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Evaluation and comparison of continuous PM2.5 monitors for measurement of ambient aerosol, fresh diesel aerosol, and fresh secondary organic aerosol.

机译:连续PM2.5监测仪的评估和比较,用于测量环境气溶胶,新鲜柴油气溶胶和新鲜二次有机气溶胶。

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摘要

To provide a scientific basis for the selection and use of continuous monitors for exposure, and for health effects studies and for compliance and episode measurements at strategic locations in the State of New Jersey, the performance of seven continuous PM2.5 monitors were evaluated by this research. Included were analyses for interference, and accuracy, and evaluations for seasonal conditions and ambient aerosol. Then the important specific aerosols in fresh diesel exhaust, and fresh secondary organic aerosol, were evaluated for reliability in detection using each technique. These seven PM monitors included as part of this field and laboratory evaluation and intercomparison were two nephelometers (SidePak, TSI Inc. and Nephelometer 903, Radiance), two loaded oscillating monitors (TEOM 50C, R&P Inc. and TEOM FDMS, R&P Inc.), two beta-radiation attenuation monitors (BAM, Metone Inc. and C14 Beta, Thermo Inc.) and one aethalometer (MAAP, Thermo Inc.). Environmental conditions, and physical and chemical properties of particles, e.g., particle size and black carbon content, were examined for their affect on the performance of real-time monitors. Gravimetric samplers (Harvard Impactor and Federal Reference Sampler) were collocated with real-time instruments as reference methods for experiments conducted in a controlled environmental facility (CEF) and at an outdoor site in Ewing, NJ.;Overall, for the compliance studies, instrumentation that could substitute for the filter based FRM would be the TEOM (FDMS) monitor, followed by beta gauges. The TEOM (50C) monitor should be used with caution for measuring ambient aerosol during winter because when compared to the gravimetric method the instrument underestimates the ambient mass. For the measurements of fresh diesel aerosol and fresh secondary organic aerosol, the SidePak nephelometer displays strength of low interference and the TEOM (50C) monitor has advantage of stable calibration. This suggested that the two instruments should be used together to strengthen results in locations demonstrated by these two sources, however, the loss of material from the TEOM (50C) could still be a problem in non-controlled environments. Thus, a faster response TEOM (FDMS) should be a consideration for development and use in composition of source oriented applications.
机译:为了为选择和使用连续监测仪进行暴露,健康影响研究以及新泽西州战略位置的依从性和发作测量提供科学依据,本评估小组评估了七台连续PM2.5监测仪的性能研究。其中包括对干扰和准确性的分析,以及对季节性条件和环境气溶胶的评估。然后,使用每种技术评估新鲜柴油废气中的重要特定气雾剂和新鲜的二次有机气雾剂的检测可靠性。这七个PM监测仪包括在该领域中,实验室评估和内部比较是两个浊度仪(SidePak,TSI Inc.和Nephelometer 903,Radiance),两个加载的振荡监测仪(TEOM 50C,R&P Inc.和TEOM FDMS,R&P Inc.)。 ,两个beta辐射衰减监视器(BAM,Metone Inc.和C14 Beta,Thermo Inc.)和一个湿度计(MAAP,Thermo Inc.)。检查了环境条件以及颗粒的物理和化学性质(例如,粒径和黑碳含量)对实时监测器性能的影响。重量采样器(哈佛撞击器和联邦参考采样器)与实时仪器并置在一起,作为在受控环境设施(CEF)和新泽西州尤因的室外场所进行的实验的参考方法;总体而言,用于合规性研究,仪器可以替代基于过滤器的FRM的是TEOM(FDMS)监视器,然后是贝塔压力计。在冬季测量TEAM(50C)监测器时,应谨慎使用,因为与重量法相比,该仪器会低估环境质量。对于新鲜的柴油气雾剂和新鲜的二次有机气雾剂的测量,SidePak浊度仪显示出低干扰强度,TEOM(50C)监测仪具有校准稳定的优点。这表明应该同时使用这两种仪器来增强这两个来源所表明位置的结果,但是,在不受控制的环境中,TEOM(50C)造成的材料损失仍然是一个问题。因此,对于面向源的应用程序,开发和使用快速响应的TEOM(FDMS)应该是一个考虑因素。

著录项

  • 作者

    Zhu, Kunning.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick and University of Medicine and Dentistry of New Jersey.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick and University of Medicine and Dentistry of New Jersey.;
  • 学科 Environmental Sciences.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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