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Potential Energy Savings and CO2 Emissions Reduction in Colombia Compressed Air Systems

Author

Listed:
  • Luis Marcos Castellanos

    (Facultad de Ingenierias, Universidad Sim n Bolivar, Barranquilla, Colombia,)

  • Hernan Hernandez-Herrera

    (Facultad de Ingenierias, Universidad Sim n Bolivar, Barranquilla, Colombia,)

  • Jorge I. Silva-Ortega

    (Research Group in Energy Optimization GIOPEN - Universidad de la Costa, Ph.D. Student in Engineer - Universidad Pontificia Bolivariana, Medell n, Colombia,)

  • Vicente Leonel Mart nez Diaz

    (Facultad de Ingenierias, Universidad Sim n Bolivar, Barranquilla, Colombia,)

  • Zaid Garc a Sanchez

    (Center of Energy and Environmental Studies Department, Universidad de Cienfuegos, Cuba.)

Abstract

Compressed air is one of the most common systems used in industry. In countries such as Australia, Italia, France, China and USA, energy consumption of compressed air systems contributes about to 10% of the total electricity consumption in industry. In Colombia, this value reaches 8%, highlighting the textile industry, with a 24% of consumption. Despite of all its advantages, compressed air is expensive, between 10-30% of consumed energy reaches the end-use point. Improvements to compressed air systems can achieve between 20-60% of energy savings, with pay-back periods lower than two years. These are the reasons that they can be considered as one of the main targetsystems while planning energy efficiency actions in industry. Colombia through different strategies has proposed to implement a group of measures to improve energy efficiency and reduce electricity consumption to 2021 around 7 %. Implementation of good practices in compressed air systems is one of them. This paper is showed the share cost, electricity consumption and the savings potential of the compressed air systems in the different divisions of the Colombian manufacturing sector, the main sectors to be involved as well as the potential savings and reduction of dioxide carbon emissions.

Suggested Citation

  • Luis Marcos Castellanos & Hernan Hernandez-Herrera & Jorge I. Silva-Ortega & Vicente Leonel Mart nez Diaz & Zaid Garc a Sanchez, 2019. "Potential Energy Savings and CO2 Emissions Reduction in Colombia Compressed Air Systems," International Journal of Energy Economics and Policy, Econjournals, vol. 9(6), pages 71-78.
  • Handle: RePEc:eco:journ2:2019-06-9
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    References listed on IDEAS

    as
    1. Sergey O. Chikunov & Olga N. Gutsunuk & Marina I. Ivleva & Isabella D. Elyakova & Irina V. Nikolaeva & Maksim S. Maramygin, 2018. "Improving the economic performance of Russia s energy system based on the development of alternative energy sources," International Journal of Energy Economics and Policy, Econjournals, vol. 8(6), pages 382-391.
    2. Trianni, Andrea & Cagno, Enrico & Farné, Stefano, 2016. "Barriers, drivers and decision-making process for industrial energy efficiency: A broad study among manufacturing small and medium-sized enterprises," Applied Energy, Elsevier, vol. 162(C), pages 1537-1551.
    3. Siti Inayatul Faizah & Uus Ahmad Husaeni, 2018. "Development of Consumption and Supplying Energy in Indonesia s Economy," International Journal of Energy Economics and Policy, Econjournals, vol. 8(6), pages 313-321.
    4. Fleiter, Tobias & Hirzel, Simon & Worrell, Ernst, 2012. "The characteristics of energy-efficiency measures – a neglected dimension," Energy Policy, Elsevier, vol. 51(C), pages 502-513.
    5. Abdelaziz, E.A. & Saidur, R. & Mekhilef, S., 2011. "A review on energy saving strategies in industrial sector," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(1), pages 150-168, January.
    6. Yang, Ming, 2009. "Air compressor efficiency in a Vietnamese enterprise," Energy Policy, Elsevier, vol. 37(6), pages 2327-2337, June.
    7. Juliana Jaramillo Echeverri & Julieth Parra Hincapié, 2012. "Evolución de la concentración y especialización industrial en Colombia, 1975-2005," Ensayos de Economía 9809, Universidad Nacional de Colombia Sede Medellín.
    8. Andi Desfiandi & Faurani Santi Singagerda & Anuar Sanusi, 2019. "Building an Energy Consumption Model and Sustainable Economic Growth in Emerging Countries," International Journal of Energy Economics and Policy, Econjournals, vol. 9(2), pages 51-66.
    9. Vittorini, Diego & Cipollone, Roberto, 2016. "Energy saving potential in existing industrial compressors," Energy, Elsevier, vol. 102(C), pages 502-515.
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    Cited by:

    1. Hernan Hernandez-Herrera & Jorge I. Silva-Ortega & Vicente Leonel Mart nez Diaz & Zaid Garc a Sanchez & Gilberto Gonz lez Garc a & Sandra M. Escorcia & Habid E. Zarate, 2020. "Energy Savings Measures in Compressed Air Systems," International Journal of Energy Economics and Policy, Econjournals, vol. 10(3), pages 414-422.

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    More about this item

    Keywords

    Compressed air systems; electricity consumption; energy efficiency.;
    All these keywords.

    JEL classification:

    • Q47 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Energy - - - Energy Forecasting
    • L94 - Industrial Organization - - Industry Studies: Transportation and Utilities - - - Electric Utilities
    • N66 - Economic History - - Manufacturing and Construction - - - Latin America; Caribbean

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