sustainability Issues, 8(2), 147-162.View Article
 
[4]  Rezk, M. R. A., Salem, N. M., Radwan, A., Piccinetti, L., Elshayeb, Y., Sakr, M. M., BenAmara, A., & Abdel-Fattah, Y. R. (2022). The big picture of climate change research in the Arab world: Insights from bibliometric analysis. Entrepreneurship and Sustainability Issues, 10(2), 653–671.View Article  PubMed
 
[5]  Muluneh, M. G. (2021). Impact of climate change on biodiversity and food security: a global perspective—a review article. Agriculture & Food Security, 10(1).View Article
 
[6]  Rani, P., & Reddy, R. G. (2023). Climate change and its impact on food security. International Journal of Environment and Climate Change, 13(3), 104–108.View Article
 
[7]  Ragab, R. (2023). The global challenges facing the water resources and irrigation sector. E3S Web of Conferences, 368, 03002.View Article
 
[8]  Nie, P., Zhao, K., Ma, D., Liu, H., Amin, S., & Yasin, I. (2024). Global Climate Change, Mental Health, and Socio-Economic Stressors: Toward Sustainable Interventions across Regions. Sustainability, 16(19), 8693.View Article
 
[9]  Zaouaq, K. (2024). Climate change, conflicts, and forced migration in the Middle East (2006-2022). WIMAYA, 5(02), 98–107.View Article
 
[10]  Waha, K., Krummenauer, L., Adams, S., Aich, V., Baarsch, F., Coumou, D., Fader, M., Hoff, H., Jobbins, G., Marcus, R., Mengel, M., Otto, I. M., Perrette, M., Rocha, M., Robinson, A., & Schleussner, C. (2017). Climate change impacts in the Middle East and Northern Africa (MENA) region and their implications for vulnerable population groups. Regional Environmental Change, 17(6), 1623–1638.View Article
 
[11]  Gayar, A. E., & Hamed, Y. (2017). Climate change and water resources management in Arab countries. In Advances in Science, Technology & Innovation/Advances in science, technology & innovation (pp. 89–91).View Article
 
[12]  El-nahlawy, H. (2023, September 23). Rising to the challenge: Climate action in the Arab region. UNDP. Retrieved May 1, 2025, from https://www.undp.org/arab-states/stories/rising-challenge-climate-action-arab-region.
 
[13]  Bindoff, N. L., Stott, P. A., AchutaRao, K. M., Allen, M. R., Gillett, N., Gutzler, D., et al. (2013). Detection and attribution of climate change: From global to regional. In T. F. Stocker, D. Qin, G.‐K. Plattner, M. Tignor, S. K. Allen, J. Boschung, et al. (Eds.), Climate Change 2013: ThePhysical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change (pp. 867–952). Cambridge University Press.View Article
 
[14]  Olonscheck, D., Schurer, A. P., Lücke, L., & Hegerl, G. C. (2021). Large-scale emergence of regional changes in year-to-year temperature variability by the end of the 21st century. Nature Communications, 12(1).View Article  PubMed
 
[15]  Almazroui, M., Alowaibdi, T., & Hasanean, H. (2022). Dynamical downscaled CMIP5 scenario–based future climate changes over the Arabian Peninsula. Arabian Journal of Geosciences, 15(10).View Article
 
[16]  Ntoumos, A., Hadjinicolaou, P., Zittis, G., Proestos, Y., & Lelieveld, J. (2022). Projected air temperature extremes and maximum heat conditions over the Middle-East-North Africa (MENA) region. Earth Systems and Environment, 6(2), 343–359.View Article
 
[17]  Zhao, L., Oleson, K., Bou-Zeid, E., Krayenhoff, E. S., Bray, A., Zhu, Q., Zheng, Z., Chen, C., & Oppenheimer, M. (2021). Global multi-model projections of local urban climates. Nature Climate Change, 11(2), 152–157.View Article
 
[18]  Raymond, C., Matthews, T., & Horton, R. M. (2020). The emergence of heat and humidity too severe for human tolerance. Science Advances, 6(19).View Article  PubMed
 
[19]  Safieddine, S., Clerbaux, C., Clarisse, L., Whitburn, S., & Eltahir, E. a. B. (2022). Present and future land surface and wet bulb temperatures in the Arabian Peninsula. Environmental Research Letters, 17(4), 044029.View Article
 
[20]  Al-Maliki, L. A., Al-Mamoori, S. K., Al-Ansari, N., El-Tawel, K., & Comair, F. G. (2022). Climate change impact on water resources of Iraq (a review of literature). IOP Conference Series Earth and Environmental Science, 1120(1), 012025.View Article
 
[21]  Alghamdi, A. S. (2022). Recent climatology (1991–2020) and trends in local warm and cold season extreme temperature days and nights in Arabia. International Journal of Environmental Research and Public Health, 19(5), 2506.View Article  PubMed
 
[22]  Qasem, R. H. M., & Scholz, M. (2025). Climate change impact on resources in the MENA region: a systematic and critical review. Physics and Chemistry of the Earth Parts a/B/C, 103936.View Article
 
[23]  Lung, T., Dosio, A., Becker, W., Lavalle, C., & Bouwer, L. M. (2013). Assessing the influence of climate model uncertainty on EU-wide climate change impact indicators. Climatic Change, 120(1–2), 211–227.View Article
 
[24]  UNDP. (2018). Climate change adaptation in the Arab States. United Nations Development Programme. https:// www.undp.org/ publications/climate-change-adaptation-arab-states.
 
[25]  Borgomeo, E., Fawzi, N. A., Hall, J. W., Jägerskog, A., Nicol, A., Sadoff, C. W., Salman, M., Santos, N., & Talhami, M. (2020). Tackling the trickle: ensuring sustainable water management in the Arab region. Earth S Future, 8(5).View Article
 
[26]  Derbas, A., Ayyoub, H. Y., Hyarat, T., Hnaif, A., Al-Quraan, R., Al-Serhan, A., Al-Tawil, M., Al-Awamleh, A., Quteshat, W., & Zyoud, I. A. (2025). The role of E-learning in institutions of higher education in achieving the goals of sustainable development in Jordan. PLoS ONE, 20(3), e0319192.View Article  PubMed
 
[27]  ESCWA, 2005. ESCWA Water Development Report 1: Vulnerability of the Region to Socio-Economic Drought. United Nations, New York.
 
[28]  ESCWA. (2022). ESCWA Water Development Report 9: Groundwater in the Arab region. https:// www.unescwa.org/ sites/default/ files/event/ materials/2301673E-ClimateFinance-Water-ArabRegion-PolicyBrief-WEB.pdf? utm_ source= chatgpt. com.
 
[29]  Adil, L., Eckstein, D., Künzel, V., Schäfer, L., & germanwatch. (2025). Climate Risk Index 2025. In A. Goulston (Ed.), Climate Risk Index. Germanwatch e.V. https:// www.germanwatch.org/ sites/ default/ files/2025-02/ Climate% 20Risk% 20Index% 202025.pdf.
 
[30]  Lange, M. A. (2019). Impacts of climate change on the Eastern Mediterranean and the Middle East and North Africa region and the Water–Energy Nexus. Atmosphere, 10(8), 455.View Article
 
[31]  Rahman, M. M., Akter, R., Bari, J. B. A., Hasan, M. A., Rahman, M. S., Shoaib, S. A., Shatnawi, Z. N., Alshayeb, A. F., Shalabi, F. I., Rahman, A., Alsanad, M. A., & Rahman, S. M. (2022). Analysis of climate change impacts on the food system security of Saudi Arabia. Sustainability, 14(21), 14482.View Article
 
[32]  United Nations. (2023). Goal 13 | Department of Economic and Social Affairs. Retrieved from https://sdgs.un.org/goals/goal13.
 
[33]  UNFCCC, 2015. Adoption of the Paris Agreement, 12 December. Paris. Available at: https:// unfccc.int/ resource/ docs/2015/ cop21/eng/l09r01.pdf. (Accessed 1 May 2025).
 
[34]  Leal Filho, W., Azeiteiro, U. M., Balogun, A. L., Setti, A. F. F., Mucova, S. A., Ayal, D., Totin, E., Lydia, A. M., Kalaba, F. K., & Oguge, N. O. (2021). The influence of ecosystems services depletion to climate change adaptation efforts in Africa. Science of the Total Environment, 779, 146414.View Article  PubMed
 
[35]  Shields, R. (2019). The sustainability of international higher education: Student mobility and global climate change. Journal of Cleaner Production, 217, 594–602.View Article
 
[36]  McMahan, B., & Gerlak, A. K. (2020). Climate risk assessment and cascading impacts: Risks and opportunities for an electrical utility in the U.S. Southwest. Climate Risk Management, 29, 100240.View Article
 
[37]  Filho, W. L., Ayal, D. Y., Wall, T., Shiel, C., Paco, A., Pace, P., Mifsud, M., Salvia, A. L., Skouloudis, A., Moggi, S., LeVasseur, T., Antonio, G. V., Azeiteiro, U. M., Ioannis, N., & Kovaleva, M. (2023). An assessment of attitudes and perceptions of international university students on climate change. Climate Risk Management, 39, 100486.View Article
 
[38]  Sun, L., Kaufman, M. F., Sirk, E. A., Durga, S., Mahowald, N. M., & You, F. (2022). COVID-19 impact on an academic Institution’s greenhouse gas inventory: The case of Cornell University. Journal of Cleaner Production, 363, 132440.View Article
 
[39]  Aung, P. N., & Hallinger, P. (2022). The intellectual structure of the literature on sustainability leadership in higher education: an author co-citation analysis. International Journal of Educational Management, 36(5), 784–799.View Article
 
[40]  Roca-Barcelo, A., Gaines, A. M., Sheehan, A., Thompson, R., Chamberlain, R. C., Bos, B., & Belcher, R. N. (2021). Making academia environmentally sustainable: a student perspective. The Lancet Planetary Health, 5(9), e576–e577.View Article
 
[41]  UNESCO. (2024). Education and climate change Learning to act for people and planet.
 
[42]  Moldovan, R., Rus, T., Beu, D., Albu, H., Domnița, F., & Moldovan, A. (2025). From assessment to action: A strategic approach to carbon management for climate neutrality in higher education. Sustainable Futures, 10, 101354.View Article
 
[43]  Raafat, Y. (2025). National Efforts in Climate Change Adaptation in Agriculture: Assessing Policies and Practices in Egypt’s Nile Delta, Master's Thesis, the American University in Cairo. AUC Knowledge Fountain. https://fount.aucegypt.edu/etds/240.
 
[44]  University of Jordan. (2025). University of Jordan sustainability strategy and action plans 2025–2050 (Deans’ Council Decision No. 17/3/2025). Retrieved from https:// ju.edu.jo/ Documents/ University%20of%20Jordan%20Sustainability%20Strategy%20and%20Action%20Plans%202025.pdf.
 
[45]  Şen, Z. (2015). Climate change, droughts, and water resources. In Elsevier eBooks (pp. 321–391).View Article
 
[46]  Kumari, P., Yahmadi, R., Mumtaz, F., Vega, L. F., Ceriani, A., Tribuzio, R., Dumée, L. F., & Decarlis, A. (2024). CO2 capture via subsurface mineralization geological settings and engineering perspectives towards long-term storage and decarbonization in the Middle East. Carbon Capture Science & Technology, 13, 100293.View Article
 
[47]  Zaidan, E., Wazen, C., & Al-Saidi, M. (2025). Vehicles for change? Public universities, development plans, and the post-carbon transition in the Gulf states. Research in Globalization, 100294.View Article
 
[48]  Mahameed, M. A., Riaz, U., Aldoob, M. S., & Halari, A. (2023). The implementation of sustainability practices in Arab higher education institutions. Journal of Financial Reporting & Accounting, 23(3), 1161–1185.View Article
 
[49]  American University in Cairo. (2025). Funding Opportunities. Retrieved from https://www.aucegypt.edu/about/sponsored-programs/ funding-opportunities.
 
[50]  Obeid, J., & Gower, A. (2023, December). Mind the gap: Highlighting MENA’s climate finance challenge. SRMG Think. Retrieved from https://www.srmgthink.com/highlighting-menas-climate-finance-challenge?utm_source=chatgpt.com.
 
[51]  Perkins, K. M., Munguia, N., Moure-Eraso, R., Delakowitz, B., Giannetti, B. F., Liu, G., Nurunnabi, M., Will, M., & Velazquez, L. (2018). International perspectives on the pedagogy of climate change. Journal of Cleaner Production, 200, 1043–1052.View Article
 
[52]  Freije, A. M., Hussain, T., & Salman, E. A. (2016). Global warming awareness among the University of Bahrain science students. Journal of the Association of Arab Universities for Basic and Applied Sciences, 22(1), 9–16.View Article
 
[53]  Barbhuiya, S., Das, B. B., & Adak, D. (2024). Roadmap to a net-zero carbon cement sector: Strategies, innovations and policy imperatives. Journal of Environmental Management, 359, 121052.View Article  PubMed
 
[54]  Climate Action Tracker. (2024, April). Saudi Arabia. Retrieved April 13, 2025, from https:// climateactiontracker.org/ countries/ saudi-arabia/.
 
[55]  Filho, W. L., Dinis, M. a. P., Salvia, A. L., Sierra, J., Vasconcelos, H., Henderson-Wilson, C., Diatta, S., Kumar, T. V. L., Meirelles, M. G., & Carvalho, F. (2024). Assessing climate change and health provisions among staff in higher education institutions: A preliminary investigation. PLoS ONE, 19(5), e0304019.View Article  PubMed
 
[56]  Han, X., Hua, E., Engel, B. A., Guan, J., Yin, J., Wu, N., Sun, S., & Wang, Y. (2022). Understanding implications of climate change and socio-economic development for the water-energy-food nexus: A meta-regression analysis. Agricultural Water Management, 269, 107693.View Article
 
[57]  Malik, A., Stenchikov, G., Mostamandi, S., Parajuli, S., Lelieveld, J., Zittis, G., Ahsan, M. S., Atique, L., & Usman, M. (2024). Accelerated historical and future warming in the Middle East and North Africa. Journal of Geophysical Research Atmospheres, 129(22).View Article
 
[58]  SRMG Think. (2023). MENA Forum report: The case for cooperation beyond de-escalation. SRMG Think Research and Advisory. https://www.srmgthink.com/featured-insights/ 121/ mena- forum- reportthe-case-co-operation-beyond-de-escalation.
 
[59]  United Nations ESCWA. (2022). Review of policy brief: Climate finance flows in the Middle East. UNESCWA. https:// www.unescwa.org/sites/default/files/pubs/pdf/climate-finance-needs-flows-arab-region-english.pdf.
 
[60]  World Bank. (2023). World Bank Open Data. Retrieved March 14, 2025, from https:// data.worldbank.org/ indicator/ SP.POP. TOTL? locations=1A.