Affiliation:
1. Texas A&M University, College Station, TX 77843-3123
2. University of Michigan, Ann Arbor, MI 48109-2121
Abstract
Although low-temperature premixed compression ignition (PCI) combustion in a light-duty diesel engine offers dramatic and simultaneous reductions in nitric oxides (NOx) and soot, associated increases in unburned hydrocarbons (HC) and carbon monoxide (CO) become unacceptable. Production diesel oxidation catalysts (DOCs) are effective in oxidizing the increased levels of HC and CO under lean combustion conditions. However, the low-temperature∕high CO combination under rich PCI conditions, designed as a lean NOx trap (LNT) regeneration mode, generally renders the DOC ineffective. The objectives of this study are to characterize the oxidizing efficiency of a production DOC under lean and rich PCI conditions, and attempt to identify probable causes for the observed ineffectiveness under rich PCI. The study uses several tests to characterize the behavior of the DOC under lean PCI and rich PCI combustion conditions, including (1) steady-state feed gas characterization, (2) transient feed gas characterization, (3) air injection (4) insulated air-fuel sweep, and (5) combustion mode switching. The DOC never becomes effective under rich PCI for any of the tests, suggesting that the platinum-based catalyst may be incorrect for use with rich PCI. Furthermore, combustion mode switching between lean PCI and rich PCI (mimicking LNT loading and regeneration) demonstrates diminishing effectiveness of the DOC during and after continuous mode transitioning.
Subject
Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering
Reference28 articles.
1. Worldwide Diesel Emission Standards: Current Experiences and Future Needs;Zelenka;Appl. Catal., B
2. Trial of New Concept Diesel Combustion System—Premixed Compression-Ignited Combustion;Iwabuchi;SAE Trans.
3. Mechanism of the Smokeless Rich Diesel Combustion by Reducing Temperature;Akihama;SAE Trans.
4. The Attainment of Premixed Compression Ignition Low-Temperature Combustion in a Compression Ignition Direct Injection Engine;Jacobs;Proc. Combust. Inst.
5. Lean and Rich Premixed Compression Ignition Combustion in a Light-Duty Diesel Engine;Jacobs;SAE Trans.
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