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Downcycling and Upcycling in Rehabilitation and Adaptive Reuse of Pre-Existing Buildings: Re-Designing Technological Performances in an Environmental Perspective

Academic Article
Publication Date:
2021
Short description:
Downcycling and Upcycling in Rehabilitation and Adaptive Reuse of Pre-Existing Buildings: Re-Designing Technological Performances in an Environmental Perspective / MONSÙ SCOLARO, A., De Medici, S.. - In: ENERGIES. - ISSN 1996-1073. - 14:(2021), pp. 1-23. [10.3390/en14216863]
abstract:
The abandonment of the built heritage, as a result of functional or technological obsolescence or as a consequence of cultural, social, and economic trends, is steadily increasing. This great
number of buildings, worldwide spread, offers a huge opportunity to reduce the environmental impacts related to the construction industry. Nonetheless, the recovery and reuse interventions that
require the implementation of residual technological performance, to accommodate new uses, are not always environmentally neutral. Therefore, a new design approach needs to be developed so
as to improve the buildings’ technological performance and enhance resources and energy already incorporated in buildings. The circular economy principles in the building sector, performance-based
building design together with downcycling and upcycling theories are applied to develop a methodology aiming to reduce the environmental impacts within the rehabilitation and refurbishment
design process. Starting from the building analysis phase (historical, material, construction) residual performance is evaluated; then the design phase demonstrates that, according to downcycling and
upcycling design strategies applied on building components and materials, it is possible improving the building to the required new uses while minimizing transformations and effectively reducing
related environmental impacts. The reduction of environmental impacts depends on a careful assessment of the residual technological and structural performance that the building still provides, by
involving limited performance implementations to balance rehabilitation needs and environmental protection goals.
Iris type:
1.1 Articolo in rivista
Keywords:
building recovery; energy embodied; downcycling; upcycling; environmental balance
List of contributors:
MONSÙ SCOLARO, Antonello; De Medici, Stefania
Authors of the University:
MONSÙ SCOLARO Antonello
Handle:
https://iris.uniss.it/handle/11388/254841
Full Text:
https://iris.uniss.it//retrieve/handle/11388/254841/186513/energies-14-06863-v2.pdf
Published in:
ENERGIES
Journal
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