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Magnitude and direction of technological transfers for mitigating GHG emissions

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  • Yang, Zili
  • Nordhaus, William D.

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  • Yang, Zili & Nordhaus, William D., 2006. "Magnitude and direction of technological transfers for mitigating GHG emissions," Energy Economics, Elsevier, vol. 28(5-6), pages 730-741, November.
  • Handle: RePEc:eee:eneeco:v:28:y:2006:i:5-6:p:730-741
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    1. Parkash Chander & Henry Tulkens, 2006. "The Core of an Economy with Multilateral Environmental Externalities," Springer Books, in: Parkash Chander & Jacques Drèze & C. Knox Lovell & Jack Mintz (ed.), Public goods, environmental externalities and fiscal competition, chapter 0, pages 153-175, Springer.
    2. Petrakis, Emmanuel & Xepapadeas, Anastasios, 1996. "Environmental consciousness and moral hazard in international agreements to protect the environment," Journal of Public Economics, Elsevier, vol. 60(1), pages 95-110, April.
    3. Nordhaus, William D & Yang, Zili, 1996. "A Regional Dynamic General-Equilibrium Model of Alternative Climate-Change Strategies," American Economic Review, American Economic Association, vol. 86(4), pages 741-765, September.
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    Cited by:

    1. repec:zbw:hohpro:341 is not listed on IDEAS
    2. Dechezleprêtre, Antoine & Glachant, Matthieu & Ménière, Yann, 2008. "The Clean Development Mechanism and the international diffusion of technologies: An empirical study," Energy Policy, Elsevier, vol. 36(4), pages 1273-1283, April.
    3. Sigit Perdana and Rod Tyers, 2020. "Global Climate Change Mitigation: Strategic Incentives," The Energy Journal, International Association for Energy Economics, vol. 0(Number 3), pages 183-206.
    4. Fenichel, Eli P. & Abbott, Joshua K., 2014. "Heterogeneity and the fragility of the first best: Putting the “micro” in bioeconomic models of recreational resources," Resource and Energy Economics, Elsevier, vol. 36(2), pages 351-369.
    5. Asjad Naqvi, 2015. "Modeling Growth, Distribution, and the Environment in a Stock-Flow Consistent Framework. WWWforEurope Policy Paper No. 18," WIFO Studies, WIFO, number 57883, February.
    6. Kypreos, Socrates & Turton, Hal, 2011. "Climate change scenarios and Technology Transfer Protocols," Energy Policy, Elsevier, vol. 39(2), pages 844-853, February.
    7. Carsten Helm & Stefan Pichler, 2015. "Climate Policy with Technology Transfers and Permit Trading," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 60(1), pages 37-54, January.
    8. Naqvi, Syed Ali Asjad, 2015. "Modeling Growth, Distribution, and the Environment in a Stock-Flow Consistent Framework," Ecological Economic Papers 2, WU Vienna University of Economics and Business.
    9. Allouch, Nizar & King, Maia, 2021. "Welfare targeting in networks," Journal of Mathematical Economics, Elsevier, vol. 96(C).
    10. Matthieu Glachant & Julie Ing & Jean Philippe Nicolai, 2017. "The Incentives for North-South Transfer of Climate-Mitigation Technologies with Trade in Polluting Goods," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 66(3), pages 435-456, March.
    11. Elizabeth Stanton, 2011. "Negishi welfare weights in integrated assessment models: the mathematics of global inequality," Climatic Change, Springer, vol. 107(3), pages 417-432, August.
    12. Gunter Stephan & Georg Müller-Fürstenberger, 2014. "Global Warming, Technological Change and Trade in Carbon Energy: Challenge or Threat?," Discussion Papers of DIW Berlin 1397, DIW Berlin, German Institute for Economic Research.
    13. DeCanio, Stephen J., 2009. "The political economy of global carbon emissions reductions," Ecological Economics, Elsevier, vol. 68(3), pages 915-924, January.
    14. Kurt Kratena, 2015. "Thematic Report: Macroeconomic Models Including Specifically Social and Environmental Aspects. WWWforEurope Deliverable No. 8," WIFO Studies, WIFO, number 58411, February.
    15. Gunter Stephan & Georg Müller-Fürstenberger, 2015. "Global Warming, Technological Change and Trade in Carbon Energy: Challenge or Threat?," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 62(4), pages 791-809, December.
    16. Wei, Yi-Ming & Mi, Zhi-Fu & Huang, Zhimin, 2015. "Climate policy modeling: An online SCI-E and SSCI based literature review," Omega, Elsevier, vol. 57(PA), pages 70-84.
    17. Georg Müller-Fürstenberger & Gunter Stephan, 2012. "Global Warming, Technology Transfer and Trade in Carbon Energy: Challenge or Threat?," Research Papers in Economics 2012-05, University of Trier, Department of Economics.
    18. Mason, Charles F. & Polasky, Stephen & Tarui, Nori, 2017. "Cooperation on climate-change mitigation," European Economic Review, Elsevier, vol. 99(C), pages 43-55.
    19. Jin, Wei, 2016. "International technology diffusion, multilateral R&D coordination, and global climate mitigation," Technological Forecasting and Social Change, Elsevier, vol. 102(C), pages 357-372.
    20. Gavard, Claire & Schoch, Niklas, 2021. "Climate finance and emission reductions: What do the last twenty years tell us?," ZEW Discussion Papers 21-014, ZEW - Leibniz Centre for European Economic Research.
    21. Karakosta, Charikleia & Doukas, Haris & Psarras, John, 2010. "Technology transfer through climate change: Setting a sustainable energy pattern," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(6), pages 1546-1557, August.
    22. Gunter Stephan & Georg M ller-F rstenberger, 2012. "Global Warming, Technology Transfer and Trade in Carbon Energy: Challenge or Threat?," Diskussionsschriften dp1206, Universitaet Bern, Departement Volkswirtschaft.
    23. Kypreos, Socrates, 2012. "From the Copenhagen Accord to efficient technology protocols," Energy Policy, Elsevier, vol. 44(C), pages 341-353.
    24. Dechezleprêtre, Antoine & Glachant, Matthieu & Ménière, Yann, 2009. "Technology transfer by CDM projects: A comparison of Brazil, China, India and Mexico," Energy Policy, Elsevier, vol. 37(2), pages 703-711, February.
    25. repec:old:wpaper:341 is not listed on IDEAS

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