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柴油颗粒物排放的现场测量。

Field measurement of diesel particulate matter emissions.

作者信息

Volkwein Jon C, Mischler Steven E, Davies Brian, Ellis Clive

机构信息

Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Pittsburgh Research Laboratory, PO Box 18070, Pittsburgh, PA 15236, USA.

出版信息

Ann Occup Hyg. 2008 Mar;52(2):99-105. doi: 10.1093/annhyg/mem069. Epub 2008 Feb 14.

Abstract

A primary means to reduce environmental levels of diesel particulate matter (DPM) exposure to miners is to reduce the amount of DPM emission from the engine. A quick and economic method to estimate engine particulate emission levels has been developed. The method relies on the measurement of pressure increase across a filter element that is briefly used to collect a DPM sample directly from the engine exhaust. The method has been refined with the inclusion of an annular aqueous denuder to the tube which permits dry filter samples to be obtained without addition of dilution air. Tailpipe filter samples may then be directly collected in hot and water-supersaturated exhaust gas flows from water bath-cooled coal mine engines without the need for dilution air. Measurement of a differential pressure (DP) increase with time has been related to the mass of elemental carbon (EC) on the filter. Results for laboratory and field measurements of the method showed agreement between DP increase and EC collected on the filter with R(2) values >0.86. The relative standard deviation from replicate samples of DP and EC was 0.16 and 0.11, respectively. The method may also have applications beyond mining, where qualitative evaluation of engine emissions is desirable to determine if engine or control technology maintenance may be required.

摘要

降低矿工接触环境中柴油颗粒物(DPM)水平的主要方法是减少发动机的DPM排放量。已开发出一种快速且经济的方法来估算发动机颗粒物排放水平。该方法依赖于测量穿过滤芯的压力增加,该滤芯被短暂用于直接从发动机排气中收集DPM样本。通过在管道中加入环形水洗涤器对该方法进行了改进,这使得无需添加稀释空气即可获得干燥的过滤器样本。然后可以直接在来自水浴冷却的煤矿发动机的热且水饱和的废气流中收集排气管过滤器样本,而无需稀释空气。随着时间的推移测量压差(DP)的增加与过滤器上元素碳(EC)的质量相关。该方法的实验室和现场测量结果表明,DP增加与过滤器上收集的EC之间具有一致性,R(2)值>0.86。DP和EC重复样本的相对标准偏差分别为0.16和0.11。该方法可能还适用于采矿以外的领域,在这些领域中,需要对发动机排放进行定性评估,以确定是否可能需要进行发动机或控制技术维护。

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