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Multi-Technique Analysis of Soot Reactivity from Conventional and Paraffinic Diesel Fuels

机译:常规和石蜡柴油燃料烟尘反应性的多技术分析

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A 2.0 L, 4-cylinder, turbocharged, common rail diesel engine was used for generating soot samples. Three fuels were tested: a "first fill" diesel fuel, a gas-to-liquid fuel (GTL) and a hydrotreated fuel derived from vegetable oils (HVO). A stationary low-load operating mode (1667 rpm and 78 Nm) was selected for testing, and some modifications in the injection process (strategy, timing and pressure) were evaluated experimentally to assess their influence in the soot reactivity. The collected soot samples were characterized using a thermogravimetric analyzer (TGA), a differential scanning calorimeter (DSC), a diffuse reflectance infrared Fourier transform spectrometer (DRIFTS) and a surface area analyzer. All techniques anticipated that HVO and GTL soot samples are more reactive (i.e. show higher potential to be oxidized at lower temperatures leading to more efficient regeneration processes in a Diesel Particle Filter - DPF) compared to diesel soot. Additionally, the four characterization techniques showed the same tendencies when analyzing the effect of the engine operating parameters. In view of the results, the paraffinic fuels - HVO and GTL - here tested confirm their promising perspective for future use in automotive diesel engines, while some guides are proposed to enhance the soot reactivity via calibration of engine operating parameters.
机译:使用2.0升4缸涡轮增压共轨柴油发动机生成烟灰样品。测试了三种燃料:“首次填充”柴油,气液燃料(GTL)和衍生自植物油的加氢处理燃料(HVO)。选择了固定的低负荷运行模式(1667 rpm和78 Nm)进行测试,并通过实验评估了喷射过程中的一些变化(策略,时间和压力),以评估其对烟ot反应性的影响。使用热重分析仪(TGA),差示扫描量热仪(DSC),漫反射红外傅里叶变换光谱仪(DRIFTS)和表面积分析仪对收集的烟灰样品进行表征。所有技术均预期HVO和GTL烟灰样品与柴油烟灰相比具有更高的反应性(即在较低温度下显示出更高的氧化潜力,从而在柴油颗粒过滤器-DPF中产生更有效的再生过程)。此外,在分析发动机运行参数的影响时,四种表征技术显示出相同的趋势。根据结果​​,这里测试的链烷烃燃料HVO和GTL证实了它们在汽车柴油发动机中未来使用的广阔前景,同时提出了一些指南,旨在通过校准发动机工作参数来提高烟灰反应性。

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