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Environmental impact index for tidal power plants in amazon region coast

Author

Listed:
  • Mayke Feitosa Progênio

    (Federal University of Pará-PPGEC/ITEC/UFPA)

  • Claudio José Cavalcante Blanco

    (Federal University of Pará–FAESA/ITEC/UFPA)

  • Josias Silva Cruz

    (Federal University of Pará-PPGEC/ITEC/UFPA)

  • Felipe Antônio Melo Costa Filho

    (Federal University of Pará-PPGEC/ITEC/UFPA)

  • André Luiz Amarante Mesquita

    (Federal University of Pará–NIDAE/CAMTUC/UFPA)

Abstract

In some coastal areas, tidal ranges represent an important energy potential. This energy is harnessed through tidal power plants (TPPs), which cause environmental impacts during the construction and operation phases. The objective is to propose an environmental impact potential (EIP) index to be used as a tool to select suitable areas for the installation of TPPs. The EIP is based on a combination of geographic information systems and multicriteria analysis, which take into account the degrees of vulnerability of the following environmental variables: land use, geomorphology, geology, slope, pedology and vegetation. The results showed that the EIP values in most areas of the Amazon region coast decrease from north to south, and 15% of the areas had low EIP values because they are farther from estuaries, which are technically better for the implementation of TPPs. In the rest of the region, 82% of the areas have average EIP values, and 3% have high EIP values. These areas are near the mouth and are more susceptible to erosion and flooding. In this case, the environmental impact is greater in relation to those of areas with the greatest river influence. Thus, from an environmental point of view, the EIP index has proven to be a preliminary and simple application assessment tool for choosing the best area for TPP installation for the sustainable use of natural resources.

Suggested Citation

  • Mayke Feitosa Progênio & Claudio José Cavalcante Blanco & Josias Silva Cruz & Felipe Antônio Melo Costa Filho & André Luiz Amarante Mesquita, 2021. "Environmental impact index for tidal power plants in amazon region coast," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 23(7), pages 10814-10830, July.
  • Handle: RePEc:spr:endesu:v:23:y:2021:i:7:d:10.1007_s10668-020-01088-z
    DOI: 10.1007/s10668-020-01088-z
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    1. Haddad, Brahim & Liazid, Abdelkrim & Ferreira, Paula, 2017. "A multi-criteria approach to rank renewables for the Algerian electricity system," Renewable Energy, Elsevier, vol. 107(C), pages 462-472.
    2. Akpoti, Komlavi & Kabo-bah, Amos T. & Zwart, Sander J., 2019. "Agricultural land suitability analysis: State-of-the-art and outlooks for integration of climate change analysis," Agricultural Systems, Elsevier, vol. 173(C), pages 172-208.
    3. Leite Neto, Pedro B. & Saavedra, Osvaldo R. & Souza Ribeiro, Luiz A., 2015. "Optimization of electricity generation of a tidal power plant with reservoir constraints," Renewable Energy, Elsevier, vol. 81(C), pages 11-20.
    4. Hooper, Tara & Austen, Melanie, 2013. "Tidal barrages in the UK: Ecological and social impacts, potential mitigation, and tools to support barrage planning," Renewable and Sustainable Energy Reviews, Elsevier, vol. 23(C), pages 289-298.
    5. Astariz, S. & Iglesias, G., 2015. "The economics of wave energy: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 45(C), pages 397-408.
    6. Li, Ying & Pan, Dong-Zi, 2017. "The ebb and flow of tidal barrage development in Zhejiang Province, China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 80(C), pages 380-389.
    7. Angeloudis, Athanasios & Kramer, Stephan C. & Hawkins, Noah & Piggott, Matthew D., 2020. "On the potential of linked-basin tidal power plants: An operational and coastal modelling assessment," Renewable Energy, Elsevier, vol. 155(C), pages 876-888.
    8. Cartelle Barros, Juan José & Lara Coira, Manuel & de la Cruz López, María Pilar & del Caño Gochi, Alfredo & Soares, Isabel, 2020. "Probabilistic multicriteria environmental assessment of power plants: A global approach," Applied Energy, Elsevier, vol. 260(C).
    9. Yunna Wu & Chuanbo Xu & Hu Xu, 2016. "Optimal Site Selection of Tidal Power Plants Using a Novel Method: A Case in China," Energies, MDPI, vol. 9(10), pages 1-26, October.
    10. Valentinas Podvezko, 2009. "Application of AHP technique," Journal of Business Economics and Management, Taylor & Francis Journals, vol. 10(2), pages 181-189, March.
    11. Ferreira, Rafael M. & Estefen, Segen F., 2009. "Alternative concept for tidal power plant with reservoir restrictions," Renewable Energy, Elsevier, vol. 34(4), pages 1151-1157.
    12. Shao, Meng & Han, Zhixin & Sun, Jinwei & Xiao, Chengsi & Zhang, Shulei & Zhao, Yuanxu, 2020. "A review of multi-criteria decision making applications for renewable energy site selection," Renewable Energy, Elsevier, vol. 157(C), pages 377-403.
    13. Neill, Simon P. & Angeloudis, Athanasios & Robins, Peter E. & Walkington, Ian & Ward, Sophie L. & Masters, Ian & Lewis, Matt J. & Piano, Marco & Avdis, Alexandros & Piggott, Matthew D. & Aggidis, Geor, 2018. "Tidal range energy resource and optimization – Past perspectives and future challenges," Renewable Energy, Elsevier, vol. 127(C), pages 763-778.
    14. Thomas L. Saaty, 2013. "The Modern Science of Multicriteria Decision Making and Its Practical Applications: The AHP/ANP Approach," Operations Research, INFORMS, vol. 61(5), pages 1101-1118, October.
    15. Milad Shadman & Corbiniano Silva & Daiane Faller & Zhijia Wu & Luiz Paulo de Freitas Assad & Luiz Landau & Carlos Levi & Segen F. Estefen, 2019. "Ocean Renewable Energy Potential, Technology, and Deployments: A Case Study of Brazil," Energies, MDPI, vol. 12(19), pages 1-37, September.
    16. Simone Di Zio & Mara Maretti, 2014. "Acceptability of energy sources using an integration of the Delphi method and the analytic hierarchy process," Quality & Quantity: International Journal of Methodology, Springer, vol. 48(6), pages 2973-2991, November.
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