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首页> 外文期刊>International journal of engine research >Fuel formulation effects on the soot morphology and diesel particulate filter regeneration in a future optimized high-efficiency combustion system
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Fuel formulation effects on the soot morphology and diesel particulate filter regeneration in a future optimized high-efficiency combustion system

机译:燃料配方对未来优化的高效燃烧系统中烟灰形态和柴油颗粒过滤器再生的影响

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The focus of research is shifting toward development of new engine fuels for optimized combustion systems. The altered chemical structure of these new fuels may impact their thermal decomposition chemistry during the ignition process and hence the in-cylinder conditions for particulate formation and post oxidation. This work fundamentally focuses on the influence of the fuel properties on particulate matter morphology and, thereby, the regeneration behavior of diesel particulate filters. The experiments for particulate analysis were conducted with a single-cylinder diesel research engine designed for future passenger car applications. A detailed analysis of soot characteristics and its consequences on diesel particulate filter behavior were studied at part-load engine operation at EU 6 engine-out nitrogen oxide level. Next to standard EN590 diesel, a paraffinic fuel was investigated as non-oxygenated biofuel candidate. A blend of the 2-methyltetrahydrofuran and di-n-butylether was studied as tailor-made oxygenated biomass-derived fuel candidate. With all fuels, samples of state-of-the-art diesel particulate filter were loaded at the research engine. In succession, the regeneration of the filters was investigated at a laboratory gas bench. Furthermore, the primary particle size, the total number concentration, and size-based number distribution were investigated in detail by means of a transmission electron microscope, condensation particle counter, and Engine Exhaust Particle Sizer, respectively. Furthermore, the graphitic character of the soot structure was analyzed by optical measurements such as absorption coefficient. It was found that the soot oxidation temperature was decreased by approximate to 10 degrees C and approximate to 65 degrees C with the paraffinic fuel and the blend of 2-methyltetrahydrofuran and di-n-butylether, respectively, compared to conventional diesel fuel. Overall, the results indicate that with specific tailored fuels not only the total particle mass and number could be reduced but, with altering the soot structure and composition, also the energy requirement for diesel particulate filter regeneration can be reduced.
机译:研究焦点转向开发新型发动机燃料的优化燃烧系统。这些新燃料的改变的化学结构可能会在点火过程中影响其热分解化学,因此颗粒形成和氧化后的缸内条件。这项工作从根本上侧重于燃料特性对颗粒物质形态的影响,从而柴油颗粒过滤器的再生行为。颗粒分析实验用专为未来乘用车应用而设计的单缸柴油研究发动机进行。研究了Eu 6发动机输出氮氧化物水平的部分负荷发动机操作对烟灰特性及其对柴油颗粒过滤行为的影响。在标准EN590柴油旁边,将石蜡燃料作为非含氧生物燃烧候选人进行研究。研究了2-甲基四氢呋喃和二丁醚的混合物,作为量身定制的含氧生物质衍生的燃料候选物。通过所有燃料,在研究发动机上装载了最先进的柴油颗粒过滤器样品。连续地,在实验室气体替补席上研究了过滤器的再生。此外,通过分别通过透射电子显微镜,缩小粒子计数器和发动机排气粒子分别详细研究了一次粒度,总数浓度和基于尺寸的数量分布。此外,通过诸如吸收系数的光学测量分析烟灰结构的石墨特征。结果发现,与常规柴油燃料相比,分别通过近似10℃并近似到65摄氏度和2-甲基四氢呋喃和二丁基醚的混合物来降低烟灰氧化温度。总的来说,结果表明,对于可以减少的总粒子质量和数量,并且随着烟灰结构和组成的改变,可以降低柴油颗粒过滤器再生的能量要求。

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