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Analysis of barriers to the implementation of energy efficiency actions in the production of ceramics in Colombia

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  • Manrique, Raiza
  • Vásquez, Daniela
  • Vallejo, Gabriel
  • Chejne, Farid
  • Amell, Andrés A.
  • Herrera, Bernardo

Abstract

A characterization of the energy profile of certain ceramic industry enterprises in Colombia was carried out. An emphasis was placed on the barriers that prevent the implementation of energy efficiency actions, the degree of obsolescence of their production equipment, and the potential for energy efficiency savings. The barrier with the greatest impact in this sector was found to be hidden costs, followed by corporate values. There was a positive correlation between the potential savings and the degree of equipment obsolescence and the total barrier factor to the implementation of energy efficiency measures. Finally, it was concluded that the creation of programs that allow for more certainty in the appropriation of new technologies could help to overcome the barriers in Colombia's ceramic industry.

Suggested Citation

  • Manrique, Raiza & Vásquez, Daniela & Vallejo, Gabriel & Chejne, Farid & Amell, Andrés A. & Herrera, Bernardo, 2018. "Analysis of barriers to the implementation of energy efficiency actions in the production of ceramics in Colombia," Energy, Elsevier, vol. 143(C), pages 575-584.
  • Handle: RePEc:eee:energy:v:143:y:2018:i:c:p:575-584
    DOI: 10.1016/j.energy.2017.11.023
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    References listed on IDEAS

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    1. Nagesha, N. & Balachandra, P., 2006. "Barriers to energy efficiency in small industry clusters: Multi-criteria-based prioritization using the analytic hierarchy process," Energy, Elsevier, vol. 31(12), pages 1969-1983.
    2. Trianni, Andrea & Cagno, Enrico & Worrell, Ernst, 2013. "Innovation and adoption of energy efficient technologies: An exploratory analysis of Italian primary metal manufacturing SMEs," Energy Policy, Elsevier, vol. 61(C), pages 430-440.
    3. Vélez, Fredy & Segovia, José J. & Martín, M. Carmen & Antolín, Gregorio & Chejne, Farid & Quijano, Ana, 2012. "A technical, economical and market review of organic Rankine cycles for the conversion of low-grade heat for power generation," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(6), pages 4175-4189.
    4. Blass, Vered & Corbett, Charles J. & Delmas, Magali A. & Muthulingam, Suresh, 2014. "Top management and the adoption of energy efficiency practices: Evidence from small and medium-sized manufacturing firms in the US," Energy, Elsevier, vol. 65(C), pages 560-571.
    5. Timilsina, Govinda R. & Hochman, Gal & Fedets, Iryna, 2016. "Understanding energy efficiency barriers in Ukraine: Insights from a survey of commercial and industrial firms," Energy, Elsevier, vol. 106(C), pages 203-211.
    6. 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.
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