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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Influence of primary particle polydispersity and overlapping on soot morphological parameters derived from numerical TEM images
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Influence of primary particle polydispersity and overlapping on soot morphological parameters derived from numerical TEM images

机译:原发性粒子多分散性和重叠对数值TEM图像源于烟灰形态参数的影响

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摘要

Experimental studies of soot morphology based on analysis of transmission electron microscopy (TEM) images usually neglect the potential effects of primary particle polydispersity and overlapping. In this study, fractal aggregates of different sizes consisting of polydisperse and overlapping primary particles were numerically generated using typical fractal dimension and prefactor relevant to soot. A total of 3600 simulated two-dimensional projections for each primary particle size distribution and level of overlapping considered was produced and analyzed using two TEM image analysis methods commonly used in the literature to evaluate the effects of primary particle polydispersity and overlapping on the recovered morphological parameters of soot. Fairly large deviations in the recovered number of primary particles in aggregates were obtained by both methods considered using the procedure commonly used in the literature. A recommendation was proposed to improve the accuracy of the retrieved number of polydisperse primary particles in an aggregate. We show that the results obtained by using both the Tian et al. (2006) and Brasil et al. (1999) methods can be significantly improved by using the recommended modification for primary particle polydispersity levels commonly encountered in flame soot. Finally, we recommend to use the modified Tian et al. 2006 method for recovering the number of primary particles of aggregates consisting of both polydisperse and overlapped primary particles. Crown Copyright (C) 2018 Published by Elsevier B.V. All rights reserved.
机译:基于透射电子显微镜(TEM)图像分析的烟灰形态的实验研究通常忽略了原发性粒子多分散性和重叠的潜在影响。在该研究中,使用与烟灰相关的典型的分形尺寸和重点,数值产生不同尺寸的不同尺寸的分形聚集体。使用常用于文献中常用的两个TEM图像分析方法来产生和分析每个初级粒度分布和考虑水平的3600个模拟的二维突起,并分析了文献中的两个TEM图像分析方法,以评估原发性粒子多分散性和重叠对回收的形态参数的影响烟灰。通过考虑在文献中常用的方法,通过考虑的两种方法获得回收的初级颗粒数的相当大的偏差。提出建议,提高骨料中多分散初级颗粒的检索数量的准确性。我们表明通过使用Tian等人获得的结果。 (2006)和Brasil等人。 (1999)通过使用在火焰烟灰中通常遇到的原发性粒子多分散水平的推荐改性,可以显着改善方法。最后,我们建议使用修改的Tian等人。用于回收由多分散和重叠的初级颗粒组成的聚集体的初级粒子数的方法。 Crown版权(c)2018由elestvier b.v出版。保留所有权利。

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