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Technical skills, disinterest and non-functional regulation: Energy efficiency barriers viewed in an ecosystem of energy service companies

Author

Listed:
  • Hanna-Liisa Kangas
  • David Lazarevic

    (Royal Institute of Technology (KTH))

  • Paula Kivimaa

    (Government of the Republic of Finland - Finnish Environment Institute)

Abstract

Energy inefficiency in the building stock is a substantial contributor to climate change. Integrated energy service companies (IESCs) have a potentially important role in improving energy efficiency. However, there are numerous barriers to energy efficiency, preventing the growth of energy service markets. We analyse energy efficiency barriers to overcoming the energy efficiency gap in the Finnish building sector. Taking a novel supply side perspective, we place IESCs at the centre of the emerging energy services business ecosystem to identify the barriers and hindering factors (real world illustrations of barriers). From this perspective, we also examine cause-effect relationships between the hindering factors and the actors. Hindering factors, reported by IESCs, were categorised under a revised barrier taxonomy consisting of economic market failures and economic market, behavioural, organisational and institutional barriers. The most salient hindering factors—lack of technical skills, disinterest in energy efficiency improvements and non-functional regulation—were analysed with respect to ecosystem actors causing and affected by these factors. Public actors have a key role in overcoming these barriers, for instance by creating new possibilities for entrants to take part in decision-making, increasing the functionality and practicality of policies and by providing up-to date energy efficiency information.

Suggested Citation

  • Hanna-Liisa Kangas & David Lazarevic & Paula Kivimaa, 2017. "Technical skills, disinterest and non-functional regulation: Energy efficiency barriers viewed in an ecosystem of energy service companies," SPRU Working Paper Series 2017-04, SPRU - Science Policy Research Unit, University of Sussex Business School.
  • Handle: RePEc:sru:ssewps:2017-04
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    References listed on IDEAS

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    1. Brown, Marilyn A., 2001. "Market failures and barriers as a basis for clean energy policies," Energy Policy, Elsevier, vol. 29(14), pages 1197-1207, November.
    2. Clarysse, Bart & Wright, Mike & Bruneel, Johan & Mahajan, Aarti, 2014. "Creating value in ecosystems: Crossing the chasm between knowledge and business ecosystems," Research Policy, Elsevier, vol. 43(7), pages 1164-1176.
    3. Lauri Pulkka & Miro Ristimäki & Karoliina Rajakallio & Seppo Junnila, 2016. "Applicability and benefits of the ecosystem concept in the construction industry," Construction Management and Economics, Taylor & Francis Journals, vol. 34(2), pages 129-144, February.
    4. Chai, Kah-Hin & Yeo, Catrina, 2012. "Overcoming energy efficiency barriers through systems approach—A conceptual framework," Energy Policy, Elsevier, vol. 46(C), pages 460-472.
    5. Ron Adner & Rahul Kapoor, 2010. "Value creation in innovation ecosystems: how the structure of technological interdependence affects firm performance in new technology generations," Strategic Management Journal, Wiley Blackwell, vol. 31(3), pages 306-333, March.
    6. Sorrell, Steve, 2015. "Reducing energy demand: A review of issues, challenges and approaches," Renewable and Sustainable Energy Reviews, Elsevier, vol. 47(C), pages 74-82.
    7. Weber, Lukas, 1997. "Some reflections on barriers to the efficient use of energy," Energy Policy, Elsevier, vol. 25(10), pages 833-835, August.
    8. Vine, Edward, 2005. "An international survey of the energy service company (ESCO) industry," Energy Policy, Elsevier, vol. 33(5), pages 691-704, March.
    9. Jerry A. Hausman, 1979. "Individual Discount Rates and the Purchase and Utilization of Energy-Using Durables," Bell Journal of Economics, The RAND Corporation, vol. 10(1), pages 33-54, Spring.
    10. Cagno, E. & Worrell, E. & Trianni, A. & Pugliese, G., 2013. "A novel approach for barriers to industrial energy efficiency," Renewable and Sustainable Energy Reviews, Elsevier, vol. 19(C), pages 290-308.
    11. Blumstein, Carl & Krieg, Betsy & Schipper, Lee & York, Carl, 1980. "Overcoming social and institutional barriers to energy conservation," Energy, Elsevier, vol. 5(4), pages 355-371.
    12. Jaffe, Adam B. & Stavins, Robert N., 1994. "The energy-efficiency gap What does it mean?," Energy Policy, Elsevier, vol. 22(10), pages 804-810, October.
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    Cited by:

    1. Peñasco, Cristina & Anadón, Laura Díaz, 2023. "Assessing the effectiveness of energy efficiency measures in the residential sector gas consumption through dynamic treatment effects: Evidence from England and Wales," Energy Economics, Elsevier, vol. 117(C).

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    Keywords

    Energy services; barriers; energy efficiency; ecosystem; energy service company; buildings;
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