超低硫和含氧柴油原型燃料的废气排放

D. Hilden, Chris C. Crellin, J. Toner, Leslie R. Wolf
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引用次数: 6

摘要

使用一台1.3 l直喷柴油发动机进行稳态测试,以确定超低硫柴油燃料的排放性能,包括两种类型的硫去除和燃料氧化物的使用。正如预期的那样,废气再循环是减少氮氧化物最有效的技术。关于燃料效应,用传统的除硫工艺生产的含氧柴油燃料大大减少了颗粒排放,这些颗粒减少可以通过使用更高水平的废气再循环转化为氮氧化物减少。在模拟FTP上,与基准燃料相比,这种含氧燃料同时减少了30%的氮氧化物排放和50%的总颗粒排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Exhaust Emissions of Prototype Ultra-Low Sulfur and Oxygenated Diesel Fuels
A 1.3-L direct injection diesel engine was used in steady-state testing to determine the emissions performance of a matrix of ultra-low sulfur diesel fuels encompassing two types of sulfur removal and the use of fuel oxygenates. As expected, exhaust gas recirculation was the most effective technique for NOx reduction. With regard to fuel effects, an oxygenated diesel fuel produced with a conventional sulfur removal process reduced particulate emissions substantially, and these particulate reductions could be converted into NOx reductions by using higher levels of exhaust gas recirculation. On a simulated FTP, this oxygenated fuel simultaneously decreased NOx emissions by 30% and total particulate emissions by 50% compared to a baseline fuel.
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