Ex Ante Life Cycle Assessment and Economic Analysis of New Generation Technologies for Integrated Photovoltaics

This study integrates life cycle assessment and life cycle costing to evaluate the environmental and economic performance of three emerging photovoltaic technologies: dye‐sensitized solar semifabricates (DSSMs), perovskite solar semifabricates (PSMs), and four‐terminal DSSM/PSM tandem semifabricates. The cradle‐to‐gate analysis combines life cycle inventories based on primary laboratory and pilot‐scale data with a scaling‐up model linking experimental results to preindustrial and prospective industrial scenarios. Laboratory energy consumption is quantified using equipment operating times, nominal power ratings, and correction factors reflecting operating conditions. Normalization to the effective processed area enables direct comparison and scalability assessment. Results show that PSMs have the lowest environmental impacts and cost (2.66 × 10 1 kg CO 2 eq, 2.01 × 10 2 CTUe, 8.69 × 10 −4 kg Sb eq, 5.90 × 10 2 Eur/kWp), mainly due to the absence of noble metals. DSSMs are penalized by Ag, Pt, and double fluorine‐doped tin oxide glass, reaching 2.88 × 10 1 kg CO 2 eq, 5.27 × 10 2 CTUe, 5.44 × 10 −3 kg Sb eq, and 3.61 × 10 3 Eur/kWp. Tandem semifabricates inherit hotspots from both subsystems but benefit from higher efficiency. At 1 kWp normalization, efficiency becomes the main differentiating factor: PSMs perform best, DSSMs worst, and tandems intermediately. The framework supports sustainable development of building‐integrated photovoltaics.

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Publication Details

Journal
Solar RRL
Published
2026-10-09
DOI
https://doi.org/10.1002/solr.70498
Primary Topic
Photovoltaic Systems and Sustainability
Type
article
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article

Ex Ante Life Cycle Assessment and Economic Analysis of New Generation Technologies for Integrated Photovoltaics

Adalgisa Sinicropi, Claudia Barolo, Lorenzo Zani, Elisa Veronese et al.
Solar RRL
Photovoltaic Systems and Sustainability
article

Ex Ante Life Cycle Assessment and Economic Analysis of New Generation Technologies for Integrated Photovoltaics

Adalgisa Sinicropi, Claudia Barolo, Lorenzo Zani, Elisa Veronese, Daniele Franchi, Fabio Matteocci, Pollachi Cristina, Parisi M. L., Mazzer M., Fornarini P., Pasculli D., Barichello J., Dessì A., Mariani P., Di Carlo A.
article en

Abstract

This study integrates life cycle assessment and life cycle costing to evaluate the environmental and economic performance of three emerging photovoltaic technologies: dye‐sensitized solar semifabricates (DSSMs), perovskite solar semifabricates (PSMs), and four‐terminal DSSM/PSM tandem semifabricates. The cradle‐to‐gate analysis combines life cycle inventories based on primary laboratory and pilot‐scale data with a scaling‐up model linking experimental results to preindustrial and prospective industrial scenarios. Laboratory energy consumption is quantified using equipment operating times, nominal power ratings, and correction factors reflecting operating conditions. Normalization to the effective processed area enables direct comparison and scalability assessment. Results show that PSMs have the lowest environmental impacts and cost (2.66 × 10 1 kg CO 2 eq, 2.01 × 10 2 CTUe, 8.69 × 10 −4 kg Sb eq, 5.90 × 10 2 Eur/kWp), mainly due to the absence of noble metals. DSSMs are penalized by Ag, Pt, and double fluorine‐doped tin oxide glass, reaching 2.88 × 10 1 kg CO 2 eq, 5.27 × 10 2 CTUe, 5.44 × 10 −3 kg Sb eq, and 3.61 × 10 3 Eur/kWp. Tandem semifabricates inherit hotspots from both subsystems but benefit from higher efficiency. At 1 kWp normalization, efficiency becomes the main differentiating factor: PSMs perform best, DSSMs worst, and tandems intermediately. The framework supports sustainable development of building‐integrated photovoltaics.

Solar RRLVol. 10(19)
University of Siena (IT), University of Rome Tor Vergata (IT), Eurac Research (IT), University of Perugia (IT), Istituto Universitario di Studi Superiori di Pavia (IT), Institute of Materials for Electronics and Magnetism (IT), Consorzio Interuniversitario per lo Sviluppo dei Sistemi a Grande Interfase (IT), Institute of Structure of Matter (IT), Institute for the Chemistry of OrganoMetallic Compounds (IT), Institute for Renewable Energy (Poland) (PL), University of Turin (IT)
Openalex Percentile: Top 20%
Photovoltaic Systems and Sustainability
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