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Dive into the research topics where Robin Ziebarth is active.

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Featured researches published by Robin Ziebarth.


Aerosol Science and Technology | 2013

Filtration Efficiency and Pressure Drop of Miniature Diesel Particulate Filters

Jacob Swanson; Winthrop F. Watts; David B. Kittelson; Robert A. Newman; Robin Ziebarth

A method was developed to evaluate miniature diesel particulate filters (DPFs). To validate the performance of the instrumentation and test apparatus, measurements were made using silicon carbide (SiC) and cordierite miniature filters with representative microstructures. Filtration efficiency (FE), the most penetrating particle size (MPPS), and pressure drop were measured for catalyzed and uncatalyzed advanced ceramic material (ACM) acicular mullite and representative commercial filters to determine the impact of substrate morphology, the formation of a soot cake, and the presence of a catalyst coating on filtration properties. FE measurements demonstrated that filter geometry and microstructure significantly influence initial filtration performance. ACM filters had high initial FE and the MPPS near ∼200 nm. Reduction of the ACM pore size in the absence of a reduction in porosity increased initial FE even more, but its influence on MPPS was not resolvable. The presence of a catalyst and washcoat on the ACM increased the pressure drop but increased initial FE and reduced MPPS to <100 nm. The addition of a washcoat allowed the rapid buildup of a soot cake, which resulted in a more rapid rate of increase in FE compared to uncatalyzed ACM. The similarity in the ACM and cordierite soot cakes after a long loading time is consistent with theory that suggests the formation of the soot cake depends primarily on the Péclet (Pe) number, which is influenced only by macroscopic filter geometry and prevailing test conditions. Copyright 2013 American Association for Aerosol Research


SAE 2004 World Congress & Exhibition | 2004

Properties and Performance of Diesel Particulate Filters of an Advanced Ceramic Material

Cheng G. Li; Frank Mao; Steven B. Swartzmiller; Sten A. Wallin; Robin Ziebarth


Archive | 2007

Porous mullite bodies and methods of forming them

Chandan Saha; Sharon Allen; Chan Han; Robert T. Nilsson; Arthur R. Prunier; Aleksander J. Pyzik; Sten A. Wallin; Robin Ziebarth; Timothy J. Gallagher


Archive | 2004

Improved porous mullite bodies and methods of forming them

Chandan Saha; Sharon Allen; Chan Han; Robert T. Nilsson; Arthur R. Prunier; Aleksander J. Pyzik; Sten A. Wallin; Robin Ziebarth; Timothy J. Gallagher


Environmental Science & Technology | 2013

Simultaneous reduction of particulate matter and NO(x) emissions using 4-way catalyzed filtration systems.

Jacob Swanson; Winthrop F. Watts; Robert A. Newman; Robin Ziebarth; David B. Kittelson


Archive | 2008

Catalyzed soot filter and method(s) to make these

Robin Ziebarth; Robert T. Nilsson; Steven J. Martin


Archive | 2008

Thermal shock resistant soot filter

Robin Ziebarth; Robert T. Nilsson


Solid State Ionics | 2015

Improvement in hydrophobicity of olivine lithium manganese iron phosphate cathodes by SiF4 treatment for lithium-ion batteries

Murali G. Theivanayagam; Terry Hu; Robin Ziebarth; Stacie L. Santhany; Janet M. Goss; Hideaki Maeda; Avani Patel; Michael J. Behr; Michael Lowe; Anne Leugers


Archive | 2008

Improved catalyzed soot filter and method (s) to make these

Robin Ziebarth; Robert T. Nilsson; Steven J. Martin


Archive | 2008

Filtre à suie amélioré résistant à un choc thermique

Robin Ziebarth; Robert T. Nilsson

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Chan Han

Dow Chemical Company

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