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Upholding the green agenda of COP27 through publicly funded R&D on energy efficiencies, renewables, nuclear and power storage technologies

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  • Uche, Emmanuel
  • Ngepah, Nicholas
  • Cifuentes-Faura, Javier
Abstract
Policy strategies to foster climate-change resilient ecosystems require broad-based identification of the mechanisms underlying the nexus. Prior investigations, maybe, inadvertently left so many factors unverified. Failing to verify, specifically, how climate change is influenced by public-funded research and development (R&D) on energy efficiencies, renewables, nuclear energy, and power storage technologies concealed vital policy insights. We have analyzed a panel series of the aforementioned factors stretching from 1985 to 2021 in the context of G10 countries. Several innovative panel techniques robust to cross-national exigencies were implemented. This includes two recently introduced third-generation panel unit-root procedures, the Banerjee and Carrion-i-Silvestre cointegration process, the fully-generalized least square, panel-corrected standard error, Driscoll-Kray standard errors, and the dynamic common correlated effects estimator. Long-run elasticities informed that total R&D expenditure on green-technologies is more effective in mitigating energy-induced emissions than the overall surface temperature. R&D expenditure on energy efficiencies, renewables, and nuclear energies performed better in minifying both metrics than power storage. Fossil fuel technologies remained inimical to environmental sustainability. Energy-tax promoted environmental quality significantly by reducing both energy emissions and climate temperature. It is commendable to invest more in energy-enhancing technologies but other factors that have a direct bearing on climate-change deserve consideration.

Suggested Citation

  • Uche, Emmanuel & Ngepah, Nicholas & Cifuentes-Faura, Javier, 2023. "Upholding the green agenda of COP27 through publicly funded R&D on energy efficiencies, renewables, nuclear and power storage technologies," Technology in Society, Elsevier, vol. 75(C).
  • Handle: RePEc:eee:teinso:v:75:y:2023:i:c:s0160791x23001859
    DOI: 10.1016/j.techsoc.2023.102380
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    1. Uche, Emmanuel & Das, Narasingha & Ngepah, Nicholas, 2024. "Green environments reimagined through the lens of green finance, green innovations, green taxation, and green energies. Wavelet quantile correlation and rolling window-based quantile causality perspec," Renewable Energy, Elsevier, vol. 228(C).

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