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Fundamental Studies of Diesel Particulate Filters: Transient Loading, Regeneration and Aging

Athanasios G. KonstandopoulosMargaritis KostoglouEvangelos SkaperdasEleni PapaioannouDimitrios ZarvalisEvdoxia Kladopoulou

Abstract

<div class="htmlview paragraph">Compliance with future emission standards for diesel powered vehicles is likely to require the deployment of emission control devices, such as particulate filters and DeNOx converters. Diesel emission control is merging with powertrain management and requires deep knowledge of emission control component behavior to perform effective system level integration and optimization. The present paper focuses on challenges associated with a critical component of diesel emission control systems, namely the diesel particulate filter (DPF), and provides a fundamental description of the transient filtration/loading, catalytic/NO<sub>2</sub>-assisted regeneration and ash-induced aging behavior of DPF's. The derived models (some in analytic form) are based on rigorous descriptions of the underlying physicochemical processes and they are shown to be in excellent agreement with experimental data (collected in-house and from the literature) as well as by comparison to, “presumably exact”, 3-dimensional Computational Fluid Dynamics calculations. The validated models thus provide a robust core to build upon/interface system level simulation and optimization tools.</div>

Catalytic Processes in Materials ScienceVehicle emissions and performanceAerosol Filtration and Electrostatic PrecipitationDiesel particulate filterParticulatesTransient (computer programming)Diesel fuelRegeneration (biology)Materials scienceEnvironmental scienceAutomotive engineeringComputer scienceEngineering
Citations
453
FWCI
9.96
field-weighted impact
References
38
Percentile
99%
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Citations per year
References
Wall-Flow Diesel Particulate Filters—Their Pressure Drop and Collection Efficiency
SAE technical papers on CD-ROM/SAE technical paper series · 1989 · 329 citations
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Fundamental Studies of Diesel Particulate Filters: Transient Loading, Regeneration and Aging · Scinovex