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Detection of tar brown carbon with a single particle soot photometer (SP2)

机译:用单粒子烟尘仪检测焦油棕色碳(SP2)

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摘要

We investigate the possibility that the refractory, infrared-light-absorbing carbon particulate material known as "tarballs" or tar brown carbon (tar brC) generates a unique signal in the scattering and incandescent detectors of a single particle soot photometer (SP2). As recent studies have defined tar brC in different ways, we begin by reviewing the literature and proposing a material-based definition of tar. We then show that tar brC results in unique SP2 signals due to a combination of complete or partial evaporation, with no or very little incandescence. Only a subset of tar brC particles exhibited detectable incandescence (70 % by number); for these particles the ratio of incandescence to light scattering was much lower than that of soot black carbon (BC). At the time of incandescence the ratio of light scattering to incandescence from these particles was up to 2-fold greater than from soot (BC). In our sample, where the mass of tar was 3-fold greater than the mass of soot, this led to a bias of < 5 % in SP2-measured soot mass, which is negligible relative to calibration uncertainties. The enhanced light scattering of tar is interpreted as being caused by tar being more amorphous and less graphitic than soot BC. The fraction of the tar particle which does incandesce was likely formed by thermal annealing during laser heating.
机译:我们调查了称为“tarballs”或焦油棕色碳(Tar BRCC)的耐火材料,红外光吸收碳颗粒材料的可能性在单个粒子烟尘率(SP2)的散射和白炽备探测器中产生唯一信号。由于最近的研究以不同方式定义了焦油BRC,我们首先审查文献并提出基于物质的焦油的定义。然后,我们表明Tar BRC由于完全或部分蒸发的组合而导致独特的SP2信号,不具有或非常小的白炽。只有焦油BRC颗粒的子集表现出可检测的白炽(70%乘数);对于这些颗粒,白炽与光散射的比率远低于烟灰黑碳(BC)的比率。在白炽时间时,光散射与来自这些颗粒的白炽的比率高于烟灰(BC)的2倍。在我们的样品中,焦油质量大于烟灰质量的3倍,这导致SP2测量烟灰质量偏差<5%,相对于校准不确定性可忽略不计。焦油的增强光散射被解释为由焦油引起的,而是比烟灰更无定形,石墨少。在激光加热期间,可能通过热退火形成蛋白质的焦油粒子的级分。

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