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  3. Environmental and Occupational Health Sciences / 環境與職業健康科學研究所
  4. Applying open-path FTIR with a bi-beam strategy to evaluate personal exposure in indoor environments: Experimental results of a validation study
 
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Applying open-path FTIR with a bi-beam strategy to evaluate personal exposure in indoor environments: Experimental results of a validation study

Journal
American Industrial Hygiene Association Journal
Journal Volume
64
Journal Issue
2
Pages
181-188
Date Issued
2003
Author(s)
CHANG-FU WU  
Yost M.G.
Varr J.
Hashmonay R.A.
DOI
10.1080/15428110308984807
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0042020005&doi=10.1080%2f15428110308984807&partnerID=40&md5=745054cce95577c0e9bc8cac5ed27d8a
https://scholars.lib.ntu.edu.tw/handle/123456789/602078
Abstract
This study evaluated the performance and feasibility of using open-path Fourier transform infrared (OP-FTIR) with a bi-beam strategy to assess personal exposures in workplaces. The bi-beam strategy combines a long beam and a short beam measurement to calculate the average concentration level of the segmented region. A series of experiments was conducted with six human subjects at two workstations inside a chamber. A bi-beam geometry was set up for each workstation. Each subject repeatedly performed two tasks (9 min/task), which were designed to simulate a painting and an assembly task. For each task a tracer gas (N(2)O) was released from a point source near the subject. During each task, while the OP-FTIR collected the N(2)O spectrum, bag samples were collected simultaneously at nose and lapel height. Statistical data analysis applied a general linear model with the bag samples as the dependent variable. Results show that the locations, tasks, and subjects are not significant factors when using OP-FTIR measurements with the bi-beam strategy to estimate personal exposure at the nose height. The model used in this study fits the data reasonably well (R(2)=0.87), and when it is compared with a second set of experimental data, the bias is 0.7 ppm (3%) and the precision is 5.5 ppm. This study demonstrates that the bi-beam sampling strategy may offer a new approach for applying OP-FTIR to industrial hygiene monitoring.
Type
journal article

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