Otwarty dostęp

Selected Issues in Innovation in the Energy Industry. The Case of Poland


Zacytuj

Cagno, E., Ramirez-Portilla A., Trianni, A. (2015), Linking energy efficiency and innovation practices: Empirical evidence from the foundry sector, Energy Policy, Vol. 83, pp. 240–256.Search in Google Scholar

Carlsson, B., Stankiewicz, R. (1991), On the nature, function and composition of technological systems, Journal of Evolutionary Economics, Vol. 1, pp. 99–118.Search in Google Scholar

Costa-Campi, M., García-Quevedo, J., Segarra, A. (2015), Energy efficiency determinants: An empirical analysis of Spanish innovative firms, Energy Policy, Vol. 83, pp. 229–239.Search in Google Scholar

Costa Campi, M. (2015), Challenges for R&D and innovation in energy, Energy Policy, Vol. 83, pp. 193–196.Search in Google Scholar

Christensen, M. (1997), The Innovator’s Dilemma: When New Technologies Cause Great Firms to Fail. Boston, MA: Harvard Business School Press.Search in Google Scholar

Dalton, G., Gallachoir, B. (2010), Building a wave energy policy focusing on innovation, manufacturing and deployment, Energy Review, Vol. 14, pp. 2339–2358.Search in Google Scholar

Doms, E., Dunne, T. (1995), Energy intensity, electricity consumption, and advanced manufacturing technology usage, Technological Forecasting and Social Change, Vol. 49 (3), pp. 297–310.Search in Google Scholar

Drucker, P. (1992), Innowacje i przedsiębiorczość. Praktyka i zasady, PWE, Warszawa.Search in Google Scholar

Drucker, P. (2015), Innovation and Entrepreneurship. Practice and principles, Routledge, New York.Search in Google Scholar

Eco-innovation Observatory, available at http://www.eco-innovation.eu/index.php?option=com_content&view=article&id=481&Itemid=69, accessed: May 27, 2016.Search in Google Scholar

European Commission (2012), Disruptive Innovation: Implications for Competitiveness and Innovation Policy. INNO-Grips Policy Brief No.4, prepared by empirica GmbH for DG Enterprise and Industry, as part of the INNO-Grips project. Bonn/Brussels.Search in Google Scholar

Frankowski, P., Skubiak, B. (2012), Innowacyjność w teorii ekonomii i praktyce gospodarczej, Studia i Prace Wydziału Nauk Ekonomicznych i Zarządzania, No. 30, Wydawnictwo Naukowe Uniwersytetu Szczecińskiego, pp. 271–283.Search in Google Scholar

Freeman, C., Soete, L. (1997), The Rise of Science-related technology, in: C. Freeman, L. Soete, (eds.), The Economics of Industrial Innovation, Routledge, Reprint 2005, pp. 85–106.Search in Google Scholar

Foy, H. (2015), Polish companies warned about R&D neglect, Financial Times, 23 March 2015, available at http://www.ft.com/cms/s/0/6e³eeda²-c8b4-11e4-8617-00144feab7de.html#axzz49t4DZo1b, accessed: May 27, 2016.Search in Google Scholar

Geels, W. (2002), Technological transitions as evolutionary reconfiguration processes: a multilevel perspective and a case-study, Research Policy, Vol. 31, pp. 1257–1274.Search in Google Scholar

Global Energy Assessment (2012), Towards Sustainable Future, Cambridge University Press.Search in Google Scholar

Govindarajan, V., Kopalle, P. (2006), Disruptiveness of Innovations: Measurement and an Assessment of Reliability and Validity, Strategic Management Journal, Vol. 27, No. 2, pp. 189–199.Search in Google Scholar

Guo, P., Wang, T., Li D., Zhou, X. (2016), How energy technology innovation affects transition of coal resource-based economy in China, Energy Policy, Vol. 92, pp. 1–6.Search in Google Scholar

Hicks, J. (1932), The Theory of Wages, London: Macmillan, Reprint 1963.10.1007/978-1-349-00189-7Search in Google Scholar

Hrovatin, N., Dolsak, N., Zoric, J. (2016), Factors impacting investments in energy efficiency and clean technologies: empirical evidence from Slovenian manufacturing firms, Journal of Cleaner Production, Vol. 127, pp. 475–486.Search in Google Scholar

Huang, C., Su, J., Zhao, X., Sui, J., Ru, P., Zhang, H., Wang, X. (2012), Government funded renewable energy innovation in China, Energy Policy, Vol. 21, pp. 121–127.Search in Google Scholar

Hughes, T. (2012), The Evolution of Large Technological Systems in: W. Bijker, T. Hughes, T. Pinch, (eds.), The Social Construction of the Technological Systems. New Directions into the Sociology and History of Technology, Cambridge: MIT Press, pp. 45–77.Search in Google Scholar

IEA (2011), Energy Policies of IEA Countries: Poland, Paris, available athttp://www.iea.org/publications/freepublications/publication/Poland2011_web.pdf, accessed: May 27, 2016.Search in Google Scholar

IEA (2015), Energy Technology Perspectives 2015. Mobilizing Innovation to Accelerate Climate Action, Paris, available at: https://www.iea.org/publications/freepublications/publication/EnergyTechnologyPerspectives2015ExecutiveSummaryEnglishversion.pdf, accessed: February 27, 2016.Search in Google Scholar

Irandoust, M. (2016), The renewable energy-growth nexus with carbon emissions and technological innovation: Evidence from the Nordic countries, Ecological Indicators, Vol. 69, pp. 118–125.Search in Google Scholar

Johnstone, N., Hascic, I., Popp, D. (2010), Renewable energy policies and technological innovation: evidence based on patent counts, Environmental Resource Economics, Vol. 45, pp. 133–155.Search in Google Scholar

Jamasb, T., Pollitt, M. (2008), Liberalisation and R&D in network industries: the case of the electricity industry, Research Policy, Vol. 37, pp. 995–1008.Search in Google Scholar

Kotler, Ph. (1994), Marketing. Analiza, planowanie, wdrażanie i kontrola, Wydawnictwo Gebethner i Ska, Warszawa.Search in Google Scholar

Lefevre, S. (1984), Using Demonstration Projects to Advance Innovation in Energy, Public Administration Review, Vol. 44, No. 6, pp. 483–490.Search in Google Scholar

Lutzenhiser, L. (1994), Innovation and organizational networks: barriers to energy efficiency in the US housing industry, Energy Policy, Vol. 22, pp. 867–876.Search in Google Scholar

Malerba, F. (1999), Sectoral Systems of Innovation and Production, Paper for the DRUID Conference on: National Innovation Systems, Industrial Dynamics and Innovation Policy Rebuild, June 9–12, available at: http://www.druid.dk/uploads/tx_picturedb/ds1999–69.pdf, accessed: May 25, 2016.Search in Google Scholar

Markard, J., Truffer, B. (2006), Innovation processes in large technical systems: Market liberalization as a driver for radical change?, Research Policy, Vol. 35, pp. 609–625.Search in Google Scholar

McCraw, T. (2007), Prophet of Innovation: Joseph Schumpeter and Creative Destruction, Cambridge: Harvard University Press.Search in Google Scholar

McKinsey (2012), Energy = innovation: 10 disruptive technologies, available at: https://www.mckinsey.com/~/media/mckinsey/dotcom/client_service/Sustainability/PDFs/McK%20on%20SRP/SRP_02_Innovation.ashx, accessed: February 15, 2016.Search in Google Scholar

McMichael, M., Shipworth, D. (2013), The value of social networks in the diffusion of energy-efficiency innovations in UK households, Energy Policy, Vol. 53, pp. 159–168.Search in Google Scholar

Miedzinski, M. (2013), Eco-Innovation Observatory Country Profile 2013: Poland, available at: http://www.eco-innovation.eu/images/stories/Reports/EIO_Country_Brief_2013_Poland.pdf, accessed: May 27, 2016.Search in Google Scholar

Noailly, J., Smeets, R. (2015), Directing technical change from fossil-fuel to renewable energy innovation: An application using firm-level patent data, Journal of Environmental Economics and Management, Vol. 72, pp. 15–37.Search in Google Scholar

OECD and Eurostat (2005), Oslo Manual: Guidelines for Collecting and Interpreting Innovation Data. The Measurement of Scientific and Technological Activities, OECD Publishing, Paris, pp. 45–56.Search in Google Scholar

OECD (2011), Towards green growth, OECD Publishing, Paris.Search in Google Scholar

OECD (2014), OECD Factbook: economic, environmental and social statistics, OECD Publishing Paris.Search in Google Scholar

OECD (2015), Science, Technology and Industry Scoreboard, OECD Publishing, Paris, pp. 230–231.Search in Google Scholar

Pizer, W., Harrington, W., Morgenstern, R., Shih, J. (2002), Technology adoption and aggregate energy efficiency, Resources for the Future Discussion Paper, No. 02–52.Search in Google Scholar

Popp, D. (2001), The effect of new technology on energy consumption, Resource and Energy Economics, Vol. 23, No. 3, pp. 215–239.Search in Google Scholar

Przychodzien, J. (2015), Ekoinnowacje w przedsiębiorstwie. Zarządzanie, pomiar i wpływ na wyniki finansowe, CeDeWu.pl, Warszawa.Search in Google Scholar

Ramadani, V., Gurguri, S. (2011), Theoretical Framework of Innovation: Competitiveness and Innovation Program in Macedonia, European Journal of Social Sciences, Vol. 23, No. 2, available at: http://ssrn.com/abstract=1432139, accessed: February 12, 2016.Search in Google Scholar

Rothwell, R. (1994), Towards the Fifth-Generation Innovation Process, International Marketing Review, Vol. 11, Issue 1, pp. 7–31.Search in Google Scholar

Rószkiewicz, M. (2015), Wskaźniki innowacyjności gospodarek narodowych, in: A. Kałowski, J. Wysocki, (eds.), Innowacje – ocena w ujęciu mikro, mezo i makro, Oficyna Wydawnicza SGH, Warszawa, pp. 205–246.Search in Google Scholar

Schumpeter, J. A. (1934), The Theory of Economic Development. An Inquiry into Profits, Capital, Credit, Interest, and the Business Cycle, New York, Oxford University Press, Reprint 1961.Search in Google Scholar