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Environmental Sustainability Approaches and Positive Energy Districts: A Literature Review

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  • Ilaria Marotta

    (Department of Engineering, University of Palermo, Viale Delle Scienze Edificio 9, 90121 Palermo, Italy)

  • Francesco Guarino

    (Department of Engineering, University of Palermo, Viale Delle Scienze Edificio 9, 90121 Palermo, Italy)

  • Sonia Longo

    (Department of Engineering, University of Palermo, Viale Delle Scienze Edificio 9, 90121 Palermo, Italy)

  • Maurizio Cellura

    (Department of Engineering, University of Palermo, Viale Delle Scienze Edificio 9, 90121 Palermo, Italy)

Abstract

During the last decade, increasing attention has been paid to the emerging concept of Positive Energy Districts (PED) with the aim of pushing the transition to clean energy, but further research efforts are needed to identify design approaches optimized from the point of view of sustainable development. In this context, this literature review is placed, with a specific focus on environmental sustainability within innovative and eco-sustainable districts. The findings show that some sustainability aspects such as sustainable food, urban heat islands mitigation and co-impacts, e.g., green gentrification, are not adequately assessed, while fragmented thinking limits the potential of circularity. In this regard, targeted strategies should be developed. On the other hand, the Key Performance Indicators framework needs some integrations. In this direction, indicators were suggested, among those defined in the Sustainable Development Agenda, the main European standards and initiatives and the relevant literature experiences. Future outlooks should be directed towards: the harmonization of the Life Cycle Assessment in PEDs with reference to modeling assumptions and analysis of multiple impacts; the development of dynamic environmental analyses taking into account the long-term uncertainty due to climate change, data availability and energy decarbonization; the combination of Life Cycle Assessment and Key Performance Indicators based techniques, from a holistic thinking perspective, for a comprehensive design environment and the analysis of the contribution of energy flexibility approaches on the environmental impact of a project.

Suggested Citation

  • Ilaria Marotta & Francesco Guarino & Sonia Longo & Maurizio Cellura, 2021. "Environmental Sustainability Approaches and Positive Energy Districts: A Literature Review," Sustainability, MDPI, vol. 13(23), pages 1-45, November.
  • Handle: RePEc:gam:jsusta:v:13:y:2021:i:23:p:13063-:d:687930
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    References listed on IDEAS

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    1. Krista Timeus & Jordi Vinaixa & Francesc Pardo-Bosch, 2020. "Creating business models for smart cities: a practical framework," Public Management Review, Taylor & Francis Journals, vol. 22(5), pages 726-745, May.
    2. Giovanni Bianco & Barbara Bonvini & Stefano Bracco & Federico Delfino & Paola Laiolo & Giorgio Piazza, 2021. "Key Performance Indicators for an Energy Community Based on Sustainable Technologies," Sustainability, MDPI, vol. 13(16), pages 1-14, August.
    3. Annette Hafner & Simon Slabik & Michael Storck, 2020. "Urban Site Development as Temporal Carbon Storage—A Case Study in Germany," Sustainability, MDPI, vol. 12(14), pages 1-12, July.
    4. Eric Korpi & Timo Ala-Risku, 2008. "Life cycle costing: a review of published case studies," Managerial Auditing Journal, Emerald Group Publishing, vol. 23(3), pages 240-261, March.
    5. Karunathilake, Hirushie & Hewage, Kasun & Mérida, Walter & Sadiq, Rehan, 2019. "Renewable energy selection for net-zero energy communities: Life cycle based decision making under uncertainty," Renewable Energy, Elsevier, vol. 130(C), pages 558-573.
    6. Carine Lausselet & Linda Ager‐Wick Ellingsen & Anders Hammer Strømman & Helge Brattebø, 2020. "A life‐cycle assessment model for zero emission neighborhoods," Journal of Industrial Ecology, Yale University, vol. 24(3), pages 500-516, June.
    7. Cabeza, Luisa F. & Rincón, Lídia & Vilariño, Virginia & Pérez, Gabriel & Castell, Albert, 2014. "Life cycle assessment (LCA) and life cycle energy analysis (LCEA) of buildings and the building sector: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 29(C), pages 394-416.
    8. Kirchherr, Julian & Reike, Denise & Hekkert, Marko, 2017. "Conceptualizing the circular economy: An analysis of 114 definitions," Resources, Conservation & Recycling, Elsevier, vol. 127(C), pages 221-232.
    9. Andrea Gabaldón Moreno & Fredy Vélez & Beril Alpagut & Patxi Hernández & Cecilia Sanz Montalvillo, 2021. "How to Achieve Positive Energy Districts for Sustainable Cities: A Proposed Calculation Methodology," Sustainability, MDPI, vol. 13(2), pages 1-19, January.
    10. Stefano Bracco & Federico Delfino & Paola Laiolo & Andrea Morini, 2018. "Planning & Open-Air Demonstrating Smart City Sustainable Districts," Sustainability, MDPI, vol. 10(12), pages 1-14, December.
    11. Majdalani, Naim & Aelenei, Daniel & Lopes, Rui Amaral & Silva, Carlos Augusto Santo, 2020. "The potential of energy flexibility of space heating and cooling in Portugal," Utilities Policy, Elsevier, vol. 66(C).
    12. Silvia Erba & Lorenzo Pagliano, 2021. "Combining Sufficiency, Efficiency and Flexibility to Achieve Positive Energy Districts Targets," Energies, MDPI, vol. 14(15), pages 1-32, August.
    13. Becchio, Cristina & Bottero, Marta Carla & Corgnati, Stefano Paolo & Dell’Anna, Federico, 2018. "Decision making for sustainable urban energy planning: an integrated evaluation framework of alternative solutions for a NZED (Net Zero-Energy District) in Turin," Land Use Policy, Elsevier, vol. 78(C), pages 803-817.
    14. Patrizia Lombardi & Francesca Abastante & Sara Torabi Moghadam & Jacopo Toniolo, 2017. "Multicriteria Spatial Decision Support Systems for Future Urban Energy Retrofitting Scenarios," Sustainability, MDPI, vol. 9(7), pages 1-13, July.
    15. Su, Chang & Urban, Frauke, 2021. "Circular economy for clean energy transitions: A new opportunity under the COVID-19 pandemic," Applied Energy, Elsevier, vol. 289(C).
    16. Anil Engez & Seppo Leminen & Leena Aarikka-Stenroos, 2021. "Urban Living Lab as a Circular Economy Ecosystem: Advancing Environmental Sustainability through Economic Value, Material, and Knowledge Flows," Sustainability, MDPI, vol. 13(5), pages 1-17, March.
    17. Tumminia, Giovanni & Guarino, Francesco & Longo, Sonia & Ferraro, Marco & Cellura, Maurizio & Antonucci, Vincenzo, 2018. "Life cycle energy performances and environmental impacts of a prefabricated building module," Renewable and Sustainable Energy Reviews, Elsevier, vol. 92(C), pages 272-283.
    18. Maria Luisa Lode & Geert te Boveldt & Cathy Macharis & Thierry Coosemans, 2021. "Application of Multi-Actor Multi-Criteria Analysis for Transition Management in Energy Communities," Sustainability, MDPI, vol. 13(4), pages 1-18, February.
    19. Jaume Salom & Meril Tamm & Inger Andresen & Davide Cali & Ábel Magyari & Viktor Bukovszki & Rebeka Balázs & Paraskevi Vivian Dorizas & Zsolt Toth & Sheikh Zuhaib & Clara Mafé & Caroline Cheng & András, 2021. "An Evaluation Framework for Sustainable Plus Energy Neighbourhoods: Moving Beyond the Traditional Building Energy Assessment," Energies, MDPI, vol. 14(14), pages 1-25, July.
    20. Adriano Bisello, 2020. "Assessing Multiple Benefits of Housing Regeneration and Smart City Development: The European Project SINFONIA," Sustainability, MDPI, vol. 12(19), pages 1-28, September.
    21. Marc Goergen & Christine A. Mallin & Eve Mitleton-Kelly & Ahmed Al-Hawamdeh & Iris H-Y Chiu, 2010. "Corporate Governance and Complexity Theory," Books, Edward Elgar Publishing, number 13927.
    22. Miguel Á. García-Fuentes & Rubén García-Pajares & Cecilia Sanz & Alberto Meiss, 2018. "Novel Design Support Methodology Based on a Multi-Criteria Decision Analysis Approach for Energy Efficient District Retrofitting Projects," Energies, MDPI, vol. 11(9), pages 1-19, September.
    23. Javier Antolín & Cristina de Torre & Miguel Á. García-Fuentes & Ana Pérez & Isabel Tomé & María L. Mirantes & Elena Hoyos, 2020. "Development of an Evaluation Framework for Smartness and Sustainability in Cities," Sustainability, MDPI, vol. 12(12), pages 1-25, June.
    24. Mohamad Monkiz Khasreen & Phillip F. G. Banfill & Gillian F. Menzies, 2009. "Life-Cycle Assessment and the Environmental Impact of Buildings: A Review," Sustainability, MDPI, vol. 1(3), pages 1-28, September.
    25. Hossein Shahrokni & Louise Årman & David Lazarevic & Anders Nilsson & Nils Brandt, 2015. "Implementing Smart Urban Metabolism in the Stockholm Royal Seaport: Smart City SRS," Journal of Industrial Ecology, Yale University, vol. 19(5), pages 917-929, October.
    26. Anne Wambui Mutahi & Laura Borgese & Claudio Marchesi & Michael J. Gatari & Laura E. Depero, 2021. "Indoor and Outdoor Air Quality for Sustainable Life: A Case Study of Rural and Urban Settlements in Poor Neighbourhoods in Kenya," Sustainability, MDPI, vol. 13(4), pages 1-18, February.
    27. Renata Paola Dameri, 2017. "Smart City Definition, Goals and Performance," Progress in IS, in: Smart City Implementation, chapter 0, pages 1-22, Springer.
    28. Sarah Dooling, 2009. "Ecological Gentrification: A Research Agenda Exploring Justice in the City," International Journal of Urban and Regional Research, Wiley Blackwell, vol. 33(3), pages 621-639, September.
    29. Małgorzata Fedorczak-Cisak & Anna Kotowicz & Elżbieta Radziszewska-Zielina & Bartłomiej Sroka & Tadeusz Tatara & Krzysztof Barnaś, 2020. "Multi-Criteria Optimisation of an Experimental Complex of Single-Family Nearly Zero-Energy Buildings," Energies, MDPI, vol. 13(7), pages 1-30, March.
    30. Vincenzo Muteri & Maurizio Cellura & Domenico Curto & Vincenzo Franzitta & Sonia Longo & Marina Mistretta & Maria Laura Parisi, 2020. "Review on Life Cycle Assessment of Solar Photovoltaic Panels," Energies, MDPI, vol. 13(1), pages 1-38, January.
    31. Rossi, Federico & Heleno, Miguel & Basosi, Riccardo & Sinicropi, Adalgisa, 2021. "LCA driven solar compensation mechanism for Renewable Energy Communities: the Italian case," Energy, Elsevier, vol. 235(C).
    32. Walker, Shalika & Labeodan, Timilehin & Boxem, Gert & Maassen, Wim & Zeiler, Wim, 2018. "An assessment methodology of sustainable energy transition scenarios for realizing energy neutral neighborhoods," Applied Energy, Elsevier, vol. 228(C), pages 2346-2360.
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