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Featured researches published by Markus Pfeifer.


SAE transactions | 2003

Advanced Emission Control Technologies for PM Reduction in Heavy-Duty Applications

T. Matsumoto; M. Hori; T. Nakane; M. Horiuchi; Markus Pfeifer; Paul Dr. Spurk; Jürgen Gieshoff; B. van Setten; Egbert Lox; Greg Garr; M. Crocker

1. ABSTRACT In this paper results obtained with different particulate matter (PM) reduction technologies are presented. Diesel oxidation catalysts (DOC) are well known as a reliable PM reduction technology which can efficiently remove the soluble organic fraction (SOF) but which has no effect on the solid particles in PM. A drawback is that in combination with high sulfur fuel, oxidation of SO 2 to SO 3 by the DOC can occur, resulting in an increase of PM emissions. An alternative technology that is proven to significantly reduce soot emissions comprises diesel particulate wall-flow filters. High filtration efficiencies of up to 90% and beyond are feasible. The main obstacle is the combustion of the trapped soot. As shown in this paper, the application of a catalyst coating to the filter aids the filter regeneration by lowering the balance-point temperature. The main disadvantages of wall-flow filters are an increase in back-pressure and possible plugging caused by oil-ash accumulations. A potential solution that is presented in this paper is the newly developed continuous soot combustion catalyst (CSCC). This technology achieves higher PM conversions compared to conventional diesel oxidation catalysts. A key feature of this technology is the use of a special flow-through substrate possessing more porous walls and a higher geometric surface area than standard DOC substrates. With such substrates the residence time is increased, so that the trapped soot can be oxidized continuously by appropriately designed soot combustion catalysts.


Archive | 2004

Exhaust-gas purification system for the selective catalytic reduction of nitrogen oxides in the lean exhaust gas of internal combustion engines and method of exhaust-gas purification

Markus Pfeifer; Barry Van Setten; Paul Spurk; Jürgen Dr. Gieshoff; Egbert Lox; Thomas Kreuzer


Applied Catalysis B-environmental | 2007

Wall-flow filters with wall-integrated oxidation catalyst: A simulation study

Martin Votsmeier; Jürgen Dr. Gieshoff; Markus Kögel; Markus Pfeifer; Jens Felix Knoth; A. Drochner; Herbert Vogel


Catalysis Today | 2005

Transport and reaction in catalytic wall-flow filters

J. F. Knoth; A. Drochner; Herbert Vogel; Jürgen Dr. Gieshoff; Markus Kögel; Markus Pfeifer; Martin Votsmeier


SAE World Congress & Exhibition | 2007

New Platinum/Palladium Based Catalyzed Filter Technologies for Future Passenger Car Applications

Markus Pfeifer; Markus Kögel; Paul Spurk; Gerald Jeske


SAE transactions | 2005

The second generation of catalyzed diesel particulate filter systems for passenger cars : Particulate filters with integrated oxidation catalyst function

Markus Pfeifer; Martin Votsmeier; Markus Kögel; Paul Spurk; Egbert Lox; J. F. Knoth


Archive | 2004

Regeneration am Dieselpartikelfilter mittels Lambda-Variation

Günter Prof. Hohenberg; C. Gietzelt; Paul Spurk; Markus Pfeifer; B. van Setten; Nicola Söger


Archive | 2005

Process for operating a particulate trap by virtual sensor for soot loading

Günter Hohenberg; Ch. Landgraf; B. van Setten; Nicola Söger; Markus Pfeifer; Paul Spurk


Archive | 2004

Procede d'elimination d'oxydes d'azote des gaz d'echappement d'un moteur a combustion interne a melange pauvre et systeme de purification de gaz d'echappement utilise a cet effet

Yvonne Demel; Jürgen Dr. Gieshoff; Thomas Kreuzer; Wolfgang Kuhl; Egbert Lox; Markus Pfeifer; Paul Spurk; Setten Barry Dr. Van


Archive | 2004

Abgasreinigungssystem für die selektive katalytische reduktion von stickoxiden in mageren abgasen von verbrennungsmotoren und verfahren zur abgasreinigung Exhaust gas purification system for selective catalytic reduction of nitrogen oxides in lean exhaust gases of internal combustion engines and method for emission control

Markus Pfeifer; Setten Barry Dr. Van; Paul Spurk; Juergen Gieshoff; Egbert Lox; Thomas Kreuzer

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