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Energy use and CO2 emissions for Mexico's cement industry

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  • Sheinbaum, Claudia
  • Ozawa, Leticia

Abstract

Energy use and CO2 emissions in the Mexican cement industry are analyzed for the period 1982–94. Using the Laspeyres index method, we estimate the relative importance of fuel intensity, clinker activity, the cement/clinker ratio, and the use of waste tires as an alternative fuel in the changes of clinker fuel use. Changes in CO2 emissions are divided into energy intensity, cement activity, the cement/clinker ratio, and primary and final fuel-mix effects. The study shows that changes in all factors except for clinker activity drive fuel use down. Overall CO2 emissions are reduced by changes in real energy intensity and the clinker/cement ratio, while the primary fuel-mix effect (which accounts for changes in the share of final energy used to produce both cement and electricity) and cement activity drive emissions up.

Suggested Citation

  • Sheinbaum, Claudia & Ozawa, Leticia, 1998. "Energy use and CO2 emissions for Mexico's cement industry," Energy, Elsevier, vol. 23(9), pages 725-732.
  • Handle: RePEc:eee:energy:v:23:y:1998:i:9:p:725-732
    DOI: 10.1016/S0360-5442(98)00022-X
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    Cited by:

    1. Söğüt, Z. & Oktay, Z. & Karakoc, H. & Hepbasli, A., 2012. "Investigation of environmental and exergetic performance for coal-preparation units in cement production processes," Energy, Elsevier, vol. 46(1), pages 72-77.
    2. González, Domingo & Martínez, Manuel, 2012. "Changes in CO2 emission intensities in the Mexican industry," Energy Policy, Elsevier, vol. 51(C), pages 149-163.
    3. Yeonbae Kim & Ernst Worrell, 2002. "CO 2 Emission Trends in the Cement Industry: An International Comparison," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 7(2), pages 115-133, June.
    4. Zeus Guevara & Oscar Córdoba & Edith X. M. García & Rafael Bouchain, 2017. "The Status and Evolution of Energy Supply and Use in Mexico Prior to the 2014 Energy Reform: An Input-Output Approach †," Economies, MDPI, vol. 5(1), pages 1-17, March.
    5. Mikulčić, Hrvoje & Vujanović, Milan & Fidaros, Dimitris K. & Priesching, Peter & Minić, Ivica & Tatschl, Reinhard & Duić, Neven & Stefanović, Gordana, 2012. "The application of CFD modelling to support the reduction of CO2 emissions in cement industry," Energy, Elsevier, vol. 45(1), pages 464-473.
    6. Huang, Lizhen & Krigsvoll, Guri & Johansen, Fred & Liu, Yongping & Zhang, Xiaoling, 2018. "Carbon emission of global construction sector," Renewable and Sustainable Energy Reviews, Elsevier, vol. 81(P2), pages 1906-1916.
    7. Madlool, N.A. & Saidur, R. & Rahim, N.A. & Kamalisarvestani, M., 2013. "An overview of energy savings measures for cement industries," Renewable and Sustainable Energy Reviews, Elsevier, vol. 19(C), pages 18-29.
    8. Ozawa, Leticia & Sheinbaum, Claudia & Martin, Nathan & Worrell, Ernst & Price, Lynn, 2002. "Energy use and CO2 emissions in Mexico's iron and steel industry," Energy, Elsevier, vol. 27(3), pages 225-239.
    9. Junxiao Wei & Kuang Cen, 2019. "A preliminary calculation of cement carbon dioxide in China from 1949 to 2050," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 24(8), pages 1343-1362, December.
    10. Madlool, N.A. & Saidur, R. & Hossain, M.S. & Rahim, N.A., 2011. "A critical review on energy use and savings in the cement industries," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(4), pages 2042-2060, May.
    11. Zeus Guevara & Tânia Sousa & Tiago Domingos, 2016. "Insights on Energy Transitions in Mexico from the Analysis of Useful Exergy 1971–2009," Energies, MDPI, vol. 9(7), pages 1-29, June.

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