Life Cycle Assessment of ZERAF: Quantifying Carbon Footprint and Life-Cycle Costs

This report presents the life-cycle environmental and economic assessment of ZERAF, an adaptive opaque façade technology designed to reduce building energy demand through dynamic thermal modulation of the building envelope. A methodological framework is developed to compare ZERAF with conventional façade and building-system solutions using Life Cycle Assessment (LCA), Life Cycle Costing (LCC), circularity metrics and building-performance indicators over a 50-year period. The study evaluates complete building-level intervention packages for new construction, deep retrofit and minor retrofit scenarios across seven representative European climates. Results for the single-family-house archetype show that ZERAF consistently achieves the lowest operational carbon emissions among new-construction and deep-retrofit solutions, reducing heating demand by up to 88%, cooling demand by up to 50%, and operational carbon emissions by up to 19%. ZERAF also demonstrates strong circularity performance. While higher embodied impacts and investment costs currently limit whole-life environmental and economic performance, alternative material configurations indicate substantial improvement potential, with embodied carbon reductions of up to 58% and embodied cost reductions of up to 75%. Overall, the results confirm the effectiveness of ZERAF's adaptive principle and identify key directions for further optimisation.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22770501
Primary Topic
Environmental Impact and Sustainability
Type
article
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Life Cycle Assessment of ZERAF: Quantifying Carbon Footprint and Life-Cycle Costs

Morteza Zarei, Miren Juaristi
Zenodo (CERN European Organization for Nuclear Research)
Environmental Impact and Sustainability
article

Life Cycle Assessment of ZERAF: Quantifying Carbon Footprint and Life-Cycle Costs

Morteza Zarei, Miren Juaristi
article en

Abstract

This report presents the life-cycle environmental and economic assessment of ZERAF, an adaptive opaque façade technology designed to reduce building energy demand through dynamic thermal modulation of the building envelope. A methodological framework is developed to compare ZERAF with conventional façade and building-system solutions using Life Cycle Assessment (LCA), Life Cycle Costing (LCC), circularity metrics and building-performance indicators over a 50-year period. The study evaluates complete building-level intervention packages for new construction, deep retrofit and minor retrofit scenarios across seven representative European climates. Results for the single-family-house archetype show that ZERAF consistently achieves the lowest operational carbon emissions among new-construction and deep-retrofit solutions, reducing heating demand by up to 88%, cooling demand by up to 50%, and operational carbon emissions by up to 19%. ZERAF also demonstrates strong circularity performance. While higher embodied impacts and investment costs currently limit whole-life environmental and economic performance, alternative material configurations indicate substantial improvement potential, with embodied carbon reductions of up to 58% and embodied cost reductions of up to 75%. Overall, the results confirm the effectiveness of ZERAF's adaptive principle and identify key directions for further optimisation.

Zenodo (CERN European Organization for Nuclear Research)
Eurac Research (IT)
Responsible consumption and production
Openalex Percentile: Top 18%
Environmental Impact and Sustainability
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Life Cycle Assessment of ZERAF: Quantifying Carbon Footprint and Life-Cycle Costs — Morteza Zarei, Miren Juaristi · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS