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The EU-FP7 Project SUCCESS – Scale-up of Oxygen Carrier for Chemical Looping Combustion using Environmentally Sustainable Materials

Sammendrag

The paper gives a high level overview of the work performed in the EU-FP7 funded project SUCCESS (Scale-up of oxygen carrier for chemical looping combustion using environmentally sustainable materials). The project is the most recent one in a series of successful EU-funded research projects on the chemical looping combustion (CLC) technology. Its main objective is to perform the necessary research in order to demonstrate the CLC technology in the range of 10 MW fuel power input. The main focus is on scale-up of production of two different oxygen carrier materials using large scale equipment and industrially available raw materials. This will guarantee availability of oxygen carrier material at tonne scale. The scale-up of the two materials, a Cu and a Mn based, was successful and first tests with the Cu material have already been performed in four different pilot units up to 150 kW where the material showed excellent performance regarding fuel conversion. In addition to technology scale-up, extensive end-user evaluation is performed. This evaluation includes investigations on health, security and environmental impacts (HSE), a life cycle analysis and a techno-economic analysis to compare the CLC technology for steam generation against the current state-of-the-art technologies.
Les publikasjonen

Kategori

Vitenskapelig artikkel

Oppdragsgiver

  • EC/FP7 / 608571

Språk

Engelsk

Forfatter(e)

  • Stefan Penthor
  • Tobias Mattisson
  • Juan Adánez
  • Stéphane Bertolin
  • Enrica Masi
  • Yngve Larring
  • Øyvind Langørgen
  • Jochen Ströhle
  • Frans Snijkers
  • Lieve Geerts
  • Knuth Albertsen
  • Gareth Williams
  • Otmar Bertsch
  • Olivier Authier
  • Ytalo Dávila
  • Mahdi Yazdanpanah
  • Tobias Pröll
  • Anders Lyngfelt
  • Hermann Hofbauer

Institusjon(er)

  • Technische Universität Wien
  • Chalmers tekniska högskola
  • Instituto de Carboquímica
  • IFP Energies nouvelles
  • Institut national polytechnique de Toulouse
  • SINTEF Industri / Prosessteknologi
  • SINTEF Energi AS / Termisk energi
  • Technische Universität Darmstadt
  • VITO NV - Vlaamse Instelling voor Technologisch Onderzoek NV
  • Nederland
  • Storbritannia og Nord-Irland
  • Østerrike
  • Frankrike
  • TOTAL
  • Universität für Bodenkultur Wien

År

2017

Publisert i

Energy Procedia

ISSN

1876-6102

Forlag

Elsevier

Årgang

114

Side(r)

395 - 406

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