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Effects of Sulfur Content and Ash Content in Lubricating Oil on the Aggregate Morphology and Nanostructure of Diesel Particulate Matter

机译:润滑油中硫和灰分含量对柴油颗粒物聚集形态和纳米结构的影响

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摘要

Five different lubricating oils with three different sulfur contents (0.182%, 0.583%, and 1.060%) and three different ash contents (0.48%, 1.21%, and 1.99%) were used in this study to investigate their effects on the morphology of diesel particulate matter (PM). The aggregate morphology and nanostructure of primary particles in diesel PM were analyzed using transmission electron microscopy. The primary morphological parameters were determined using an advanced image-processing method. The results show that, with increasing sulfur content and ash content, the macroscopic structure of the primary particles can transform from chainlike to more complex and disordered agglomerated structures, whereas the inner cores change little, the shell thickness decreases, and the thickness of the amorphous materials attached to the outer shell increases. The fractal dimension (D-f) of the PM aggregate morphology varies from 1.656 to 1.811, and the mean primary-particle diameter (d(p)) of the PM is mainly in the range of 10-30 nm. Although dp decreases slightly when the ash content increases from 1.21% to 1.99%, increasing sulfur and ash contents generally increase both D-f and dp. As such, the effects of the sulfur and ash contents in lubricating oil on dp are greater than their effects on D-f. Regarding the nanostructure of the primary particles, the most frequently observed ranges for the fringe length (L-a), tortuosity (T-f), and fringe separation distance (D-s) are 2.4 nm, 1-1.8, and 0.2-0.4 nm, respectively. Higher sulfur and ash contents lead to smaller L-a and D-s values and higher T-f values. Greater d(p) and D-f values and smaller D-s values reduce the oxidation activity of diesel PM, whereas smaller L-a values and larger T-f values increase the oxidation activity of diesel PM. Based on the relationship between the morphology and the oxidation activity of diesel PM, the findings presented in,this study will be of great value in future work for reducing diesel PM emissions.
机译:在本研究中,使用了五种不同的润滑油,分别具有三种不同的硫含量(0.182%,0.583%和1.060%)和三种不同的灰分含量(0.48%,1.21%和1.99%),以研究其对柴油形态的影响。颗粒物(PM)。使用透射电子显微镜分析了柴油机PM中一次颗粒的聚集形态和纳米结构。主要的形态学参数是使用先进的图像处理方法确定的。结果表明,随着硫含量和灰分含量的增加,一次颗粒的宏观结构可以从链状转变为更复杂和无序的团聚结构,而内芯变化不大,壳厚度减小,无定形厚度附着在外壳上的材料增加。 PM聚集体形态的分形维数(D-f)在1.656至1.811之间,并且PM的平均一次粒径(d(p))主要在10-30 nm范围内。尽管当灰分含量从1.21%增加到1.99%时dp略有降低,但是硫和灰分含量的增加通常会同时增加D-f和dp。因此,润滑油中硫和灰分对dp的影响大于对D-f的影响。关于一次颗粒的纳米结构,最常见的条纹长度(L-a),曲折度(T-f)和条纹分离距离(D-s)的范围分别为<2.4 nm,1-1.8和0.2-0.4 nm。较高的硫和灰分含量导致较小的L-a和D-s值以及较高的T-f值。较大的d(p)和D-f值以及较小的D-s值会降低柴油机PM的氧化活性,而较小的L-a值和较大的T-f值则会增加柴油机PM的氧化活性。基于柴油机颗粒物的形态与氧化活性之间的关系,本文提出的研究结果对减少柴油机颗粒物的排放具有重要的意义。

著录项

  • 来源
    《Energy & fuels》 |2018年第1期|713-724|共12页
  • 作者

    Tan Pi-qiang; Wang De-yuan;

  • 作者单位

    Tongji Univ, Sch Automobile, Shanghai 201804, Peoples R China;

    Tongji Univ, Sch Automobile, Shanghai 201804, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:39:08

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