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Simply scan - Optical methods for elemental carbon measurement in diesel exhaust particulate

机译:简单扫描-柴油机废气颗粒中元素碳测量的光学方法

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摘要

This article describes a performance assessment of three optical methods, a Magee Scientific OT21 Transmissometer, a Hach-Lange Microcolor II difference gloss meter, and a combination of an office scanner with Adobe Photoshop software. The optical methods measure filter staining as a proxy for elemental carbon in diesel exhaust particulate (DEP) exposure assessment and the suitability of each as a replacement for the existing Bosch meter optical method. Filters loaded with DEP were produced from air in a non-coal mine and the exhaust gases from a mobile crane. These were measured with each apparatus and then by combustion to obtain a reference elemental carbon value. The results from each apparatus were then plotted against both the Bosch number and reference elemental carbon values. The equations of the best fit lines for these plots were derived, and these gave functions for elemental carbon and Bosch number from the output of each new optical method. For each optical method, the range of DEP loadings which can be measured has been determined, and conversion equations for elemental carbon and Bosch number have been obtained. All three optical methods studied will effectively quantify blackness as a measure of elemental carbon. Of these the Magee Scientific OT21 transmissometer has the best performance. The Microcolor II and scanner/photoshop methods will in addition allow conversion to Bosch number which may be useful if historical Bosch data are available and functions for this are described. The scanner/photoshop method demonstrates a technique to obtain measurements of DEP exposure without the need to purchase specialized instrumentation.
机译:本文介绍了三种光学方法的性能评估:Magee Scientific OT21透射仪,Hach-Lange Microcolor II差值光泽度仪以及办公室扫描仪和Adobe Photoshop软件的组合。光学方法测量过滤器的污染,以代替柴油机排气微粒(DEP)暴露评估中的元素碳,每种方法的适用性都可以替代现有的博世仪表光学方法。装有DEP的过滤器是由无煤煤矿中的空气和移动式起重机的废气产生的。用每个设备测量这些值,然后通过燃烧测量以获得参考元素碳值。然后将每个设备的结果相对于博世数和参考元素碳值作图。得出了这些图的最佳拟合线方程,并从每种新的光学方法的输出中给出了元素碳和博世数的函数。对于每种光学方法,已经确定了可以测量的DEP负载范围,并获得了元素碳和博世数的转换方程。研究的所有三种光学方法将有效地量化黑度,作为元素碳的量度。其中,Magee Scientific OT21透射仪具有最佳性能。此外,Microcolor II和扫描仪/ photoshop方法还可以转换为Bosch编号,如果可以使用历史Bosch数据并描述其功能,则可能会很有用。扫描仪/ photoshop方法演示了一种无需购买专用仪器即可获得DEP暴露测量值的技术。

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