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用于定量柴油颗粒物中有机碳和元素碳的非色散红外光谱仪的评估

Evaluation of a non-dispersive infrared spectrometer for quantifying organic and elemental carbon in diesel particulate matter.

作者信息

Parks David A, Zhao Yongli, Griffiths Peter R, Miller Arthur L

机构信息

National Institute for Occupational Safety and Health (NIOSH), Spokane, Washington, USA.

Defense Health Agency, Fort Liberty, North Carolina, USA.

出版信息

Aerosol Sci Technol. 2024 Mar 8;58(6):694-705. doi: 10.1080/02786826.2024.2322681.

DOI:10.1080/02786826.2024.2322681
PMID:38799182
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11118730/
Abstract

Diesel particulate matter (DPM) is a common and well-known health hazard in the mining environment. The regulatory method for monitoring both the organic and elemental carbon (OC, EC) portions of DPM is a laboratory-based thermal-optical method with a typical turnaround time of one week. In order to evaluate exposure levels and take corrective action prior to overexposure, a portable real-time device capable of quantifying both OC and EC is needed. To that end, researchers from the National Institute for Occupational Safety and Health (NIOSH) designed and tested the feasibility of a device based on bandpass optical filters that target key infrared wavelengths associated with DPM and its spectroscopic baseline. The resulting device, referred to here as a non-dispersive infrared (NDIR) spectrometer could serve as the basis of a cost-effective, field-portable alternative to the laboratory thermal-optical method. The limits of quantification (LOD) indicate that the NDIR spectrometer can quantify EC, OC, and TC provided they are present at 20, 37, and 46 μg/m or more, respectively. In the event that the NDIR spectrometer is integrated with a sampler and filter tape the LOD is estimated to be reduced to 13, 7, and 10 μg/m for EC, OC, and TC, respectively. These LOD estimates assume a face velocity of 59 cm/s and a sampling time of 30 min.

摘要

柴油颗粒物(DPM)是采矿环境中一种常见且广为人知的健康危害因素。监测DPM中有机碳和元素碳(OC、EC)部分的监管方法是一种基于实验室的热光学方法,典型的周转时间为一周。为了评估暴露水平并在过度暴露之前采取纠正措施,需要一种能够对OC和EC进行定量的便携式实时设备。为此,美国国家职业安全与健康研究所(NIOSH)的研究人员设计并测试了一种基于带通光学滤波器的设备的可行性,该滤波器针对与DPM及其光谱基线相关的关键红外波长。由此产生的设备,这里称为非色散红外(NDIR)光谱仪,可以作为一种经济高效、便于携带到现场的替代实验室热光学方法的基础。定量限(LOD)表明,NDIR光谱仪可以对EC、OC和TC进行定量,前提是它们的含量分别为20μg/m、37μg/m或更高。如果将NDIR光谱仪与采样器和滤带集成,估计EC、OC和TC的LOD分别降至13μg/m、7μg/m和10μg/m。这些LOD估计值假设面风速为59cm/s,采样时间为30分钟。

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本文引用的文献

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A predictive model for elemental carbon, organic carbon and total carbon based on laser induced breakdown spectroscopy measurements of filter-collected diesel particulate matter.基于滤膜收集的柴油颗粒物激光诱导击穿光谱测量的元素碳、有机碳和总碳预测模型。
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