首页> 外文会议>SME Annual Conference Expo >PVALUATING PERFORMANCE OF REAL-TIME DPM MONITORS FOR QUANTIFYING AIRBORNE ELEMENTAL CARBON (EC) AND ORGANIC CARBON (OC)
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PVALUATING PERFORMANCE OF REAL-TIME DPM MONITORS FOR QUANTIFYING AIRBORNE ELEMENTAL CARBON (EC) AND ORGANIC CARBON (OC)

机译:实时DPM监视器的测量性能,用于量化空气传播元素碳(EC)和有机碳(OC)

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Diesel particulate matter (DPM) has been shown to contribute to various adverse health effects on underground miners. In order to reduce worker exposures, it is critical to measure the levels of DPM in the active work settings and in real time. However, the 5040 method, developed by the National Institute for Occupational Safety and Health (NIOSH). which quantifies the mass of elemental carbon (EC) and organic carbon (OC) in the samples, is based on full-shift samples, and can take days or even weeks for results. Use of real-time monitors could significantly reduce the risk of DPM exposure to miners, and available monitors have been shown to quantify DPM, mainly using the EC and other surrogates. The NIOSH Spokane Mining Research Division is conducting research aimed at developing a field-portable DPM monitor that is able to quantify both EC and OC. One part of this work is to understand the effect of OC on currently available real-time DPM monitors. This paper will present the results from experiments that were designed to observe the effect of OC on real time monitors and compare the results with the NIOSH 5040 method.
机译:已显示柴油颗粒物质(DPM)对地下矿工有助于各种不利健康影响。为了减少工人风险,重要的是测量活动工作设置中的DPM水平,实时地段。但是,由国家职业安全和健康研究所(Niosh)开发的5040种方法。这量化了基于样品中的元素碳(EC)和有机碳(OC)的质量,基于全移样式,并且可能需要数天甚至几周的结果。使用实时显示器可以显着降低DPM暴露于矿工的风险,并且已显示可用监视器量化DPM,主要是使用EC和其他代理。 Niosh Spokane矿业研究部门正在进行研究旨在开发现场便携式DPM监视器,该监视器能够量化EC和OC。这项工作的一部分是了解OC对目前可用的实时DPM监视器的影响。本文将介绍旨在观察OC在实时监测器的效果的实验结果中的结果,并将结果与​​Niosh 5040方法进行比较。

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