Review Article

Impact of climate change on global economy: A comprehensive review

  • Mahalingam Santhosh KUMAR ,
  • Narasimabhrathi Venkatesa PALANICHAMY ,
  • K. M. SHIVAKUMAR ,
  • Mani CHANDRAKUMAR ,
  • Muthuswamy KALPANA ,
  • Dhandapani MURUGANANTHI
Expand
  • aDepartment of Agribusiness Management, Centre for Agricultural and Rural Development Studies, Tamil Nadu Agricultural University, Coimbatore, 641003, India
    bAgricultural College and Research Institute, Tamil Nadu Agricultural University, Coimbatore, 641003, India
    cDepartment of Agricultural Economics, Centre for Agricultural and Rural Development Studies, Tamil Nadu Agricultural University, Coimbatore, 641003, India
    dDirectorate of Agribusiness Development, Tamil Nadu Agricultural University, Coimbatore, 641003, India
* E-mail address: nvpchamy@tnau.ac.in (Narasimabhrathi Venkatesa PALANICHAMY).

Received date: 2024-11-13

  Revised date: 2025-06-13

  Accepted date: 2025-11-23

  Online published: 2026-01-08

Abstract

Climate change has emerged as an important global issue, primarily driven by human activities, affecting ecosystems, societies, and economies worldwide. This review employed a comprehensive narrative analysis that incorporates expertise from policy studies, environmental science, and economics. Targeted keywords are used to systematically search major academic databases. This article explores various aspects of climate change, economic consequences, and the evolving discourse on climate risk. It addresses the association between climate change and several economic variables, such as gross domestic product (GDP), foreign direct investment (FDI), and financial markets. The review highlights the complex relationship among physical risks, transition risks, and approaches to cope with climate change. It examines global climate policies such as the Kyoto Protocol and Paris Agreement. This study also investigates climate risk assessment models like Integrated Assessment Models (IAMs) and how they help understand the economic effect of climate change. Moreover, it explores ways to adapt to and reduce climate change, such as carbon taxes and subsidies. This review focuses on the critical importance of instruments like the Climate Action Tracker in evaluating national and global climate change responses, which serve as a framework for assessing policy effectiveness and progress toward emission targets. By integrating different viewpoints from economics, environmental science, and governance, this review underscores the value of coordinated global action to address the challenges posed by climate change.

Cite this article

Mahalingam Santhosh KUMAR , Narasimabhrathi Venkatesa PALANICHAMY , K. M. SHIVAKUMAR , Mani CHANDRAKUMAR , Muthuswamy KALPANA , Dhandapani MURUGANANTHI . Impact of climate change on global economy: A comprehensive review[J]. Regional Sustainability, 2025 , 6(6) : 100274 . DOI: 10.1016/j.regsus.2025.100274

References

[1] Abatzoglou, J.T., Williams, A.P., 2016. Impact of anthropogenic climate change on wildfire across western US forests. Proc. Natl. Acad. Sci. U. S. A. 113(42), 11770-11775.
[2] Abatzoglou, J.T., Williams, A.P., Barbero, R., 2019. Global emergence of anthropogenic climate change in fire weather indices. Geophys. Res. Lett. 46(1), 326-336.
[3] Abdelzaher, D.M., Martynov, A., Zaher, A.M.A., 2020. Vulnerability to climate change: Are innovative countries in a better position? Res. Int. Bus. Financ. 51, 101098, doi: 10.1016/j.ribaf.2019.101098.
[4] Acharya, V.V., Johnson, T., Sundaresan, S., 2022. Is physical climate risk priced? Evidence from regional variation in exposure to heat stress. In:National Bureau of Economic Research. NBER Working Paper No. w30445. Cambridge, the USA.
[5] Ackerman, F., DeCanio, S.J., Howarth, R.B., 2009. Limitations of integrated assessment models of climate change. Clim. Change. 95(3), 297-315.
[6] Adger, W.N., Arnell, N.W., Tompkins, E.L., 2005. Successful adaptation to climate change across scales. Glob. Environ. Change-Human Policy Dimens. 15(2), 77-86.
[7] Akpalu, W., Arndt, C., Matshe, I., 2015. Introduction to the special issue on the economics of climate change impacts on developing countries: Selected studies on sub-Saharan Africa and South-East Asia. Sustainability. 7(9), 12122-12126.
[8] Alfaro, L., Kalemli-Ozcan, S., Volosovych, V., 2008. Why doesn’t capital flow from rich to poor countries? An empirical investigation. Rev. Econ. Stat. 90(2), 347-368.
[9] Andersson, M., Bolton, P., Samama, F., 2016. Hedging climate risk. Financ. Anal. J. 72(3), 13-32.
[10] Ardia, D., Bluteau, K., Boudt, K., et al., 2023. Climate change concerns and the performance of green vs. brown stocks. Manage. Sci. 69(12), 7607-7632.
[11] Arent,, D.J., Tol, R.S.J., Faust, E., et al., 2015. Key economic sectors and services. In: Field, C.B., Barros, V.R., (eds.). Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Cambridge: Cambridge University Press, 659-708.
[12] Asseng, S., Martre, P., Maiorano, A., et al., 2019. Climate change impact and adaptation for wheat protein. Glob. Change Biol. 25(1), 155-173.
[13] B?ckstrand,, K., Kuyper, J.W., 2024. The Marrakech partnership for global climate action. In: J?rgens, H., Kolleck, N., Goritz, A., (eds.). International Public Administrations in Environmental Governance. Cambridge: Cambridge University Press, 180.
[14] Bandh, S.A., Shafi, S., Peerzada, M., et al., 2021. Multidimensional analysis of global climate change: A review. Environ. Sci. Pollut. Res. 28, 24872-24888.
[15] Bank of England, 2015. The Impact of Climate Change on the UK Insurance Sector. [2024-09-12]. http://www.bankofengland.co.uk/pra/Documents/supervision/activities/pradefra0915.pdf.
[16] Bansal, R., Kiku, D., Ochoa, M., 2015. Climate change and growth risks. In:National Bureau of Economic Research. NBER Working Paper No. w23009. Cambridge, the USA.
[17] Barua, S., Colombage, S., Valenzuela, E., 2020. Climate change impact on foreign direct investment inflows: A dynamic assessment at the global, regional and economic level. SSRN Electronic Journal. 1-40.
[18] Basel Committee on Banking Supervision, 2021. Climate-Related Risk Drivers and their Transmission Channels. [2024-09-14]. https://www.bis.org/bcbs/publ/d517.htm.
[19] Batten, S., 2018. Climate change and the macro-economy:a critical review. In: Bank of England. Working Paper No. 706. London, the UK.
[20] Beirne, J., Renzhi, N., Volz, U., 2021. Bracing for the typhoon: Climate change and sovereign risk in Southeast Asia. Sustain. Dev. 29(3), 537-551.
[21] Benestad, R.E., 2006. Solar Activity and Earth’s Climate. Berlin: Springer, 89-148.
[22] Bjorvatn, K., Eckel, C., 2006. Policy competition for foreign direct investment between asymmetric countries. Eur. Econ. Rev. 50(7), 1891-1907.
[23] Bodansky, D., Brunne?e, J., Rajamani, L., 2017. International Climate Change Law. Oxford: Oxford University Press.
[24] Boitan, I.A., Marchewka-Bartkowiak, K., 2022. Climate change and the pricing of sovereign debt: Insights from European markets. Res. Int. Bus. Financ. 62, 101685, doi: 10.1016/j.ribaf.2022.101685.
[25] Bosello, F., Eboli, F., Pierfederici, R., 2012. Assessing the economic impacts of climate change. In: Fondazione Eni Enrico Mattei. FEEM Working or Discussion Paper. Venice.
[26] Buchner, B., Brown, J., Corfee-Morlot, J., 2011. Monitoring and tracking long-term finance to support climate action. In: Organisation for Economic Co-operation and Development. OECD/IEA Climate Change Expert Group Paper No. 2011/03. Paris, France.
[27] Burke, M., Hsiang, S.M., Miguel, E., 2015. Global non-linear effect of temperature on economic production. Nature. 527, 235-239.
[28] Caldecott, B., McDaniels, J., 2014. Financial Dynamics of the Environment: Risks, Impacts, and Barriers to Resilience. Oxford: University of Oxford.
[29] Calice, P., Demekas, D.G., 2024. Just transition:Issues for central banks and financial regulators. In: World Bank Group. Policy Research Working Paper No. 10685. Washington, the USA.
[30] Campiglio, E., van der Ploeg, F., 2021. Macrofinancial risks of the transition to a low-carbon economy. Rev. Env. Econ. Policy. 16(2), 173-195.
[31] Capelle-Blancard, G., Crifo, P., Diaye, M.A., et al., 2019. Sovereign bond yield spreads and sustainability: An empirical analysis of OECD countries. J. Bank Financ. 98, 156-169.
[32] Carattini, S., Heutel, G., Melkadze, G., 2023. Climate policy, financial frictions, and transition risk. Rev. Econ. Dyn. 51, 778-794.
[33] Carney, M., 2015. Breaking the Tragedy of the Horizon—Climate Change and Financial Stability. [2024-09-23]. https://www.bankofengland.co.uk/speech/2015/breaking-the-tragedy-of-the-horizon-climate-change-and-financial-stability.
[34] Cavusgil, S.T., Deligonul, S., Ghauri, P.N., et al., 2020. Risk in international business and its mitigation. J. World Bus. 55(2), 101078, doi: 10.1016/j.jwb.2020.101078.
[35] Cepni, O., Demirer, R., Rognone, L., 2022. Hedging climate risks with green assets. Econ. Lett. 212, 110312, doi: 10.1016/j.econlet.2022.110312.
[36] Cevik, S., Jalles, J.T., 2022. This changes everything: Climate shocks and sovereign bonds. Energy Econ. 107, 105856, doi: 10.1016/j.eneco.2022.105856.
[37] Chateau, J., Dang, G., MacDonald, M., et al., 2023. A Framework for Climate Change Mitigation in India. Washington: International Monetary Fund.
[38] Cheng, L.K., Kwan, Y.K., 2000. What are the determinants of the location of foreign direct investment? The Chinese experience. J. Int. Econ. 51(2), 379-400.
[39] Cheshmehzangi,, A., Dawodu, A., 2018. Introduction:Climate change and cities—perspectives, planning and people. In: Cheshmehzangi, A., Dawodu, A., (eds.). Sustainable Urban Development in the Age of Climate Change. Singapore: Springer, 1-22.
[40] Císcar, J.C., Saveyn, B., van Regemorter, D., 2012. Economic modelling of climate impacts: A partial review. Review of Business and Economic Literature. 57(2), 144-157.
[41] Clarke, B., Otto, F., Stuart-Smith, R., et al., 2022. Extreme weather impacts of climate change: an attribution perspective. Environ. Res. Clim. 1, 012001, doi: 10.1088/2752-5295/ac6e7d.
[42] Climate Action Tracker, 2019. Warming Projections Global Update. [2024-09-19]. https://climateactiontracker.org/documents/644/CAT_2019-09-19_BriefingUNSG_WarmingProjectionsGlobalUpdate_Sept2019.pdf.
[43] Cline, W.R., 1992. The Economics of Global Warming. Washington: Institute for International Economics.
[44] Covington, H., Thamotheram, R., 2015. The case for forceful stewardship part 1: The financial risk from global warming. SSRN Electronic Journal. 1, 2-19.
[45] Crifo, P., Diaye, M.A., Oueghlissi, R., 2017. The effect of countries’ ESG ratings on their sovereign borrowing costs. Q. Rev. Econ. Financ. 66, 13-20.
[46] Day, E., Fankhauser, S., Kingsmill, N., et al., 2019. Upholding labour productivity under climate change: An assessment of adaptation options. Clim. Policy. 19(3), 367-385.
[47] Dellink, R., Lanzi, E., Chateau, J., et al., 2014. Consequences of climate change damages for economic growth. In: Organisation for Economic Co-operation and Development. OECD Economics Department Working Papers. No. 1135. Paris, France.
[48] Di Pietro Paolo,, L., 2020. From the Cancun Adaptation Framework to the Paris Agreement. In: Bueno Rubial, M., Siegele, L., (eds.). Negotiating Climate Change Adaptation. Cham: Springer, 85-94.
[49] Diaz, D., Moore, F., 2017. Quantifying the economic risks of climate change. Nat. Clim. Chang. 7(11), 774-782.
[50] Dietz, S., Bowen, A., Dixon, C., et al., 2016. Climate value at risk of global financial assets. Nat. Clim. Chang. 6(7), 676-679.
[51] Dixon, J., Bell, K., Brush, S., 2022. Which way to net zero? A comparative analysis of seven UK 2050 decarbonisation pathways. Renew. Sustain. Energy Transit. 2, 100016, doi: 10.1016/j.rset.2021.100016.
[52] Dunn, R.J.H., Sandford, C., Kendon, M., et al., 2023. Global and regional climate in 2022. Weather. 78(12), 328-336.
[53] Dunning, J.H., 1977. Trade, location of economic activity and the MNE:A search for an eclectic approach. In: Ohlin, B., Hesselborn, P.O., Wijkman, P.M., (eds.). The International Allocation of Economic Activity: Proceedings of a Nobel Symposium Held at Stockholm. London: Macmillan, 395-418.
[54] Eggleton, T., 2012. A Short Introduction to Climate Change. Cambridge: Cambridge University Press.
[55] Engle, R.F., Giglio, S., Kelly, B., et al., 2020. Hedging climate change news. Rev. Financ. Stud. 33(3), 1184-1216.
[56] Feliciano, D., Recha, J., Ambaw, G., 2022. Assessment of agricultural emissions, climate change mitigation and adaptation practices in Ethiopia. Clim. Policy. 22(4), 427-444.
[57] FitzRoy, F.R., Papyrakis, E., 2016. An Introduction to Climate Change Economics and Policy. London: Routledge.
[58] Flachsland, C., Pahle, M., Burtraw, D., et al., 2020. How to avoid history repeating itself: The case for an EU Emissions Trading System (EU ETS) price floor revisited. Clim. Policy. 20(1), 133-142.
[59] Friedlingstein, P., O’Sullivan, M., Jones, M.W., et al., 2023. Global Carbon Budget 2023. Earth Syst. Sci. Data. 15(12), 5301-5369.
[60] Gampe, D., Zscheischler, J., Reichstein, M., et al., 2021. Increasing impact of warm droughts on northern ecosystem productivity over recent decades. Nat. Clim. Chang. 11(9), 772-779.
[61] Gillingham, K., Nordhaus, W.D., Anthoff, D., et al., 2015. Modeling uncertainty in climate change: A multi-model comparison. In: National Bureau of Economic Research. NBER Working Paper No. w21637. Cambridge, the USA.
[62] Gopalan, S., Gupta, B., Rajan, R.S., 2023. Do climate risks influence foreign direct investment inflows to emerging and developing economies? Clim. Policy. 23(6), 722-734.
[63] Greenhill, L., Kenter, J.O., Dannevig, H., 2020. Adaptation to climate change-related ocean acidification: An adaptive governance approach. Ocean Coastal Manage. 191, 105176, doi: 10.1016/j.ocecoaman.2020.105176.
[64] Grubb, M., Wieners, C., Yang, P., 2021. Modeling myths: On DICE and dynamic realism in integrated assessment models of climate change mitigation. Wiley Interdiscip. Rev.-Clim. Chang. 12(3), e698, doi: 10.1002/wcc.698.
[65] Grunewald, S.N., 2023. Macroprudential policies and climate risks. SSRN Electronic Journal. 19, 4327142, doi: 10.2139/ssrn.4327142.
[66] Hallegatte, S., Rentschler, J., Rozenberg, J., 2020. Adaptation Principles: A Guide for Designing Strategies for Climate Change Adaptation and Resilience. Washington: World Bank.
[67] Han, J., Dai, H., Gu, Z.L., 2021. Sandstorms and desertification in Mongolia, an example of future climate events: A review. Environ. Chem. Lett. 19(6), 4063-4073.
[68] Havukainen,, M., Kahiluoto, H., 2021. Katowice climate negotiations. In: Idowu, S.O., Schmidpeter, R., Capaldi, N., (eds.). Encyclopedia of Sustainable Management. Cham: Springer, 1-6.
[69] H?hne,, N., Kuramochi, T., Warnecke, C., et al., 2015. The Paris Agreement:Resolving the inconsistency between global goals and national contributions. In: Depledge, J., Vi?uales, J.E., Lees, E., (eds.). Climate Policy after the 2015 Paris Climate Conference. London: Routledge, 30-46.
[70] Hope, C., Anderson, J., Wenman, P., 1993. Policy analysis of the greenhouse effect: An application of the PAGE model. Energy Policy. 21(3), 327-338.
[71] Huang, H.H., Kerstein, J., Wang, C., 2018. The impact of climate risk on firm performance and financing choices: An international comparison. J. Int. Bus. Stud. 49(5), 633-656.
[72] Iancu, T., Tudor, V.C., Dumitru, E.A., et al., 2022. A scientometric analysis of climate change adaptation studies. Sustainability. 14(19), 12945, doi: 10.3390/su141912945.
[73] Icaza, D., Vallejo-Ramirez, D., Guerrero Granda, C., et al., 2024. Challenges, roadmaps and smart energy transition towards 100% renewable energy markets in American islands: A review. Energies. 17(5), 1059, doi: 10.3390/en17051059.
[74] Interagency Working Group on Social Cost of Carbon, 2010. Social Cost of Carbon for Regulatory Impact Analysis under Executive Order 12866. Washington: Whitehouse Council of Economic Advisors.
[75] IPCC (Intergovernmental Panel on Climate Change), 2007. Climate Change 2007: The Physical Science Basis. Geneva: IPCC.
[76] IPCC, 2014a. Climate Change 2014:Synthesis Report. Geneva: IPCC.
[77] IPCC, 2014b. AR5 Climate Change 2014: Mitigation of Climate Change. Geneva: IPCC.
[78] IPCC, 2018. Global Warming of 1.5°C. Geneva: IPCC.
[79] IPCC, 2019. Special Report on the Ocean and Cryosphere in a Changing Climate. Geneva: IPCC.
[80] Janzen, S., Emerton, L., van der Geest, K., et al., 2021. Assessing losses and damages to ecosystem services: Current state and opportunities for the Warsaw International Mechanism under the UNFCCC. Clim. Policy. 21(7), 912-926.
[81] Jernn?s, M., L?vbrand, E., 2022. Accelerating climate action: The politics of nonstate actor engagement in the Paris regime. Glob. Environ. Polit. 22(3), 38-58.
[82] Jones, M.W., Smith, A., Betts, R., et al., 2020. Climate Change Increases the Risk of Wildfires. [2024-09-13]. https://sciencebrief.org/briefs/wildfires.
[83] Jones,, R., Boer, R., Magezi, S., et al., 2005. Assessing current climate risks. In: Lim, B., Spanger-Siegfried, E., Burton, I., (eds.). Adaptation Policy Frameworks for Climate Change: Developing Strategies, Policies and Measures. Cambridge: Cambridge University Press, 91-117.
[84] Julio, B., Yook, Y., 2016. Policy uncertainty, irreversibility, and cross-border flows of capital. J. Int. Econ. 103, 13-26.
[85] Kaján, E., Saarinen, J., 2013. Tourism, climate change and adaptation: A review. Curr. Issues Tour. 16(2), 167-195.
[86] Kirk, N.A., Cradock-Henry, N.A., 2022. Land management change as adaptation to climate and other stressors: A systematic review of decision contexts using values-rules-knowledge. Land. 11(6), 791, doi: 10.3390/land11060791.
[87] Kirsch, S., 2021. Talanoa dialogue at UN climate change meetings: The extraordinary encompassment of a scale‐climbing Pacific speech genre. Oceania. 91(3), 330-348.
[88] Kitetu, G.M., Ko, J.H., 2022. United States Re-enters the 2015 Paris Climate Agreement: The Unexpected Twists and the Opportunity Costs? A CGE Approach. [2024-09-13]. https://ageconsearch.umn.edu/record/333503/?v=pdf.
[89] Kling, G., Lo, Y.C., Murinde, V., et al., 2025. Climate vulnerability and the cost of debt. Oxford Open Economics. 4(1), 1-14.
[90] Kompas, T., Pham, V.H., Che, T.N., 2018. The effects of climate change on GDP by country and the global economic gains from complying with the Paris Climate Accord. Earth Future. 6(8), 1153-1173.
[91] Kreft, S., Eckstein, D., 2013. Global Climate Risk Index 2014. Bonn: Germanwatch.
[92] Kumar,, V., Ranjan, D., Verma, K., 2021. Global climate change:The loop between cause and impact. In: Singh, S., Singh, P., Selvasembian, R., (eds.). Global Climate Change. Amsterdam: Elsevier, 187-211.
[93] Lara, á., Moral, L.D., 2022. Nature-based solutions to hydro-climatic risks: Barriers and triggers for their implementation in Seville (Spain). Land. 11(6), 868, doi: 10.3390/land11060868.
[94] Leahy, D., Montagna, C., 2000. Unionisation and foreign direct investment: Challenging conventional wisdom? Econ. J. 110(462), 80-92.
[95] Leal Filho, W., Azeiteiro, U.M., Balogun, A.L., 2021. The influence of ecosystems services depletion to climate change adaptation efforts in Africa. Sci. Total Environ. 779, 146414, doi: 10.1016/j.scitotenv.2021.146414.
[96] Li, K.X., Zheng, F., Zhu, J., et al., 2024a. El Ni?o and the AMO sparked the astonishingly large margin of warming in the global mean surface temperature in 2023. Adv. Atmos. Sci. 41, 1017-1022.
[97] Li, X., Gallagher, K.P., 2022. Assessing the climate change exposure of foreign direct investment. Nat. Commun. 13, 1451, doi: 10.1038/s41467-022-28975-5.
[98] Li, Z.C., Li, Q.X., Chen, T.Y., 2024b. Record-breaking high-temperature outlook for 2023: An assessment based on the China Global Merged Temperature (CMST) dataset. Adv. Atmos. Sci. 41(2), 369-376.
[99] Lindsey, R., Dahlman, L., 2025. Climate Change: Global Temperature. [2025-05-25]. https://www.climate.gov/news-features/understanding-climate/climate-change-global-temperature.
[100] Martin, V., 2020. Climate changes: Economic impact and implication. Ekonomski Pogledi. 22(2), 51-60.
[101] Maslin, M.A., Lang, J., Harvey, F., 2023. A short history of the successes and failures of the international climate change negotiations. UCL Open Environment. 5, e059, doi: 10.14324/111.444/ucloe.000059.
[102] McKinsey Global Institute, 2020. Climate Risk and Response: Physical Hazards and Socioeconomic Impacts. [2024-09-16]. https://www.mckinsey.com/capabilities/sustainability/our-insights/climate-risk-and-response-physical-hazards-and-socioeconomic-impacts.
[103] Mejia, S.A., 2023. Globalization, foreign direct investment, and climate change: A cross-national analysis of carbon dioxide emissions, 1980-2018. Comp. Sociol. 22(4), 497-514.
[104] Mercure, J.F., Pollitt, H., Edwards, N.R., et al., 2018. Environmental impact assessment for climate change policy with the simulation-based integrated assessment model E3ME-FTT-GENIE. Energy Strateg. Rev. 20, 195-208.
[105] Monasterolo, I., 2020. Climate change and the financial system. Annu. Rev. Resour. Econ. 12, 299-320.
[106] Moore, F.C., Diaz, D., 2015. Temperature impacts on economic growth warrant stringent mitigation policy. Nat. Clim. Chang. 5, 127-131.
[107] Mountford, H., Waskow, D., Gonzalez, L., et al., 2021. COP26: Key Outcomes from the UN Climate Talks in Glasgow. [2024-09-17]. https://www.wri.org/insights/cop26-key-outcomes-un-climate-talks-glasgow.
[108] Munich, Re, 2020. Risks Posed by Natural Disasters. [2024-09-23]. https://www.munichre.com/en/risks/natural-disasters-losses-are-trendingupwards.html.
[109] NCEI (National Centers for Environmental Information), 2018. Global Climate Report. [2024-09-17]. https://www.ncei.noaa.gov/access/monitoring/monthly-report/global/201813.
[110] Ndue, K., Pál, G., 2022. Life cycle assessment perspective for sectoral adaptation to climate change: Environmental impact assessment of pig production. Land. 11(6), 827, doi: 10.3390/land11060827.
[111] Neumann, J.E., Mendelsohn, R., 1999. The Impact of Climate Change on the United States Economy. Cambridge: Cambridge University Press.
[112] NGFS (Network for Greening the Financial System), 2019. A call for action:Climate change as a source of financial risk. In: Network for Greening the Financial System. NGFS Report. Paris, France.
[113] NGFS, 2020. Technical Supplement to the Guide on Scenario Analysis. Paris: Network for Greening the Financial System (NGFS).
[114] Nordhaus, W.D., 1991. To slow or not to slow: The economics of the greenhouse effect. The Economic Journal. 101(407), 920-937.
[115] Nordhaus, W.D., 2018. Projections and uncertainties about climate change in an era of minimal climate policies. Am. Econ. J.-Econ. Policy. 10(3), 333-360.
[116] Occhipinti,, Z., Verona, R., 2020. Kyoto protocol (KP). In: Leal Filho, W., Azul, A.M., Brandli, L., (eds.). Climate Action. Cham: Springer, 605-617.
[117] Okafor, L.E., Hassan, M.K., Rashid, M., et al., 2022. Risk dimensions, risk clusters, and foreign direct investments in developing countries. Int. Rev. Econ. Financ. 82, 636-649.
[118] Olaru, B.G., B?nacu, C.S., 2018. Perspectives regarding the impact of climate change on world economy. The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science. 41(3), 63-68.
[119] Popkova, E.G., Shi, X.P., 2022. Economics of climate change: Global trends, country specifics and digital perspectives of climate action. Frontiers in Environmental Economics. 1, 935368, doi: 0.3389/frevc.2022.935368.
[120] Rahman, S., Anik, A.R., Sarker, J.R., 2022. Climate, environment and socio-economic drivers of global agricultural productivity growth. Land. 11(4), 512, doi: 10.3390/land11040512.
[121] Reddy, B.S., Assenza, G.B., 2009. Climate change—A developing country perspective. Curr. Sci. 97(1), 50-62.
[122] Robins, N., 2014. Integrating environmental risks into asset valuations:The potential for stranded assets and the implications for long-term investors. In: International Institute for Sustainable Development. IISD Report. Winnipeg, Canada.
[123] Rogelj, J., Den Elzen, M., H?hne, N., et al., 2016. Paris Agreement climate proposals need a boost to keep warming well below 2°C. Nature. 534(7609), 631-639.
[124] Roson, R., van der Mensbrugghe, D., 2012. Climate change and economic growth: Impacts and interactions. International Journal of Sustainable Economy. 4(3), 270-285.
[125] Rossati, D., 2021. A question of value: On the legality of using Kyoto Protocol units under the Paris Agreement. Clim. Law. 11(3-4), 298-321.
[126] Sarkodie, S.A., Adams, S., Leirvik, T., 2020. Foreign direct investment and renewable energy in climate change mitigation: Does governance matter? J. Clean Prod. 263, 121262, doi: 10.1016/j.jclepro.2020.121262.
[127] Schmidt-Thomé, P., 2017. Towards applying climate change adaptation. Investig. Geogr-Spain. 67, 49-60.
[128] Semieniuk, G., Campiglio, E., Mercure, J.F., et al., 2021. Low-carbon transition risks for finance. Wiley Interdiscip. Rev.-Clim. Chang. 12(1), e678, doi: 10.1002/wcc.678.
[129] Shear, F., Ashraf, B.N., Butt, S., 2023. Sensing the heat: Climate change vulnerability and foreign direct investment inflows. Res. Int. Bus. Financ. 66, 102005, doi: 10.1016/j.ribaf.2023.102005.
[130] Song, F.F., Zhang, G.J., Ramanathan, V., et al., 2022. Trends in surface equivalent potential temperature: A more comprehensive metric for global warming and weather extremes. Proc. Natl. Acad. Sci. U. S. A. 119(6), e2117832119, doi: 10.1073/pnas.2117832119.
[131] Stahlke, T., 2020. The impact of the Clean Development Mechanism on developing countries’ commitment to mitigate climate change and its implications for the future. Mitig. Adapt. Strateg. Glob. Chang. 25, 107-125.
[132] Streck, C., 2020. The mirage of Madrid: Elusive ambition on the horizon. Clim. Policy. 20(2), 143-148.
[133] Thalheimer,, L., Webersik, C., 2020. Climate change, conflicts and migration. In: Kreiger, T., Panke, D., Pregernig, M., (eds.). Environmental Conflicts, Migration and Governance. Bristol: Bristol University Press, 59-82.
[134] Tol, R.S.J., 1995. The damage costs of climate change toward more comprehensive calculations. Environ. Resour. Econ. 5(4), 353-374.
[135] Tol, R.S.J., 2009. The economic effects of climate change. J. Econ. Perspect. 23(2), 29-51.
[136] Tosun, J., 2022. Addressing climate change through climate action. Climate Action. 1(1), 1-8.
[137] Ummenhofer, C.C., Meehl, G.A., 2017. Extreme weather and climate events with ecological relevance: a review. Philos. Trans. R. Soc. B-Biol. Sci. 372(1723), 20160135, doi: 10.1098/rstb.2016.0135.
[138] United, Nations, Department of Economic and Social Affairs, Population, Division, 2022. World Population Prospects 2022. New York: United Nations.
[139] Valjarevi?, A., Morar, C., Brasanac-Bosanac, L., et al., 2025. Sustainable land use in Moldova: GIS & remote sensing of forests and crops. Land Use Pol. 152, 107515, doi: 10.1016/j.landusepol.2025.107515.
[140] Volz, U., Beirne, J., Ambrosio Preudhomme, N., et al., 2020. Climate change and sovereign risk. In: SOAS University of London. Project Report. London, the UK.
[141] Weber, E.U., Stern, P.C., 2011. Public understanding of climate change in the United States. Am. Psychol. 66(4), 315-328.
[142] Wolf, S., Teitge, J., Mielke, J., et al., 2021. The European Green Deal—More than climate neutrality. Intereconomics. 56, 99-107.
[143] World, Bank, 2018. Groundswell: Preparing for Internal Climate Migration. [2024-09-19]. https://www.worldbank.org/en/news/infographic/2018/03/19/groundswell---preparing-for-internal-climate-migration.
[144] Wu, L.H., Bai, X.Y., Tian, Y.C., et al., 2023. Temperature evolution of cooling zones on global land surface since the 1900s. Atmosphere. 14(7), 1156, doi: 10.3390/atmos14071156.
[145] Xing, Z.P., Wang, Y.W., 2022. Climate risk, climate risk distance and foreign direct investment. Int. J. Clim. Chang. Strateg. Manag. 15(1), 41-57.
[146] Yan, Z.F., Sui, S.T., Wu, F.W., et al., 2023. The impact of outward foreign direct investment on product quality and export: Evidence from China. Sustainability. 15(5), 4227, doi: 10.3390/su15054227.
[147] You, Q.L., Cai, Z.Y., Pepin, N., et al., 2021. Warming amplification over the Arctic Pole and Third Pole: Trends, mechanisms and consequences. Earth-Sci. Rev. 217, 103625, doi: 10.1016/j.earscirev.2021.103625.
[148] Zhang, S.Y., 2022. Are investors sensitive to climate-related transition and physical risks? Evidence from global stock markets. Res. Int. Bus. Financ. 62, 101710, doi: 10.1016/j.ribaf.2022.101710.
[149] Zheng, F., Hu, S., Ma, J.H., et al., 2023. Will the globe encounter the warmest winter after the hottest summer in 2023? Adv. Atmos. Sci. 41(2), 321-326.
Outlines

/