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Hydropower potential for energy recovery in wastewater systems. Assessment methodology and practical application

  • Autores: Rosa M. Llácer Iglesias
  • Directores de la Tesis: Modesto Pérez Sánchez (dir. tes.), Petra Amparo López Jiménez (dir. tes.)
  • Lectura: En la Universitat Politècnica de València ( España ) en 2023
  • Idioma: inglés
  • Tribunal Calificador de la Tesis: Silvia Meniconi (presid.), María A.V. Pachés Giner (secret.), Caterina Capponi (voc.)
  • Programa de doctorado: Programa de Doctorado en Ingeniería del Agua y Medioambiental por la Universitat Politècnica de València
  • Materias:
  • Enlaces
    • Tesis en acceso abierto en: RiuNet
  • Resumen
    • The Sustainable Development Goals establish a universal agenda to call for action and achieve sustainability in essential aspects of human life. Nowadays the energy demand for wastewater treatment is very high and it is expected to increase in the next decade. Therefore, the performance of this industry will have an effect on SDG 6, but also on SDG 7 and 13. In this context, it is necessary to apply the sustainability approach to wastewater systems to simultaneously achieve all these goals. More sustainable energy performance of wastewater treatment plants (WWTPs) implies two parallel steps: a reduction of energy consumption and the implementation of renewable energy technologies. To take action in the short term, existing mature technologies should be explored to evaluate their potential contribution to the decarbonization roadmaps in the wastewater industry. Hydropower might be one of these technologies.

      The main objective of this thesis is to develop a methodology, addressed to wastewater governance stakeholders, to assess the potential of hydropower application to WWTPs, regarding all three dimensions of sustainability. According to this, the final aim of this study is to illustrate the practical possibilities, usually unknown, that hydropower could offer to the wastewater sector in the pathway towards more sustainable systems.

      To achieve that aim, the steps in this research included: 1) Contextualization: The review of the state of the art was conducted in two lines. Firstly, about the energy needs for wastewater treatment and technologies for renewable energy generation. Secondly, about hydropower for energy recovery from existing networks. To complete the framework, this stage was extended with an exhaustive search and analysis of real case studies of hydropower applications to WWTPs. In this stage, 49 case studies were identified, and their energy data were extracted to obtain energy self-sufficiency indicators and analyze their renewable energy profiles. Furthermore, the technical data of their hydropower systems were examined. The overall results of this stage showed that there is an existing experience that is not being used to explore hydropower as an option for energy recovery in the wastewater sector.

      2) Methodology development: In a preliminary step, existing methodologies for hydropower potential assessment were analyzed and compared with the framework obtained from the contextualization. As a result, a methodology with a broader approach was developed. First, it introduces the consideration of the decision-making level to select the scope of the study (a group of WWTPs). Then, the proposed methodology consists of two steps. In step 1 (technical assessment of hydropower potential) individual power output is estimated for each site. This step was validated with the data obtained during the contextualization. In step 2 (global assessment), after analyzing existing guidelines, a multi-criteria decision analysis (MCDA) method with sustainability criteria is defined. As the alignment with the context is a key issue introduced in this proposal, this method is based on the guidelines in the wastewater governance instrument in Spain (PDSEAR).

      3) Practical application: This stage completes the research with the application of the proposed methodology to a case study, a group of 186 WWTPs in the region of Valencia (Spain), selected according to their management model. The generation was estimated at 340,472 kWh/year, but it was found that the potential could be higher. The results also showed that the perspective may be different, if the outcomes from step 1, are put into context in step 2, with the application of the MCDA method. This research demonstrates that, in a sustainability framework, hydropower might be an interesting option to consider for the decarbonization of wastewater systems. Based on this study, decision-making stakeholders could design their own methodologies, adapted to the specific context.


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