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

机译:柴油机的微粒排放:发动机技术与排放之间的相互关系

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摘要

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.
机译:在过去的30年中,柴油发动机在轻型和重型应用的效率,环境保护和舒适性方面都取得了飞速进步。技术发展包括从燃料到燃烧过程再到废气后处理的所有问题。本文提供了有关技术发展及其对减少污染物排放的影响的现有文献的综合摘要。这包括排放法规,燃料质量,柴油发动机和废气后处理技术以及颗粒物成分,重点是公路车辆应用中与质量相关的颗粒物排放。将重点介绍代表现实世界道路应用的柴油发动机技术。现在,通过对内部发动机进行修改,可以在不降低功率的情况下将颗粒物和氮氧化物的排放降至最低。这些改进包括冷却的废气再循环,优化的喷射系统,适用的充气系统以及优化的高湍流燃烧过程。随着废气后处理系统(例如柴油机氧化催化剂和柴油机微粒捕集器)以及NOx还原系统的引入和优化,污染物排放已大大减少。如今,由于欧洲使用的低硫燃料,柴油氧化催化剂的硫中毒不再被认为是一个问题。未来,生物燃料的使用将会增加,这通常会对颗粒物排放产生积极影响,并且不会增加颗粒物的排放量。自欧盟排放法规出台以来,所有排放限值均已降低超过90%。将来可能会采取进一步的措施。回顾地,就质量和数量而言,现代柴油发动机的颗粒排放无法与旧发动机相比。内燃机的改进可以明显减少颗粒物的排放,而不会对颗粒尺寸向较小颗粒的分布产生负面影响。残留颗粒可以被捕集在柴油颗粒捕集器中,而与它们的大小或发动机运行模式无关。壁流式柴油机微粒过滤器的使用导致排放微粒的数量和数量大大减少,接近100%。减少的颗粒质量排放总是与减少的颗粒数量排放相关。

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