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Morphology and nano-structure analysis of soot particles sampled from high pressure diesel jet flames under diesel-like conditions

机译:柴油状条件下高压柴油机喷射火焰中取样的烟灰颗粒的形态学和纳米结构分析

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摘要

Soot particles emitted from diesel engines have a significant impact on the atmospheric environment. Detailed understanding of soot formation and oxidation processes is helpful for reducing the pollution of soot particles, which requires information such as the size and nano-structure parameters of the soot primary particles sampled in a high-temperature and high-pressure diesel jet flame. Based on the thermophoretic principle, a novel sampling probe minimally disturbing the diesel jet flame in a constant volume combustion vessel is developed for analysing soot particles. The injected quantity of diesel fuel is less than 10 mg, and the soot particles sampled by carriers with a transmission electron microscope (TEM) grid and lacey TEM grid can be used to analyse the morphologies of soot aggregates and the nano-structure of the soot primary particles, respectively. When the quantity of diesel fuel is more than 10 mg, in order to avoid burning-off of the carriers in higher temperature and pressure conditions, single-crystal silicon chips are employed. Ultrasonic oscillations and alcohol extraction are then implemented to obtain high quality soot samples for observation using a high-resolution transmission electron microscope. An in-house Matlab-based code is developed to extract the nano-structure parameters of the soot particles. A complete sampling and analysis procedure of the soot particles is provided to study the formation and oxidation mechanism of soot.
机译:从柴油发动机发出的烟灰颗粒对大气环境产生重大影响。对烟灰形成和氧化过程的详细了解有助于减少烟灰颗粒的污染,这需要诸如在高温和高压柴油喷射火焰中采样的烟灰初级颗粒的尺寸和纳米结构参数的信息。基于热硫化原理,开发了一种新的采样探针,其在恒定体积燃烧容器中的柴油喷射火焰的基础上最小地扰乱恒定燃烧容器中的用于分析烟灰颗粒。柴油的注入量小于10mg,并且可以使用载体通过载体(TEM)栅格和粗纱TEM网格采样的烟灰颗粒来分析烟灰聚集体和烟灰纳米结构的形态分别是初级颗粒。当柴油燃料的量大于10mg时,为了避免在更高温度和压力条件下载流子的燃烧,采用单晶硅芯片。然后实施超声波振荡和醇提取以获得使用高分辨率透射电子显微镜观察的高质量烟灰样本。开发了内部MATLAB的代码以提取烟灰颗粒的纳米结构参数。提供了烟灰颗粒的完整采样和分析程序,以研究烟灰的形成和氧化机理。

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