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Dive into the research topics where Matthias Rüttinger is active.

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Featured researches published by Matthias Rüttinger.


Meeting Abstracts | 2009

Recent Development Aspects of Metal Supported Thin-Film SOFC

Thomas Franco; Marco Brandner; Matthias Rüttinger; Georg Kunschert; Andreas Venskutonis; Lorenz Sigl

In recent years, the metal supported solid oxide fuel cell (MSC) technology has attained high interest for the electrical power supply in vehicles as an Auxiliary Power Unit (APU) that operates independently from the main engine. Its advantages compared with other fuel cell technologies can be seen in a higher mechanical stability and in a better thermo and redox behaviour. Those attributes are urgently needed for mobile applications.


Powder Metallurgy | 2015

Metal-supported palladium membranes for hydrogen separation

Markus Haydn; K. Ortner; Thomas Franco; W. Schafbauer; A. Behrens; B. Dittmar; S. Hummel; M. Sulik; Matthias Rüttinger; Andreas Venskutonis; Lorenz Sigl

The demand for clean and green energy has raised the consumption of hydrogen continuously during the last years. Hydrogen is most economically produced in large scale systems by methane steam reforming followed by pressure swing adsorption (PSA). However, with a rising demand for small-scale production of hydrogen, and as down-scaling to smaller PSA-systems ( < 500 Nm3/h H2) is not economic, a substantial demand for hydrogen generation using palladium membranes has emerged. Porous tubes made of an oxide dispersion strengthened powder metallurgy Fe-Cr alloy (trade name ITM) constitute the backbone for the thin solid Pd films. The tubes provide mechanical and chemical long-term stability in atmospheres with hydrogen- and carbon-species at operation temperatures up to 600°C. A porous ceramic diffusion barrier layer (DBL) is deposited between the ITM-backbone and the Pd thin-film to avoid Pd diffusion into the Fe-Cr substrate and thereby ensure long-term integrity of the system. The Pd thin-film with a thickness < 10 μm is applied onto the DBL by a proprietary coating technology. This paper describes the production route of a tube/diffusion-barrier-layer/Pd-membrane system, its structure and permeation properties.


Journal of The European Ceramic Society | 2013

Development of a metallic/ceramic composite for the deposition of thin-film oxygen transport membrane

Y. Xing; Stefan Baumann; Sven Uhlenbruck; Matthias Rüttinger; Andreas Venskutonis; Wilhelm Albert Meulenberg; Detlev Stöver


Journal of the American Ceramic Society | 2011

Chemical Compatibility Investigation of Thin‐Film Oxygen Transport Membranes on Metallic Substrates

Ye Xing; Stefan Baumann; Doris Sebold; Matthias Rüttinger; Andreas Venskutonis; Wilhelm Albert Meulenberg; Detlev Stöver


219th ECS Meeting | 2011

Development of Metal-Supported Solid Oxide Fuel Cells

Thomas Franco; Markus Haydn; Robert Mücke; André Weber; Matthias Rüttinger; Oliver Büchler; Sven Uhlenbruck; Norbert H. Menzler; Andreas Venskutonis; Lorenz Sigl


Meeting Abstracts | 2011

Metal-Supported Cells with Comparable Performance to Anode-Supported Cells in Short-Term Stack Environment

Matthias Rüttinger; Robert Mücke; Thomas Franco; Oliver Büchler; Norbert H. Menzler; Andreas Venskutonis


Archive | 2010

MEMBRANE TUBE AND REACTOR HAVING A MEMBRANE TUBE

Wolfgang Häring; Nicole Schödel; Axel Behrens; Klaus Klapper; Matthias Rüttinger; Karlheinz Scheiber; Markus Kögl; Marco Brandner


Archive | 2018

TUBE À MEMBRANE

Markus Haydn; Matthias Rüttinger; Markus Kögl


Archive | 2011

Anordnung für eine Brennstoffzelle sowie Verfahren zu deren Herstellung

Robert Mücke; Hans Peter Buchkremer; Marco Brandner; Thomas Franco; Matthias Rüttinger; Andreas Venskutonis; Norbert H. Menzler


Archive | 2010

Membranrohr und Reaktor mit Membranrohr

Heinz-Wolfgang Häring; Axel Behrens; Nicole Schödel; Klaus Klapper; Matthias Rüttinger; Karlheinz Scheiber; Markus Kögl; Marco Brandner

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Robert Mücke

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