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在瞬态驾驶条件下,柴油废气中的硫驱动成核模式形成。

Sulfur driven nucleation mode formation in diesel exhaust under transient driving conditions.

机构信息

Aerosol Physics Laboratory, Department of Physics, Tampere University of Technology , Tampere 33720, Finland.

出版信息

Environ Sci Technol. 2014 Feb 18;48(4):2336-43. doi: 10.1021/es405009g. Epub 2014 Feb 6.

Abstract

Sulfur driven diesel exhaust nucleation particle formation processes were studied in an aerosol laboratory, on engine dynamometers, and on the road. All test engines were equipped with a combination of a diesel oxidation catalyst (DOC) and a partial diesel particulate filter (pDPF). At steady operating conditions, the formation of semivolatile nucleation particles directly depended on SO2 conversion in the catalyst. The nucleation particle emission was most significant after a rapid increase in engine load and exhaust gas temperature. Results indicate that the nucleation particle formation at transient driving conditions does not require compounds such as hydrocarbons or sulfated hydrocarbons, however, it cannot be explained only by the nucleation of sulfuric acid. A real-world exhaust study with a heavy duty diesel truck showed that the nucleation particle formation occurs even with ultralow sulfur diesel fuel, even at downhill driving conditions, and that nucleation particles can contribute 60% of total particle number emissions. In general, due to sulfur storage and release within the exhaust aftertreatment systems and transients in driving, emissions of nucleation particles can even be the dominant part of modern diesel vehicle exhaust particulate number emissions.

摘要

硫驱动的柴油尾气成核粒子形成过程在气溶胶实验室、发动机测功机和道路上进行了研究。所有测试发动机都配备了柴油氧化催化剂 (DOC) 和部分柴油颗粒过滤器 (pDPF) 的组合。在稳定运行条件下,半挥发性成核粒子的形成直接取决于催化剂中 SO2 的转化。在发动机负荷和废气温度快速增加后,成核粒子的排放最为显著。结果表明,在瞬态驾驶条件下的成核粒子形成不需要烃类或硫酸化烃类等化合物,但仅通过硫酸的成核无法解释。一项使用重型柴油卡车的实际排气研究表明,即使使用超低硫柴油燃料,甚至在下坡行驶条件下,成核粒子的形成也会发生,并且成核粒子可以贡献总颗粒数排放的 60%。总的来说,由于排气后处理系统中的硫储存和释放以及驾驶中的瞬态,成核粒子的排放甚至可能成为现代柴油车排气颗粒物数量排放的主要部分。

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