Particulate emissions from diesel engines: correlation between engine technology and emissions

Выбросы твердых частиц дизельными двигателями: взаимосвязь между технологией двигателя и выбросами
Michael Fiebig, Andreas Wiartalla, Bastian Holderbaum, Sebastian Kiesow
2014-01-01

diesel engine technologydiesel particulate trapemission legislationexhaust gas aftertreatmentparticulate emissions
In the last 30 years, diesel engines have made rapid progress to increased efficiency, environmental protection and comfort for both light- and heavy-duty applications. The technical developments include all issues from fuel to combustion process to exhaust gas aftertreatment. This paper provides a comprehensive summary of the available literature regarding technical developments and their impact on the reduction of pollutant emission. This includes emission legislation, fuel quality, diesel engine- and exhaust gas aftertreatment technologies, as well as particulate composition, with a focus on the mass-related particulate emission of on-road vehicle applications. Diesel engine technologies representative of real-world on-road applications will be highlighted.Internal engine modifications now make it possible to minimize particulate and nitrogen oxide emissions with nearly no reduction in power. Among these modifications are cooled exhaust gas recirculation, optimized injections systems, adapted charging systems and optimized combustion processes with high turbulence. With introduction and optimization of exhaust gas aftertreatment systems, such as the diesel oxidation catalyst and the diesel particulate trap, as well as NOx-reduction systems, pollutant emissions have been significantly decreased. Today, sulfur poisoning of diesel oxidation catalysts is no longer considered a problem due to the low-sulfur fuel used in Europe. In the future, there will be an increased use of bio-fuels, which generally have a positive impact on the particulate emissions and do not increase the particle number emissions.Since the introduction of the EU emissions legislation, all emission limits have been reduced by over 90%. Further steps can be expected in the future. Retrospectively, the particulate emissions of modern diesel engines with respect to quality and quantity cannot be compared with those of older engines. Internal engine modifications lead to a clear reduction of the particulate emissions without a negative impact on the particulate-size distribution towards smaller particles. The residual particles can be trapped in a diesel particulate trap independent of their size or the engine operating mode. The usage of a wall-flow diesel particulate filter leads to an extreme reduction of the emitted particulate mass and number, approaching 100%. A reduced particulate mass emission is always connected to a reduced particle number emission.
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Biofuels generally reduce particulate emissions without increasing particle-number emissions, and low-sulfur European fuel has removed sulfur poisoning as a major diesel oxidation catalyst concern.
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Cooled exhaust-gas recirculation, optimized injection and charging systems, and high-turbulence combustion reduce particulate and nitrogen oxide emissions with little or no power loss.
3
Diesel oxidation catalysts, particulate traps, and NOx-reduction systems have significantly decreased pollutant emissions from diesel engines.
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EU emissions limits have fallen by more than 90% since legislation was introduced, while modern diesel particulate emissions differ substantially from those of older engines.
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The paper reviews how fuel quality, engine design, combustion, aftertreatment, and particulate composition have influenced diesel emissions in on-road applications.

Diesel engines and their exhaust emissions in real-world on-road vehicle applications

The effects of engine technology, fuel quality, combustion-process modifications, and exhaust-gas aftertreatment on particulate and other pollutant emissions, especially mass-related particulate emissions

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2014-01-01
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Michael Fiebig
Andreas Wiartalla
Bastian Holderbaum
Sebastian Kiesow
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