The Evolution of European Solar-to-X Research: From Fundamental Material Science to the SPECTRUM Polygeneration Framework

Pellegrini, Marco ; Rakshya, Shrestha (2026) The Evolution of European Solar-to-X Research: From Fundamental Material Science to the SPECTRUM Polygeneration Framework. [Working paper]
Full text disponibile come:
[thumbnail of The Evolution of European Solar-to-X Research (working paper)]
Anteprima
Documento di testo(pdf) (The Evolution of European Solar-to-X Research (working paper))
Licenza: Creative Commons: Attribuzione 4.0(CC BY 4.0)

Download (846kB) | Anteprima

Abstract

The European Union’s commitment to achieving climate neutrality by 2050 under the Green Deal and REPowerEU mandates rapid industrial decarbonization. However, the industrial sector remains heavily constrained by its reliance on fossil fuels primarily for process heat, high land-use competition, and growing environmental liabilities such as energy-intensive wastewater management. Traditional, single-product solar deployments (e.g., standalone photovoltaic or hydrogen facilities) fail to address this multi-vector energy-water nexus and suffer from poor economic viability. This paper presents a systematic review of European Union-funded Solar-to-X (S2X) research across the FP7, Horizon 2020, and Horizon Europe framework programs. Employing a thematic evolutionary framework, the study evaluates project trajectories from early-stage material science breakthroughs (NanoPEC, ArtipHyction, PECDEMO) to multi-megawatt industrial scale-ups (HYDROSOL series, PECSYS) and the emerging polygeneration paradigm (PH2OTOGEN, GH2, SOL2HY2, DESIRED, Sun-To-X, SOLEAS). By synthesising performance metrics, thermal dynamics, and co-product economics across these initiatives, this paper maps how historical lessons converge into the novel SPECTRUM framework. SPECTRUM introduces a decentralised concentrating collector that utilises physical spectral splitting to thermally decouple photovoltaic cells from absorbers, matching specific wavebands to high-efficiency processes: ultraviolet for simultaneous photocatalytic H2 evolution and industrial wastewater remediation, visible light for clean electricity, and infrared for high-temperature heat generation. Ultimately, this review establishes full-spectrum harvesting and circular polygeneration as the definitive blueprint for scalable, high-power-density industrial infrastructure.

Abstract
Tipologia del documento
Working paper
Autori
AutoreORCIDAffiliazioneROR
Pellegrini, Marco0000-0003-4878-4505Interdepartmental Centre for Industrial Research in Renewable Resources, Environment, Sea and Energy (CIRI-FRAME), University of Bologna01111rn36
Rakshya, ShresthaInterdepartmental Centre for Industrial Research in Renewable Resources, Environment, Sea and Energy (CIRI-FRAME), University of Bologna01111rn36
Parole chiave
Solar-to-X; polygeneration; hydrogen; wastewater; SPECTRUM
Settori scientifico-disciplinari
DOI
Data di deposito
30 Lug 2026 07:27
Ultima modifica
30 Lug 2026 12:56
Nome del Progetto
SPECTRUM - Solar PolygEneration Collector for combined heaT, poweR, hydrogen fUel and wastewater treatMent
Programma di finanziamento
EC - HE
URI

Altri metadati

Statistica sui download

Statistica sui download

Gestione del documento: Visualizza il documento

^