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Energy Consumption and Carbon Footprint of the Port of Sines: Contribution to Maritime Transport Sustainability

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  • Teresa Batista

    (MED—Mediterranean Institute for Agriculture, Environment and Development & CHANGE—Global Change and Sustainability Institute, Institute for Advanced and Research, University of Évora, 7004-516 Évora, Portugal)

  • Carmen Luisa Vásquez

    (MED—Mediterranean Institute for Agriculture, Environment and Development & CHANGE—Global Change and Sustainability Institute, Institute for Advanced and Research, University of Évora, 7004-516 Évora, Portugal)

  • Rodrigo Ramírez-Pisco

    (UCMA—Research Department, University of Carlemany, Sant Julia de Loria, AD600 Andorra, Andorra)

  • Lucas de Aquino Marinho

    (MED—Mediterranean Institute for Agriculture, Environment and Development & CHANGE—Global Change and Sustainability Institute, Institute for Advanced and Research, University of Évora, 7004-516 Évora, Portugal)

  • Francisco António Borges

    (MED—Mediterranean Institute for Agriculture, Environment and Development & CHANGE—Global Change and Sustainability Institute, Institute for Advanced and Research, University of Évora, 7004-516 Évora, Portugal)

  • João Araújo

    (APS—Administração dos Portos de Sines e do Algarve, 7521-953 Sines, Portugal)

Abstract

Calculating the energy consumption and carbon footprint is essential for maritime industry sustainability, driving informed decisions and innovation. This study assesses the energy consumption and carbon footprint of the Port of Sines in Portugal to support its decarbonization and energy transition, based on the scopes defined by the Greenhouse Gas Protocol. The proposed calculation model is detailed using different data sources for the 2018–2022 period. For each terminal, the monthly and annual energy consumption and carbon footprint are calculated, considering land and maritime activities into the port jurisdiction area. The results show that more than 99% of the port’s total energy consumption and carbon footprint are due to the operations and activities of the different terminals. On average, the Port of Sines consumes 422,378.45 MWh/year and has a carbon footprint of 224.63185 tCO 2 eq/year. The analysis reveals a non-linear relationship between energy and carbon footprint, due to the different port activities, emphasizing the need for tailored decarbonization strategies for each terminal.

Suggested Citation

  • Teresa Batista & Carmen Luisa Vásquez & Rodrigo Ramírez-Pisco & Lucas de Aquino Marinho & Francisco António Borges & João Araújo, 2025. "Energy Consumption and Carbon Footprint of the Port of Sines: Contribution to Maritime Transport Sustainability," Sustainability, MDPI, vol. 17(8), pages 1-20, April.
  • Handle: RePEc:gam:jsusta:v:17:y:2025:i:8:p:3382-:d:1632050
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    References listed on IDEAS

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    1. Hamid Reza Soltani Motlagh & Seyed Behbood Issa Zadeh & Claudia Lizette Garay-Rondero, 2023. "Towards International Maritime Organization Carbon Targets: A Multi-Criteria Decision-Making Analysis for Sustainable Container Shipping," Sustainability, MDPI, vol. 15(24), pages 1-22, December.
    2. Seyed Behbood Issa Zadeh & José Santos López Gutiérrez & M. Dolores Esteban & Gonzalo Fernández-Sánchez & Claudia Lizette Garay-Rondero, 2023. "Scope of the Literature on Efforts to Reduce the Carbon Footprint of Seaports," Sustainability, MDPI, vol. 15(11), pages 1-24, May.
    3. Mariusz Brzeziński & Dariusz Pyza, 2023. "A Refined Model for Carbon Footprint Estimation in Electric Railway Transport," Energies, MDPI, vol. 16(18), pages 1-18, September.
    4. Jose Luis Osorio-Tejada & Eva Llera-Sastresa & Sabina Scarpellini, 2024. "Environmental assessment of road freight transport services beyond the tank-to-wheels analysis based on LCA," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 26(1), pages 421-451, January.
    5. Papaioannou, Vicky & Pietrosanti, Stefano & Holderbaum, William & Becerra, Victor M. & Mayer, Rayner, 2017. "Analysis of energy usage for RTG cranes," Energy, Elsevier, vol. 125(C), pages 337-344.
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