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Measurement of soot morphology by integrated LII and elastic light scattering

机译:通过集成LII和弹性光散射测量烟尘形态

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A compact experimental setup that integrates laser-induced incandescence (LII) and one-angle elastic light scattering (1A-ELS) to measure the size of polydisperse soot aggregates is described. A 532 nm laser and a detection angle of 35 degrees were employed, which provided sensitivity for aggregate radius of gyrations (R g) of R g≤200 nm. Both lognormal and self-preserving distribution functions are compared with width parameters derived from both aggregation theory and transmission electron microscopy (TEM) measurements. Using these distributions, mean aggregate sizes derived from the scattering measurements are compared. The LII+1A-ELS technique is validated with a two-angle elastic light scattering (2A-ELS) approach with an additional detection angle at 145 deg. Unlike LII+1A-ELS, the 2A-ELS technique has the advantage of not requiring knowledge of soot optical properties. Good agreement is found between the two techniques for a given distribution. A fundamental discrepancy exists between distributions derived from TEM and those according to aggregation theory, limiting the accuracy of both 2A-ELS and LII+1A-ELS. The dependence of both techniques on laser fluence and hence soot temperature is examined and discussed.
机译:描述了一个紧凑的实验装置,该装置结合了激光诱导白炽灯(LII)和单角度弹性光散射(1A-ELS)来测量多分散烟灰聚集体的尺寸。使用532 nm激光和35度的检测角度,这为R g ≤200nm的总回转半径(R g )提供了灵敏度。将对数正态分布和自保持分布函数与从聚集理论和透射电子显微镜(TEM)测量得出的宽度参数进行比较。使用这些分布,比较了从散射测量得出的平均聚集体尺寸。 LII + 1A-ELS技术通过具有145度附加检测角的双角度弹性光散射(2A-ELS)方法进行了验证。与LII + 1A-ELS不同,2A-ELS技术具有不需要了解烟灰光学性质的优点。在给定分布的两种技术之间找到了很好的一致性。从TEM得出的分布与根据聚集理论的分布之间存在根本差异,从而限制了2A-ELS和LII + 1A-ELS的准确性。研究和讨论了这两种技术对激光能量密度和烟灰温度的依赖性。

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