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Project/Service Agreement:621252

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Status
Projeto EncerradoClosed
Publication
PublicadoPublished
General Data
Code: 66774
 
Reference: 621252
Short name: PECDEMO
Title: Photoelectrochemical Demonstrator Device for Solar Hydrogen Generation
Competitive Funding: Yes
Does it involve businesses?:
No. of Participating Institutions: 7
Scope
Type: Funded Project
 
Geographical Scope: International
 
Type of Action: Cooperation
Funding
Programme: 7.º Programa-Quadro de IDT
Funding Institution: COMISSÃO EUROPEIA
Financial Geographical Scope: International
Scheduling
Planned Start Date: 2014-04-01
Effective Start Date: 2014-04-01
Expected Completion Date: 2017-03-31
Effective Completion Date: 2017-03-31
Budget
Currency: EUR
 
Total Approved Budget: 3.207.509,00 EUR
Details
Summary: To address the challenges of solar energy capture and storage in the form of a chemical fuel, we will develop a hybrid photoelectrochemical-photovoltaic (PEC-PV) tandem device for light-driven water splitting. This concept is based on a visible light-absorbing metal oxide photoelectrode, which is immersed in water and placed in front of a smaller-bandgap thin film PV cell. This tandem approach ensures optimal use of the solar spectrum, while the chemically stable metal oxide protects the underlying PV cell from photocorrosion. Recent breakthroughs have brought metal oxide photoelectrodes close to the efficiency levels required for practical applications. We will use our extensive combined expertise on nanostructuring, photon management, and interface engineering to design innovative ways to solve the remaining bottlenecks, and achieve a solar-to-H2 (STH) energy conversion efficiency of 10% for a small area device, with less than 10% performance decrease over 1000 h. In parallel, our academic and industrial partners will collaborate to develop large-area deposition technologies for scale-up to ≥50 cm2. This will be combined with the large-area PV technology already available within the consortium, and used in innovative cell designs that address critical scale-up issues, such as mass transport limitations and resistive losses. The finished design will be used to construct a water splitting module consisting of 4 identical devices that demonstrates the scalability of the technology. This prototype will be tested in the field, and show a STH efficiency of 8% with the same stability as the small area device. In parallel, our partners from industry and research institutions will work together on an extensive techno-economic and life-cycle analysis based on actual performance characteristics. This will give a reliable evaluation of the application potential of photoelectrochemical hydrogen production, and further strengthen Europe's leading position in this Ver mais. Adequado para parcelas de texto incompletas e que, através deste ícone, permite-se que o utilizador leia o texto todo.
Scientific Context
Scientific Domain (FOS - Level 2): Engineering and technology > Chemical engineering

Academic fields (CORDIS - Level 5)

  • Technological sciences > Engineering > Chemical engineering

Keywords

  • Photoelectrochemical
  • Solar Hydrogen Generation
Documents
Mais informações There are no Documents associated with the Project.

Publications associated with the Project

Article in International Scientific Journal
Paula Dias (Author) (FEUP); Luísa Andrade (Author) (FEUP); Adélio Mendes (Author) (FEUP)
2017
Article in International Scientific Journal
Vilanova, A. (Author) (FEUP); Lopes, T. (Author) (FEUP); Carsten Spenke (Author) (Other); Michael Wullenkord (Author) (Other); Adélio Mendes (Author) (FEUP)
2018
Article in International Scientific Journal
Paula Dias (Author) (FEUP); António Vilanova (Author) (FEUP); Tânia Lopes (Author) (FEUP); Luísa Andrade (Author) (FEUP); Adélio Mendes (Author) (FEUP)
2016
Article in International Scientific Journal
José D. Costa (Author) (Other); Paula Quitério (Author) (Other); Arlete Apolinário (Author) (FEUP); Célia T. Sousa (Author) (Other); João Azevedo (Author) (FEUP); João Ventura (Author) (Other); Luísa Andrade (Author) (FEUP); Adélio Mendes (Author) (FEUP); João P. Araújo (Author) (Other)
2016
Article in International Scientific Journal
Arlete Apolinário (Author) (FCUP); Tânia Lopes (Author) (FEUP); Claúdia Costa (Author) (Other); João P. Araújo (Author) (Other); Adélio Mendes (Author) (FEUP)
2019
Article in International Scientific Journal
Paula Dias (Author) (FEUP); João Azevedo (Author) (FEUP); Luísa Andrade (Author) (FEUP); Adélio Mendes (Author) (FEUP); Marcel Schreier (Author) (Other); S. David Tilley (Author) (Other); Jingshan Luo (Author) (Other); Dongqin Bi (Author) (Other); Anders Hagfeldt (Author) (Other); Michael Grätzel (Author) (Other); Matthew T. Mayer (Author) (Other)
2015
Article in International Scientific Journal
Vilanova, A. (Author) (Other); Dias, P. (Author) (FEUP); azevedo, j. (Author) (FEUP); Wullenkord, M. (Author) (Other); Spenke, C. (Author) (Other); Lopes, T. (Author) (FEUP); Adélio Mendes (Author) (FEUP)
2020
Summary of Presentation in an International Conference
Adélio Mendes (Author) (FEUP)
2016
Institutions Participating in the Project
Institution Contact Create Tab?
Name Short name Country Type Participation Name Telephone Email
HELMHOLTZ-ZENTRUM BERLIN FUR MATERIALIEN UND ENERGIE GMBH HZB Alemanha Instituto Proponent
Deutsches Zentrum für Luft- und Raumfahrt e. V. DLR Alemanha RD Institute Partner
Ecole Polytechnique Fédérale de Lausanne EPTFL Suíça Polytechnic Partner
EVONIK INDUSTRIES AG Alemanha Company Partner
Faculdade de Engenharia da Universidade do Porto FEUP Portugal University Partner Adélio Mendes +351225081695 mendes@fe.up.pt
Solaronix S.A. Suíça Company Partner
TECHNION - Israel Institute of Technology TECHNION Israel RD Institute Partner
 
Budgets and Teams
Approved Budget: 374.696,00 EUR
Approved Funded Amount: 247.583,00 EUR
Approved co-funded Amount: 127.113,00 EUR
Funding Rate: 66,08 %
Confidential Budget:

People in the Project

Institution Name Short name Role Dedication (%) Contribution (%) Allocation
Start date End date
FEUP Adélio Miguel Magalhães Mendes AMM Official Researcher at the OU 0 90 2014-04-01 2017-03-31
FEUP António Maximino Nogueira Vilanova AMNV Grant recipient 100 2014-09-26 2017-03-31
FEUP Arlete Ondina Alves da Silva Apolinário AOASA Grant recipient 100 2015-08-03 2017-03-31
FEUP Fernão Domingos de Montenegro Baptista Malheiro de Magalhães FDM Researcher 2014-04-01 2017-03-31
FEUP João António Pereira de Carvalho Bastos JCB Researcher 2,5 2014-04-01 2017-03-31
FEUP Maria Joana Monteiro de Carvalho Peres MJP Researcher 2,5 2014-04-01 2017-03-31
FEUP Olga Cristina Pastor Nunes OPN Researcher 2,5 2014-04-01 2017-03-31
FEUP Paulo José Lopes Machado Portugal PJP Researcher 2,5 2014-04-01 2017-03-31
FEUP Sérgio Daniel Gaspar de Miranda SDGM Grant recipient 100 2015-10-27 2016-10-26
FEUP Tânia Sofia Teixeira Lopes TSTL Grant recipient 100 2014-11-10 2015-04-30

Technicians in the Project

Technician Contact
FEUP 506601 Liliana Carla Tavares Coelho
Laboratories
Mais informações There are no Laboratories associated with the Project.
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