J. C. Ball, T. E. Kenney, Leslie R. Wolf, D. Yost, M. Schulman, E. Frame, J. P. Wallace, D. Hilden, M. Natarajan, T. Johnson, Kenneth J. Wright, K. Eng, A. D. González
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引用次数: 1
摘要
此前我们曾报道(SAE Paper 2005-01-0475),使用费托燃料(FT100)的发动机在低氮氧化物条件下的毒性相关化合物排放量低于使用超低硫(15 PPM)柴油(BP15)的发动机排放量。这些测试在两种工作模式下进行:模式6 (4.2 bar BMEP, 2300 RPM)和模式11 (2.62 bar BMEP, 1500 RPM)。我们想要评估在低功率(接近怠速)下运行发动机并结合低氮氧化物策略对排放的影响。具体来说,我们报告了戴姆勒克莱斯勒OM611 CIDI发动机在22模式(1.0 bar BMEP和1500 RPM)下使用低NOx发动机运行策略时的总碳氢化合物(HC)、一氧化碳(CO)、氮氧化物、颗粒物(PM)、甲醛、乙醛、苯、1,3-丁二烯、气相多芳烃(PAH)和颗粒相多芳烃的排放。与模式6和模式11相比,模式22在毒理学相关物种的排放水平和后处理性能方面确实存在一些差异。此外,在这些排放中不受控制的阶跃变化被观察到发生在模式22的低排气温度。然而,使用费托柴油的模式22的排放与模式6和模式11基本一致。
Emissions of Toxicologically Relevant Compounds Using Fischer-Tropsch Diesel Fuel and Aftertreatment at a Low NOx, Low Power Engine Condition
Previously we reported (SAE Paper 2005-01-0475) that emissions of toxicologically relevant compounds from an engine operating at low NOx conditions using Fischer-Tropsch fuel (FT100) were lower than those emissions from the engine using an ultra-low sulfur (15 PPM sulfur) diesel fuel (BP15). Those tests were performed at two operating modes: Mode 6 (4.2 bar BMEP, 2300 RPM) and Mode 11 (2.62 bar BMEP, 1500 RPM). We wanted to evaluate the effect on emissions of operating the engine at low power (near idle) in conjunction with the low NOx strategy. Specifically, we report on emissions of total hydrocarbon (HC), carbon monoxide (CO), NOx, particulates (PM), formaldehyde, acetaldehyde, benzene, 1,3-butadiene, gas phase polyaromatic hydrocarbons (PAH's) and particle phase PAH's from a DaimlerChrysler OM611 CIDI engine using a low NOx engine operating strategy at Mode 22 (1.0 bar BMEP and 1500 RPM). Mode 22 did produce some differences in emissions levels and aftertreatment performance for toxicologically relevant species compared to Modes 6 and 11. Further, uncontrolled step changes in these emissions were observed to occur at the low exhaust temperature of Mode 22. Nevertheless the emissions for Mode 22 with Fischer-Tropsch diesel fuel were generally consistent with Modes 6 and 11.