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Trajectories towards clean technology: example of volatile organic compound emission reductions

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  • Belis-Bergouignan, Marie-Claude
  • Oltra, Vanessa
  • Saint Jean, Maider

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  • Belis-Bergouignan, Marie-Claude & Oltra, Vanessa & Saint Jean, Maider, 2004. "Trajectories towards clean technology: example of volatile organic compound emission reductions," Ecological Economics, Elsevier, vol. 48(2), pages 201-220, February.
  • Handle: RePEc:eee:ecolec:v:48:y:2004:i:2:p:201-220
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    References listed on IDEAS

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    1. René Kemp & Xander Olsthoorn & Frans Oosterhuis & Harmen Verbruggen, 1992. "Supply and demand factors of Cleaner technologies: Some empirical evidence," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 2(6), pages 615-634, November.
    2. Henk Folmer & H. L. Gabel & Hans Opschoor (ed.), 1995. "Principles of Environmental and Resource Economics," Books, Edward Elgar Publishing, number 168.
    3. Freeman, Chris, 1994. "The Economics of Technical Change," Cambridge Journal of Economics, Cambridge Political Economy Society, vol. 18(5), pages 463-514, October.
    4. Giovanni Dosi, 2000. "Sources, Procedures, and Microeconomic Effects of Innovation," Chapters, in: Innovation, Organization and Economic Dynamics, chapter 2, pages 63-114, Edward Elgar Publishing.
    5. Richard R. Nelson, 1995. "Recent Evolutionary Theorizing about Economic Change," Journal of Economic Literature, American Economic Association, vol. 33(1), pages 48-90, March.
    6. René Kemp, 1997. "Environmental Policy and Technical Change," Books, Edward Elgar Publishing, number 1187.
    7. Sylvie Faucheux & Isabelle Nicolaï, 1998. "Les firmes face au développement soutenable : changement technologique et gouvernance au sein de la dynamique industrielle," Revue d'Économie Industrielle, Programme National Persée, vol. 83(1), pages 127-146.
    8. Dosi, Giovanni, et al, 1997. "Industrial Structures and Dynamics: Evidence, Interpretations and Puzzles," Industrial and Corporate Change, Oxford University Press and the Associazione ICC, vol. 6(1), pages 3-24.
    9. Michael E. Porter & Claas van der Linde, 1995. "Toward a New Conception of the Environment-Competitiveness Relationship," Journal of Economic Perspectives, American Economic Association, vol. 9(4), pages 97-118, Fall.
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    Cited by:

    1. Corradini, Massimiliano & Costantini, Valeria & Mancinelli, Susanna & Mazzanti, Massimiliano, 2014. "Unveiling the dynamic relation between R&D and emission abatement," Ecological Economics, Elsevier, vol. 102(C), pages 48-59.
    2. Massimiliano Corradini & Valeria Costantini & Massimiliano Mazzanti & Susanna Mancinelli, 2014. "Linking innovation investment and environmental performance: an impure dynamic public good model," SEEDS Working Papers 0814, SEEDS, Sustainability Environmental Economics and Dynamics Studies, revised Apr 2014.
    3. Nabila Arfaoui, 2014. "Eco-innovation and Regulatory Push/Pull Effect in the Case of REACH Regulation: Empirical Evidence from Survey Data," GREDEG Working Papers 2014-19, Groupe de REcherche en Droit, Economie, Gestion (GREDEG CNRS), Université Côte d'Azur, France, revised Dec 2015.
    4. Nabila Arfaoui & Eric Brouillat & Maïder Saint-Jean, 2013. "Policy Design, Eco-innovation and Industrial Dynamics in an Agent-Based Model: An Illustration with the REACH Regulation," GREDEG Working Papers 2013-22, Groupe de REcherche en Droit, Economie, Gestion (GREDEG CNRS), Université Côte d'Azur, France, revised Oct 2013.
    5. Massimiliano Mazzanti & Valeria Costantini & Susanna Mancinelli & Massimilano Corradini, 2011. "Environmental and Innovation Performance in a Dynamic Impure Public Good Framework," Working Papers 201117, University of Ferrara, Department of Economics.
    6. Epicoco, Marianna & Oltra, Vanessa & Maïder Saint, Jean, 2014. "Knowledge dynamics and sources of eco-innovation: Mapping the Green Chemistry community," Technological Forecasting and Social Change, Elsevier, vol. 81(C), pages 388-402.
    7. Carrillo-Hermosilla, Javier, 2006. "A policy approach to the environmental impacts of technological lock-in," Ecological Economics, Elsevier, vol. 58(4), pages 717-742, July.
    8. Arfaoui, Nabila & Brouillat, Eric & Saint Jean, Maïder, 2014. "Policy design and technological substitution: Investigating the REACH regulation in an agent-based model," Ecological Economics, Elsevier, vol. 107(C), pages 347-365.
    9. Vanessa OLTRA & Maïder SAINT JEAN, 2009. "Environmental Innovations and Industrial Dynamics (In French)," Cahiers du GREThA (2007-2019) 2009-22, Groupe de Recherche en Economie Théorique et Appliquée (GREThA).
    10. Marianna EPICOCO & Vanessa OLTRA & Maïder SAINT JEAN, 2012. "Mapping the scientific knowledge of the Green Chemistry community (In French)," Cahiers du GREThA (2007-2019) 2012-10, Groupe de Recherche en Economie Théorique et Appliquée (GREThA).
    11. Befort, N., 2021. "The promises of drop-in vs. functional innovations: The case of bioplastics," Ecological Economics, Elsevier, vol. 181(C).
    12. del Río González, Pablo, 2009. "The empirical analysis of the determinants for environmental technological change: A research agenda," Ecological Economics, Elsevier, vol. 68(3), pages 861-878, January.
    13. Massimiliano Corradini & Valeria Costantini & Susanna Mancinelli & Massimiliano Mazzanti, 2015. "Interacting innovation investments and environmental performances: a dynamic impure public good model," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 17(1), pages 109-129, January.

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