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Particulate Bound Trace Metals and Soot Morphology of Gasohol Fueled Gasoline Direct Injection Engine

机译:汽油直喷发动机的颗粒结合痕量金属和烟尘形态

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Direct injection spark ignition or gasoline direct injection (GDI) engines are superior in terms of relatively higher thermal efficiency and power output compared to multipoint port fuel injection engines and direct injection diesel engines. In this study, a 500 cc single cylinder GDI engine was used for experiments. Three gasohol blends (15% (v/v) ethanol/methanol/butanol with 85% (v/v) gasoline) were chosen for this experimental study and were characterized to determine their important fuel properties. For particulate investigations, exhaust particles were collected on a quartz filter paper using a partial flow dilution tunnel. Comparative investigations for particulate mass emissions, trace metal concentrations, Raman spectroscopy, Fourier transform infrared spectroscopy (FTIR) analyses, and high-resolution transmission electron microscopy (HR-TEM) imaging of the particulate samples collected from different test fuels at different engine loads were performed. For majority of the experimental conditions, gasohols showed relatively lower trace metal concentration in particulates compared to gasoline. HR-TEM images showed that higher engine loads and presence of oxygen in the test fuels increased the soot reactivity. Multicore shells like structures were visible in the HR-TEM images due to growth of nuclei, and rapid soot formation due to relatively higher temperature and pressure environment of the engine combustion chamber. Researches world-over are trying to reduce particulate emissions from GDI engines; however there is a vast research gap for such investigations related to gasohol fueled GDI engines. This paper critically assesses and highlights comparative morphological characteristics of gasohol fueled GDI engine.
机译:与多点端口燃料喷射发动机和直接喷射柴油发动机相比,直接喷射火花点火或汽油直接喷射(GDI)发动机在相对较高的热效率和功率输出方面具有优势。在这项研究中,将500 cc单缸GDI发动机用于实验。本实验研究选择了三种混合汽油(15%(v / v)乙醇/甲醇/丁醇与85%(v / v)汽油),并对其特性进行了确定,以确定其重要的燃料性能。为了进行颗粒检查,使用部分流动稀释通道将废气颗粒收集在石英滤纸上。比较了颗粒质量排放,痕量金属浓度,拉曼光谱,傅立叶变换红外光谱(FTIR)分析和高分辨率透射电子显微镜(HR-TEM)成像的比较研究,这些图像是在不同发动机负载下从不同测试燃料中收集的。执行。在大多数实验条件下,与汽油相比,汽油中的痕量金属浓度相对较低。 HR-TEM图像显示更高的发动机负载和测试燃料中氧气的存在会增加烟灰反应性。由于核的增长,在HR-TEM图像中可以看到类似结构的多核壳,并且由于发动机燃烧室的相对较高的温度和压力环境,可以快速形成烟灰。全世界的研究都在试图减少GDI引擎的颗粒物排放。但是,与汽油为燃料的GDI发动机相关的此类研究存在巨大的研究空白。本文严格评估并突出了汽油燃料GDI发动机的比较形态特征。

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