TECHNICAL PAPERS

Experimental Study Comparing Particle Size and Mass Concentration Data for a Cracked and Un-Cracked Diesel Particulate Filter

Date Published: 2009-04-20
Paper Number: 2009-01-0629
DOI: 10.4271/2009-01-0629

Citation:

Dabhoiwala, R., Johnson, J., and Naber, J., "Experimental Study Comparing Particle Size and Mass Concentration Data for a Cracked and Un-Cracked Diesel Particulate Filter," SAE Technical Paper 2009-01-0629, 2009, doi:10.4271/2009-01-0629.

Author(s):

Abstract:

Steady state loading characterization experiments were conducted at three different engine load conditions and rated speed on the cracked catalyzed particulate filter (CPF). The experiments were performed using a 10.8 L 2002 Cummins ISM-330 heavy duty diesel engine. The CPF underwent a ring off failure, commonly seen in particulate filters, due to high radial and axial temperature gradients. The filters were cracked during baking in an oven which was done to regenerate PM collected after every loading characterization experiment. Two different configurations i.e. with and without a diesel oxidation catalyst (DOC) upstream of the CPF were studied. The data were compared with that on an un-cracked CPF at similar engine conditions and configurations. Pressure drop, transient filtration efficiency by particle size and PM mass and gaseous emissions measurements were made during each experiment. Mass balance for the PM from the engine during the experiments was conducted in order to calculate the mass of PM oxidized.

File Size: 336K

Product Status: In Stock

Included in: SP-2254

See papers presented at SAE World Congress & Exhibition, April 2009, Detroit, MI, USA, Session: Diesel Exhaust Emission Control - System Integration and Durability (Part 2 of 2)

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