4.6 Article

Environmental Sustainability Approaches and Positive Energy Districts: A Literature Review

Journal

SUSTAINABILITY
Volume 13, Issue 23, Pages -

Publisher

MDPI
DOI: 10.3390/su132313063

Keywords

Positive Energy Districts; sustainable districts; Life Cycle Assessment; circular economy; key performance indicators

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The concept of Positive Energy Districts has gained attention for promoting clean energy transition, but further research is needed for sustainable design optimization. Sustainability aspects like sustainable food and urban heat islands mitigation are not adequately assessed, and fragmented thinking limits circularity potential. Targeted strategies and integrations in Key Performance Indicators framework are suggested for comprehensive environmental design.
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.

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