Can Green Technological Innovation Offset the Environmental Costs of Finance? Insights from OECD Countries

Authors

https://doi.org/10.48313/iee.v1i2.46

Abstract

Advancing ecological sustainability while limiting the harm caused by ecological degradation has emerged as a shared international priority. Moreover, the degree to which specific OECD countries can curb ongoing ecological decline is still not well understood. The present study investigates the interplay among economic growth, Green Technological Innovation (GTI), Financial Development (FD), and Ecological Policy Stringency (EPS), with particular attention to the moderating role of GTI in shaping ecological outcomes. The paper evaluated these dynamic links using panel data from 1990 to 2022 within the frameworks of Environmental Kuznets Curve (EKC) and Load Capacity Curve (LCC) hypotheses. To address this inquiry, the analysis applied the novel Method of Moments Quantile Regression (MMQR). The research outcome disclosed that FD consistently contributes to ecological deterioration across the distribution of environmental outcomes. GTI and EPS exert a uniformly beneficial effect on ecological quality, with stronger improvements observed in higher-degradation regimes. Additionally, the results provide strong evidence for the EKC and LCC hypotheses. More importantly, the interaction term between GTI and FD indicates green innovation mitigates the environmental pressures induced by FD and enhances the capacity of financial systems to support environmental quality. The findings offer actionable insights for policymakers in OECD economies, highlighting that fostering green innovation within financial systems can effectively curb ecological degradation.

Keywords:

Ecological sustainability, Green technological innovation, Financial development, Economic growth

References

  1. [1] Nathaniel, S. P., Solomon, C. J., Khudoykulov, K., & Fakher, H. A. (2025). Linking resource richness, digital economy, and clean energy to ecological footprint and load capacity factor in emerging markets. Natural resources forum. Wiley Online Library. https://doi.org/10.1111/1477-8947.12590

  2. [2] Miyan, M. S., Cheong, C. W. H., Sharif, A., & Afshan, S. (2025). Greening the future: How green finance and innovation shape environmental sustainability in D-8 nations. Sustainable futures, 10, 101168. https://doi.org/10.1016/j.sftr.2025.101168

  3. [3] Jahanger, A., Hossain, M. R., Onwe, J. C., Ogwu, S. O., Awan, A., & Balsalobre-Lorente, D. (2023). Analyzing the N-shaped EKC among top nuclear energy generating nations: A novel dynamic common correlated effects approach. Gondwana research, 116, 73–88. https://doi.org/10.1016/j.gr.2022.12.012

  4. [4] Fakher, H. A., Panahi, M., Emami, K., Peykarjou, K., & Zeraatkish, S. Y. (2021). New insights into development of an environmental-economic model based on a composite environmental quality index: A Comparative analysis of economic growth and environmental quality trend. Environmental energy & economic research, 5(3), 1-24. https://doi.org/10.22097/eeer.2021.280746.1192

  5. [5] Almulhim, A. A., Qamruzzaman, M., & Aljughaiman, A. A. (2025). The influence of green trade openness, natural resources rent, institutional quality, and R&D investment on environmental sustainability in the OECD: Testing the EKC and LCC hypotheses. Frontiers in environmental science, 13, 1572439. https://doi.org/10.3389/fenvs.2025.1572439

  6. [6] Fakher, H. A., Panahi, M., Emami, K., Peykarjou, K., & Zeraatkish, S. Y. (2021). New insight into development of environmental-economic model based on a composite environmental quality index: An application of principal components analysis. Journal of decisions and operations research, 6(2), 183-209. (In Persian). https://doi.org/10.22105/dmor.2021.276820.1334

  7. [7] Sharif, A., Saqib, N., Dong, K., & Khan, S. A. R. (2022). Nexus between green technology innovation, green financing, and CO2 emissions in the G7 countries: The moderating role of social globalisation. Sustainable development, 30(6), 1934–1946. https://doi.org/10.1002/sd.2360

  8. [8] Li, C., Sampene, A. K., Agyeman, F. O., Brenya, R., & Wiredu, J. (2022). The role of green finance and energy innovation in neutralizing environmental pollution: Empirical evidence from the MINT economies. Journal of environmental management, 317, 115500. https://doi.org/10.1016/j.jenvman.2022.115500

  9. [9] Gul, R., & Hussain, S. (2024). Unlocking sustainable futures: Exploring the non-linear linkages between green finance and environmental sustainability in developing countries. Journal of environmental management, 370, 122971. https://doi.org/10.1016/j.jenvman.2024.122971

  10. [10] Fakher, H. A. (2020). Analytical insights on the relationship between economic growth and environmental degradation in framework of EKC hypothesis and various environmental indicators. Innovation management and operational strategies, 1(3), 252-268. (In persian). https://doi.org/10.22105/imos.2021.272348.1032

  11. [11] Awan, A., Sadiq, M., Hassan, S. T., Khan, I., & Khan, N. H. (2022). Combined nonlinear effects of urbanization and economic growth on CO2 emissions in Malaysia. An application of QARDL and KRLS. Urban climate, 46, 101342. https://doi.org/10.1016/j.uclim.2022.101342

  12. [12] Fakher, H. A., Ahmadian, M., Abedi, Z., & Shaygani, B. (2018). Bayesian econometrics approach in determining of effecting factors on pollution in developing countries (based on environmental performance index). Pollution, 4(3), 447–457. https://doi.org/10.22059/poll.2018.243987.335

  13. [13] Dogan, A., & Pata, U. K. (2020). The role of ICT, R&D spending and renewable energy consumption on environmental quality: Testing the LCC hypothesis for G7 countries. Journal of cleaner production, 380, 135038. https://doi.org/10.1016/j.jclepro.2022.135038

  14. [14] Pata, U. K., & Kartal, M. T. (2023). Impact of nuclear and renewable energy sources on environment quality: Testing the EKC and LCC hypotheses for South Korea. Nuclear engineering and technology, 55(2), 587–594. https://doi.org/10.1016/j.net.2022.10.027

  15. [15] Kafeel, K., Zhou, J., Phetkhammai, M., Heyan, L., & Khan, S. (2024). Green innovation and environmental quality in OECD countries: The mediating role of renewable energy and carbon taxes. Environmental science and pollution research, 31(2), 2214–2227.

  16. [16] Sun, Y., Wang, M., Mehmood, U., Wang, Y., & Dan, J. (2025). Technological advancement and inclusive finance: Dual influences on environmental quality in OECD countries. Finance research letters, 72, 106496. https://doi.org/10.1016/j.frl.2024.106496

  17. [17] Nur, T., Topaloglu, E. E., Yilmaz-Ozekenci, S., & Koycu, E. (2025). The impact of energy intensity, renewable energy, and financial development on green growth in OECD countries: Fresh evidence under environmental policy stringency. Energies, 18(7), 1790. https://doi.org/10.3390/en18071790

  18. [18] Machado, J. A. F., & Silva, J. M. C. S. (2019). Quantiles via moments. Journal of econometrics, 213(1), 145–173. https://doi.org/10.1016/j.jeconom.2019.04.009

  19. [19] Rizvi, S. K. A., Naqvi, B., Boubaker, S., & Mirza, N. (2022). The power play of natural gas and crude oil in the move towards the financialization of the energy market. Energy economics, 112, 106131. https://doi.org/10.1016/j.eneco.2022.106131

  20. [20] Fakher, H. A., Abedi, Z., & Shaygani, B. (2018). Investigating the relationship between trade and financial openness with ecological footprint. Economic modeling, 11(40), 49–67. https://sanad.iau.ir/en/Journal/eco/Article/995482

  21. [21] Elatroush, I. (2025). Does financial development influence environmental quality? Evidence from emerging and developing countries. Environment, development and sustainability, 1–51. https://doi.org/10.1007/s10668-024-05873-y

  22. [22] Adebayo, T. S., Eweade, B. S., Özkan, O., & Uzun Ozsahin, D. (2025). Effects of energy security and financial development on load capacity factor in the USA: A wavelet kernel-based regularized least squares approach. Clean technologies and environmental policy, 1–18. https://doi.org/10.1007/s10098-024-03109-1

  23. [23] Nuta, A. C., Abban, O. J., Ayad, H., & Nuta, F. M. (2025). Role of financial development and inclusivity in moderating the environmental effects of human development. Research in international business and finance, 73, 102623. https://doi.org/10.1016/j.ribaf.2024.102623

  24. [24] Fan, L., Usman, M., Haseeb, M., & Kamal, M. (2025). The impact of financial development and energy consumption on ecological footprint in economic complexity-based EKC framework: New evidence from BRICS-T region. Natural resources forum, 49(2), 1536–1559. https://doi.org/10.1111/1477-8947.12448

  25. [25] Ahmad, M., Ahmed, Z., Yang, X., Hussain, N., & Sinha, A. (2022). Financial development and environmental degradation: do human capital and institutional quality make a difference? Gondwana research, 105, 299–310. https://doi.org/10.1016/j.gr.2021.09.012

  26. [26] Horky, F., & Fidrmuc, J. (2024). Financial development and renewable energy adoption in EU and ASEAN countries. Energy economics, 131, 107368. https://doi.org/10.1016/j.eneco.2024.107368

  27. [27] Khan, A., Khan, T., & Ahmad, M. (2025). The role of technological innovation in sustainable growth: Exploring the economic impact of green innovation and renewable energy. Environmental challenges, 18, 101109. https://doi.org/10.1016/j.envc.2025.101109

  28. [28] Liu, Y., Kumar, S., Liu, H., Li, S., & Zhou, Z. (2025). ESG performance, digital transformation, and green innovation. Humanities and social sciences communications, 12(1), 1739. https://doi.org/10.1057/s41599-025-06027-9

  29. [29] He, M., Abbasi, B. N., & Fan, Z. (2024). Education and technological innovation in mitigating CO2 emissions and fostering green economic growth in China: Marginal effects and policy threshold analyses. Journal of environmental management, 370, 122786. https://doi.org/10.1016/j.jenvman.2024.122786

  30. [30] Radulescu, M., Hossain, M. R., Alofaysan, H., & Si Mohammed, K. (2025). Do emission trading systems, green technology, and environmental governance matter for environmental quality? Evidence from the European union. International journal of environmental research, 19(1), 6. https://doi.org/10.1007/s41742-024-00667-6

  31. [31] Sethi, L., Behera, B., & Sethi, N. (2024). Do green finance, green technology innovation, and institutional quality help achieve environmental sustainability? Evidence from the developing economies. Sustainable development, 32(3), 2709–2723. . https://doi.org/https://doi.org/10.1002/sd.2811

  32. [32] Bai, C., Feng, C., Yan, H., Yi, X., Chen, Z., & Wei, W. (2020). Will income inequality influence the abatement effect of renewable energy technological innovation on carbon dioxide emissions? Journal of environmental management, 264, 110482. https://doi.org/10.1016/j.jenvman.2020.110482

  33. [33] Degirmenci, T., Sofuoglu, E., Aydin, M., & Adebayo, T. S. (2025). The role of energy intensity, green energy transition, and environmental policy stringency on environmental sustainability in G7 countries. Clean technologies and environmental policy, 27(7), 2981–2993. https://doi.org/10.1007/s10098-024-02968-y

  34. [34] Cohen, M. A., & Tubb, A. (2018). The impact of environmental regulation on firm and country competitiveness: A meta-analysis of the porter hypothesis. Journal of the association of environmental and resource economists, 5(2), 371–399. https://doi.org/10.1086/695613

  35. [35] Yirong, Q. (2022). Does environmental policy stringency reduce CO2 emissions? Evidence from high-polluted economies. Journal of cleaner production, 341, 130648. https://doi.org/10.1016/j.jclepro.2022.130648

  36. [36] Wang, K., Yan, M., Wang, Y., & Chang, C. P. (2020). The impact of environmental policy stringency on air quality. Atmospheric environment, 231, 117522. https://doi.org/10.1016/j.atmosenv.2020.117522

  37. [37] Global Footprint Network. (2025). Ecological footprint. https://www.footprintnetwork.org/what-biocapacity-measures/

  38. [38] World Bank. (2025). Metric tons per capita. https://databank.worldbank.org/metadataglossary/world-development-indicators/series/EN.ATM.CO2E.PC

  39. [39] World Bank. (2025). Per capita USD constant. https://data.worldbank.org/indicator/NY.GDP.PCAP.CD

  40. [40] Organisation for Economic Co-operation and Technologies Development. (2025). Patents on environmental technologies. https://www.oecd.org/en/data/indicators/patents-on-environment-technologies.html

  41. [41] World Bank. (2025). Domestic credit to private sector (% of GDP). https://data.worldbank.org/indicator/FS.AST.PRVT.GD.ZS

  42. [42] Organisation for Economic Co-operation and Development. (2025). Environmental policy stringency (EPS) index.

  43. [43] Fakher, H. A. (2021). The role of environmental sustainability, foreign direct investment and trade openness in economic growth: With emphasis on the causal linkage. Big data and computing visions, 1(2), 57–70. https://doi.org/10.22105/bdcv.2021.142227

  44. [44] Pesaran, M. H., & Yamagata, T. (2008). Testing slope homogeneity in large panels. Journal of econometrics, 142(1), 50–93. https://doi.org/10.1016/j.jeconom.2007.05.010

  45. [45] Westerlund, J. (2007). Testing for error correction in panel data. Oxford bulletin of economics and statistics, 69(6), 709–748. https://doi.org/10.1111/j.1468-0084.2007.00477.x

  46. [46] Koenker, R., & Bassett Jr, G. (1978). Regression quantiles. Econometrica: JOURNAL of the econometric society, 46(1), 33–50. https://doi.org/10.2307/1913643

  47. [47] Pesaran, M. H. (2021). General diagnostic tests for cross-sectional dependence in panels. Empirical economics, 60(1), 13–50.

  48. [48] Şerifoğlu, M. M., & Öge Güney, P. (2025). Is the environmental Kuznets curve (EKC) hypothesis still valid for OECD countries? A comprehensive analysis across multiple sources. Quality & quantity, 59(1), 547–573. https://doi.org/10.1007/s11135-024-01945-3

  49. [49] Akar, G., Kaplan, E. A., Güler, İlkay, & Şahin, S. (2025). Has the environmental kuznets curve hypothesis become stronger? A comparative analysis for OECD countries and selected late-industrializing Asian economies. Journal of environmental management, 394, 127575. https://doi.org/10.1016/j.jenvman.2025.127575

  50. [50] Yu, X., & Xiao, K. (2025). The impact of green finance policy on environmental performance: Evidence from China. Sustainability, 17(17), 7589. https://doi.org/10.3390/su17177589

Published

2025-06-14

How to Cite

Can Green Technological Innovation Offset the Environmental Costs of Finance? Insights from OECD Countries. (2025). Innovations in Environmental Economics , 1(2). https://doi.org/10.48313/iee.v1i2.46

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