A novel quantitation approach for maximizing detectable targets for offensive/volatile odorants with diverse functional groups by thermal desorption-gas chromatography-mass spectrometry

Author:

Kim Yong-Hyun,Kim Ki-Hyun

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference26 articles.

1. Baker, R. A. Threshold odors of organic chemicals. J. Am. Water Works Ass. 55, 913–916 (1963).

2. Nagata, Y. & Takeuchi, N. Measurement of odor threshold by triangle odor bag method. Odor Measurement Review, Office of Odor, Noise and Vibration Environmental Management Bureau, Ministry of the Environment, Tokyo, Japan 118–127 (2003).

3. KMOE. Annual Environmental Report in South Korea. Korean Ministry of Environment (2008) Available at: http://webbook.me.go.kr/DLi-File/091/023/002/186050.pdf (Accessed: 15 Mar 2016).

4. KMOE. Odor analysis method in South Korea, Korean Ministry of Environment, (Nov. 2007) Report number: 2007–17.

5. Trabue, S. L., Anhalt, J. C. & Zahn, J. A. Bias of Tedlar bags in the measurement of agricultural odorants. J. Environ. Qual. 35, 1668–1677 (2006).

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