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DOI10.1080/10962247.2017.1310148
An evaluation of mass absorption cross-section for optical carbon analysis on Teflon filter media
Presler-Jur, Paige1; Doraiswamy, Prakash1; Hammond, Okisha1; Rice, Joann2
发表日期2017
ISSN1096-2247
卷号67期号:11页码:1213-1228
英文摘要

Black carbon (BC) or elemental carbon (EC) is a by-product of incomplete fuel combustion, and contributes adversely to human health, visibility, and climate impacts. Previous studies have examined nondestructive techniques for particle light attenuation measurements on Teflon (R) filters to estimate BC. The incorporation of an inline Magee Scientific OT21 transmissometer into the MTL AH-225 robotic weighing system provides the opportunity to perform optical transmission measurements on Teflon filters at the same time as the gravimetric mass measurement. In this study, we characterize the performance of the inline OT21, and apply it to determine the mass absorption cross-section (MAC) of PM2.5 BC across the United States. We analyzed 5393 archived Teflon (R) filters from the Chemical Speciation Network (CSN) collected during 2010-2011 and determined MAC by comparing light attenuation on Teflon (R) filters to corresponding thermal EC on quartz-fiber filters. Results demonstrated the importance of the initial transmission (I-0) value used in light attenuation calculations. While light transmission varied greatly within filter lots, the average I-0 of filter blanks during the sampling period provided an estimate for archived filters. For newly collected samples, it is recommended that filter-specific I-0 measurements be made (i.e., same filter before sample collection). The estimated MAC ranged from 6.9 to 9.4 m(2)/g and varied by region and season across the United States, indicating that using a default value may lead to under-or overestimated BC concentrations. An analysis of the chemical composition of these samples indicated good correlation with EC for samples with higher EC content as a fraction of total PM2.5 mass, while the presence of light-scattering species such as crustal elements impacted the correlation affecting the MAC estimate. Overall, the method is demonstrated to be a quick, cost-effective approach to estimate BC from archived and newly sampled Teflon (R) filters by combining both gravimetric and BC measurements.


Implications: Robotic optical analysis is a valid, cost-effective means to obtain a vast amount of BC data from archived and current routine filters. A tailored mass absorption cross-section by region and season is necessary for a more representative estimate of BC. Initial light transmission measurements play an important role due to the variability in blank filter transmission. Combining gravimetric mass and BC analysis on a single Teflon (R) filter reduces costs for monitoring agencies and maximizes data collection.


语种英语
WOS记录号WOS:000416544400007
来源期刊JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/57718
作者单位1.RTI Int, 3040 Cornwallis Rd, Res Triangle Pk, NC USA;
2.US EPA, Off Air Qual Planning & Stand, Res Triangle Pk, NC 27711 USA
推荐引用方式
GB/T 7714
Presler-Jur, Paige,Doraiswamy, Prakash,Hammond, Okisha,et al. An evaluation of mass absorption cross-section for optical carbon analysis on Teflon filter media[J]. 美国环保署,2017,67(11):1213-1228.
APA Presler-Jur, Paige,Doraiswamy, Prakash,Hammond, Okisha,&Rice, Joann.(2017).An evaluation of mass absorption cross-section for optical carbon analysis on Teflon filter media.JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION,67(11),1213-1228.
MLA Presler-Jur, Paige,et al."An evaluation of mass absorption cross-section for optical carbon analysis on Teflon filter media".JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION 67.11(2017):1213-1228.
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