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Experimental investigation into the oxidation reactivity and nanostructure of particulate matter from diesel engine fuelled with diesel/polyoxymethylene dimethyl ethers blends

机译:柴油/聚甲醛二甲醚共混物燃料柴油发动机颗粒物的氧化反应性和纳米结构的实验研究

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摘要

This paper focuses on oxidation reactivity and nanostructural characteristics of particulate matter (PM) emitted from diesel engine fuelled with different volume proportions of diesel/polyoxymethylene dimethyl ethers (PODEn) blends (P0, P10 and P20). PM was collected using a metal filter from the exhaust manifold. The collected PM samples were characterized using thermogravimetric analysis (TGA), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and Raman spectroscopy. The TGA results indicated that the PM produced by P20 had the highest moisture and volatility contents and the fastest oxidation rate of solid carbon followed by P10 and P0 derived PM. SEM analysis showed that PM generated from P20 was looser with a lower mean value than PM emitted from P10 and P0. Quantitative analysis of high-resolution TEM images presented that fringe length was reduced along with increased separation distance and tortuosity with an increase in PODEn concentration. These trends improved the oxidation reactivity. According to Raman spectroscopy data, the intensity, full width at half-maximum and intensity ratio of the bands also changed demonstrating that PM nanostructure disorder was correlated with a faster oxidation rate. The results show the use of PODEn affects the oxidation reactivity and nanostructure of PM that is easier to oxidize.
机译:本文着眼于以不同体积比例的柴油/聚甲醛二甲醚(PODEn)混合物(P0,P10和P20)为燃料的柴油发动机排放的颗粒物(PM)的氧化反应性和纳米结构特征。使用金属过滤器从排气歧管中收集PM。使用热重分析(TGA),扫描电子显微镜(SEM),透射电子显微镜(TEM)和拉曼光谱对收集的PM样品进行表征。 TGA结果表明,P20产生的PM具有最高的水分和挥发性含量,且固体碳的氧化速率最快,其次是P10和P0衍生的PM。 SEM分析表明,P20产生的PM比P10和P0产生的PM更松散,平均值更低。高分辨率TEM图像的定量分析表明,随着PODEn浓度的增加,条纹长度减小,分离距离和曲折度增加。这些趋势改善了氧化反应性。根据拉曼光谱数据,谱带的强度,半峰全宽和谱带强度比也发生了变化,表明PM纳米结构紊乱与更快的氧化速率有关。结果表明,PODEn的使用会影响易于氧化的PM的氧化反应性和纳米结构。

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