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Nanostructure characterization of soot particles from biodiesel and diesel spray flame in a constant volume combustion chamber

机译:恒定体积燃烧室内来自生物柴油和柴油喷雾火焰的烟尘颗粒的纳米结构表征

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This study investigates the effect of biodiesel fuels on morphological characteristics of soot particles from spray flame in a constant volume combustion chamber. The experiments were carried out under simulated diesel engine condition. The auto-ignition of injected fuel was carried out at an ambient pressure of 5 MPa and ambient temperature of 978.15 K. The soot particles were captured with a transmission electron microscope (TEM) grid inside the flame by thermophoretic effect. They were characterized as primary particle diameter, graphene layer ( fringe) length, fringe tortuosity, and fringe spacing based on the image processing from original TEM image. Three different kinds of biodiesel fuels, waste cooking oil biodiesel, Jatropha biodiesel and Karanja biodiesel were used in the test. Conventional diesel fuel was utilized as a baseline fuel for the comparison. The tested fuels were injected with injection pressures of 40, 80, and 120 MPa by means of common-rail injection system. The experimental result showed that all of the biodiesel fuels had smaller primary particle diameter than that of conventional diesel regardless of injection pressures. The soot particles from biodiesel fuels were also distinguished showing characteristically shorter fringe length and lower tortuosity. These experiments unveiled a correlation between the nano-structural parameters for the early stage of oxidation inside the flame.
机译:这项研究调查了生物柴油燃料对恒定体积燃烧室内喷雾火焰中烟尘颗粒形态特征的影响。实验是在模拟柴油机条件下进行的。喷射的燃料在5 MPa的环境压力和978.15 K的环境温度下自动点火。通过热泳效应,用透射电子显微镜(TEM)网格捕获了火焰中的烟尘颗粒。基于原始TEM图像的图像处理,将其表征为一次粒径,石墨烯层(条纹)长度,条纹曲折度和条纹间距。测试中使用了三种不同类型的生物柴油燃料,即废食用油生物柴油,麻风树生物柴油和Karanja生物柴油。常规柴油用作比较的基准燃料。通过共轨喷射系统以40、80和120 MPa的喷射压力喷射被测燃料。实验结果表明,无论注入压力如何,所有生物柴油燃料的一次粒径均小于常规柴油。来自生物柴油燃料的烟灰颗粒也得到了区分,显示出典型的较短的条纹长度和较低的曲折度。这些实验揭示了火焰内部氧化早期阶段的纳米结构参数之间的相关性。

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