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首页> 外文期刊>Journal of the air & waste management association >Aerosol Measurement: The Use Of Optical Light Scattering For The Determination Of Participate Size Distribution, And Particulate Mass, Including The Semi-volatile Fraction
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Aerosol Measurement: The Use Of Optical Light Scattering For The Determination Of Participate Size Distribution, And Particulate Mass, Including The Semi-volatile Fraction

机译:气溶胶测量:使用光散射法测定参与者的粒径分布和颗粒质量,包括半挥发性成分

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The GRIMM model 1.107 monitor is designed to measure particle size distribution and particulate mass based on a light scattering measurement of individual particles in the sampled air. The design and operation of the instrument are described. Protocols used to convert the measured size number distribution to a mass concentration consistent with U.S. Environmental Protection Agency protocols for measuring particulate matter (PM) less than 10 μm (PM_(10)) and less than 2.5 μm (PM_(2.5)) in aerodynamic diameter are described. The performance of the resulting continuous monitor has been evaluated by comparing GRIMM monitor PM_(2.5) measurements with results obtained by the Rupprecht and Patashnick Co. (R&P) filter dynamic measurement system (FDMS). Data were obtained during month-long studies in Rubidoux, CA, in July 2003 and in Fresno, CA, in December 2003. The results indicate that the GRIMM monitor does respond to total PM_(2.5) mass, including the semi-volatile components, giving results comparable to the FDMS. The data also indicate that the monitor can be used to estimate water content of the fine particles. However, if the inlet to the monitor is heated, then the instrument measures only the nonvolatile material, more comparable to results obtained with a conventional heated filter tapered element oscillating microbalance (TEOM) monitor. A recent modification of the model 180, with a Nafion dryer at the inlet, measures total PM_(2.5) including the nonvolatilernand semi-volatile components, but excluding fine particulate water. Model 180 was in agreement with FDMS data obtained in Lindon, UT, during January through February 2007.
机译:GRIMM 1.107型监护仪旨在根据对采样空气中单个颗粒的光散射测量来测量粒径分布和颗粒质量。描述了仪器的设计和操作。用于将测量的尺寸数分布转换为质量浓度的协议,与美国环境保护局在空气动力学中测量小于10μm(PM_(10))和小于2.5μm(PM_(2.5))的颗粒物(PM)的协议一致描述直径。通过将GRIMM监视器PM_(2.5)测量结果与Rupprecht和Patashnick Co.(R&P)过滤器动态测量系统(FDMS)获得的结果进行比较,评估了所得连续监视器的性能。数据是在2003年7月在加利福尼亚的Rubidoux和2003年12月在加利福尼亚的弗雷斯诺进行的为期一个月的研究中获得的。结果表明,GRIMM监测器确实对总PM_(2.5)质量(包括半挥发性成分)产生了响应,得到的结果与FDMS相当。数据还表明该监测器可用于估算细颗粒的水含量。但是,如果监测器的入口被加热,则该仪器仅测量不挥发物质,这与使用常规加热过滤器锥形元件振荡微量天平(TEOM)监测器获得的结果更可比。 180型的最新改进型是在进口处装有Nafion干燥器的,它测量的总PM_(2.5)包括非挥发性和半挥发性成分,但不包括细颗粒水。 180型模型与2007年1月至2007年2月在犹他州林顿获得的FDMS数据一致。

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