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Quantification of Optical and Physical Properties of Combustion-Generated Carbonaceous Aerosols (< PM2.5) Using Analytical and Microscopic Techniques

机译:使用分析和显微镜技术对燃烧产生的碳质气溶胶(

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摘要

A series of experiments were conducted to quantify and characterize the optical and physical properties of combustion-generated aerosols during both flaming and smoldering combustion of three materials common to underground mines-Pittsburgh Seam coal, Styrene Butadiene Rubber (a common mine conveyor belt material), and Douglas-fir wood-using a combination of analytical and gravimetric measurements. Laser photometers were utilized in the experiments for continuous measurement of aerosol mass concentrations and for comparison to measurements made using gravimetric filter samples. The aerosols of interest lie in the size range of tens to a few hundred nanometers, out of range of the standard photometer calibration. To correct for these uncertainties, the photometer mass concentrations were compared to gravimetric samples to determine if consistent correlations existed. The response of a calibrated and modified combination ionization/photoelectric smoke detector was also used. In addition, the responses of this sensor and a similar, prototype ionization/photoelectric sensor, along with discrete angular scattering, total scattering, and total extinction measurements, were used to define in real time the size, morphology, and radiative transfer properties of these differing aerosols that are generally in the form of fractal aggregates. SEM/TEM images were also obtained in order to compare qualitatively the real-time, continuous experimental measurements with the visual microscopic measurements. These data clearly show that significant differences exist between aerosols from flaming and from smoldering combustion and that these differences produce very different scattering and absorption signatures. The data also indicate that ionization/photoelectric sensors can be utilized to measure continuously and in real time aerosol properties over a broad spectrum of applications related to adverse environmental and health effects.
机译:进行了一系列实验,以量化和表征地下矿井常见的三种材料(匹兹堡煤层煤,苯乙烯丁二烯橡胶(一种常见的矿井输送带材料))在燃烧和阴燃时燃烧产生的气溶胶的光学和物理特性,和花旗松木-结合使用分析和重量测量。激光光度计在实验中用于连续测量气溶胶质量浓度,并与使用重量过滤器样品进行的测量进行比较。感兴趣的气溶胶的尺寸范围在几十到几百纳米之间,超出了标准光度计的校准范围。为了校正这些不确定性,将光度计质量浓度与重量分析样品进行比较,以确定是否存在一致的相关性。还使用了经过校准和改进的组合电离/光电烟雾探测器的响应。此外,该传感器和类似的原型电离/光电传感器的响应,以及离散的角度散射,总散射和总消光测量,用于实时定义这些传感器的尺寸,形态和辐射传递特性通常以分形聚集体形式存在的不同气溶胶。还获得了SEM / TEM图像,以定性比较实时,连续的实验测量结果与视觉显微镜测量结果。这些数据清楚地表明,来自燃烧和阴燃的气溶胶之间存在显着差异,并且这些差异产生了非常不同的散射和吸收特征。数据还表明,在与不利的环境和健康影响有关的广泛应用中,电离/光电传感器可用于连续和实时测量气溶胶特性。

著录项

  • 来源
    《Fire Technology》 |2015年第2期|247-269|共23页
  • 作者单位

    NIOSH, Pittsburgh Res Lab, Fires & Explos Branch,US Dept Hlth & Human Serv, Off Mine Safety & Hlth Res,Ctr Dis Control & Prev, Pittsburgh, PA 15236 USA;

    NIOSH, Pittsburgh Res Lab, Fires & Explos Branch,US Dept Hlth & Human Serv, Off Mine Safety & Hlth Res,Ctr Dis Control & Prev, Pittsburgh, PA 15236 USA;

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

    Carbonaceous aerosols; Flaming; Smoldering; Photometry; Particulate matter; Smoke;

    机译:碳质气溶胶;火焰;闷烧;光度法;颗粒物;烟;

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