參考文獻 |
1. United States Environmental Protection Agency. In Ground-level Ozone Basics
https://www.epa.gov/ground-level-ozone-pollution/ground-level-ozone-basics.
2. United States Environmental Protection Agency. What are Hazardous Air Pollutants.
https://www.epa.gov/haps/what-are-hazardous-air-pollutants.
3. 行政院環境保護署 (2021), 針對有害空氣污染物管制.
4. 行政院環境保護署 (2014), 針對有害空氣污染物管制.
5. 行政院環境保護署, 特殊性工業區管制現況.
6. 行政院環境保護署 (1975), 空氣污染防制法.
7. 行政院環境保護署 (2014), 特殊性工業區有機光化前驅物.
8. 行政院環境保護署 (2017), 光化測站網設立緣起.
9. 行政院環境保護署 (2014), 特殊性工業區有害空氣污染物.
10. United States Environmental Protection Agency. What are volatile organic compounds?
11. 行政院環境保護署 (2010), 揮發性有機空氣汙染管制及排放標準
12. T. M. RYERSON.T.B, HOLLOWAY.J. S, PARRISH.D. D,HUEY .L. G,SUEPER.D. T, FROST.G. J, DONNELLY.S. G, SCHAUFFLER.S, ATLAS.E. L., Observations of Ozone Formation in Power Plant Plumes and Implications for Ozone Control Strategies. Science 292, 719-723 (2001).
13. Y. Ji, F. Gao, Z. Wu, A review of atmospheric benzene homologues in China: Characterization, health risk assessment, source identification and countermeasures. Journal of Environmental Sciences 95, 225-239 (2020).
14. 李冠軍. 自製新型除水及熱脫附濃縮裝置用於GC/MS線上分析揮發性有機污染物. 國立中央大學, 碩士論文 (2020).
15. 郭勝儒. 空氣中氯乙烯、1,2-二氯乙烷GC/MS在線監測方法. 國立中央大學, 碩士論文 (2017).
16. L. V. A. Maceira, F. Borrull, R.M. Marcé, New approach to resolve the humidity problem in VOC determination in outdoor air samples using solid adsorbent tubes followed by TD-GC–MS. Science of the total environment 599-600, 1718-1727 (2017).
17. 曾柏勝. 自製除水器及熱脫附儀用於線上GC/MS/FID揮發性有機污染物之分析. 國立中央大學, 碩士論文 (2021).
18. United States Environmental Protection Agency (1999). Compendium Method TO-15 Determination of Volatile Organic Compounds (VOCs) In Air Collected in Specially-Prepared Canisters and Analyzed by Gas Chromatography/Mass Spectrometry (GC/MS).
19. United States Environmental Protection Agency (1999). Compendium Method TO-17 Determination of Volatile Organic Compounds in Ambient Air Using Active Sampling Onto Sorbent Tubes.
20. 空氣中有機光化前驅物檢測方法-氣相層析/火焰離子化偵測法 (NIEA A505.12B) (2013).
21. K. J. L. a. J. M. Hayes, Efficiency and Temperature Dependence of Water Removal by Membrane Dryers. ACS, 911-918 (1997).
22. W. F. B. T. T. C. E. H.Bates, Problems with a Nafion® membrane dryer for drying chromatographic samples. Journal of Chromatography A 269, 1-9 (1983).
23. Q. Gong, K. L. Demerjian, Hydrocarbon Losses on a Regenerated Nation® Dryer. Journal of the Air & Waste Management Association 45, 490-493 (1995).
24. T. G. J. Gawłowski, E. Pietruszyñska, M. Gawryś and J. Niedzielski, Dry purge for the removal of water from the solid sorbents used to sample volatile organic compounds atmospheric air Analyst 125, 2112-2117 (2000).
25. 呂秉祥, 自製除水及熱脫附儀串接氣相層析質譜儀用於連續監測大氣中有機污染物. 國立中央大學, 碩士論文 (2022).
26. J. L. Wang, Automated Gas Chromatography with Cryogenic/Sorbent Trap for the Measurement of Volatile Organic Compounds in the Atmosphere. Journal of Chromatography A 863, 183-193 (1999).
27. 王介亨. 以Heart-cut技術配合單一偵檢器發展氣相層析"剪裁(tailoring)"技術. 國立中央大學, 化學學系 (2004).
28. Z. E. P. O. David Sparkman, Fulton G. Kitson, Chapter 4 - Mass Spectrometry Instrumentation. (Gas Chromatography and Mass Spectrometry (Second edition), 2011), pp. 89-148.
29. F. J. H. D.A. Skoog, and S.R. Crouch, Principles of instrumental analysis. Cengage learning, (2017).
30. J. Blomberg, U. A. T. Brinkman, Practical and theoretical aspects of designing a flame-ionization detector/mass spectrometer Deans′ switch: Pressure–flow relations in gas chromatograph–detector interfaces using vacuum-outlet conditions. Journal of Chromatography A 831, 257-265 (1999).
31. C.-H. Wang, S.-W. Chiang, J.-L. Wang, Simultaneous analysis of atmospheric halocarbons and non-methane hydrocarbons using two-dimensional gas chromatography. Journal of Chromatography A 1217, 353-358 (2010).
32. Y.-C. Su, W.-T. Liu, W.-C. Liao, S.-W. Chiang, J.-L. Wang, Full-range analysis of ambient volatile organic compounds by a new trapping method and gas chromatography/mass spectrometry. Journal of Chromatography A 1218, 5733-5742 (2011).
33. 黃映雪. 應用Heart-cut技術診斷揮發性有機化合物之熱脫附行為. 國立中央大學, 碩士論文 (2009).
34. C.-F. Ou-Yang, Y.-S. Chen, T.-J. Huang, C.-H. Wang, J.-L. Wang, Characterization of thermal desorption with the Deans-switch technique in gas chromatographic analysis of volatile organic compounds. Journal of Chromatography A 1462, 107-114 (2016).
35. T.-Y. Chen, M.-J. Li, J.-L. Wang, Sub-second thermal desorption of a micro-sorbent trap for the analysis of ambient volatile organic compounds. Journal of Chromatography A 976, 39-45 (2002).
36. D. R. Deans, A new technique for heart cutting in gas chromatography [1]. Chromatographia 1, 18-22 (1968).
37. S.-T. C. Khan M. Sharif , Chadin Kulsing , Philip J. Marriott The microfluidic Deans switch: 50 years of progress, innovation and application. TrAC, Trends in analytical chemistry 82, 35-54 (2016).
38. G. T. E. C. Ruhle, S. Urban, J.P. Dufour, P.D. Morrison, P.J. Marriott, Multiple component isolation in preparative multidimensional gas chromatography with characterisation by mass spectrometry and nuclear magnetic resonance spectroscopy. J. Chromatogr. A 1216, 5740-5747 (2009).
39. J. N. C.P.G. Ruhle, P.D. Morrison, R.C. Jones, T. Caradoc-Davies, A.J. Canty, M.G. Gardiner, V.A. Tolhurst, P.J. Marriott, Characterization of tetra-aryl benzene isomers by using preparative gas chromatography with mass spectrometry, nuclear magnetic resonance spectroscopy, and x-ray crystallographic methods. Anal. Chem 82, 4501-4509 (2010).
40. S. P. D. Sciarrone, C. Ragonese, P.Q. Tranchida, P. Dugo, L. Mondello, Increasing the isolated quantities and purities of volatile compounds by using a triple Deans-switch multidimensional preparative gas chromatographic system with an apolar-wax-ionic liquid stationary-phase combination. Anal. Chem 84, 7092-7098 (2012).
41. S. U. G.T. Eyres, P.D. Morrison, P.J. Marriott, Application of microscale-preparative multidimensional gas chromatography with nuclear magnetic resonance spectroscopy for identification of pure methylnaphthalenes from crude oils. J. Chromatogr. A 1215, 168-176 (2008).
42. K. S. N. Ochiai, Selectable one-dimensional or two-dimensional gas chromatography-olfactometry/mass spectrometry with preparative fraction collection for analysis of ultra-trace amounts of odor compounds. J. Chromatogr. A 1218, 3180-3185 (2011).
43. N. J. M. John V. Seeley, Steven V. Bandurski, Stacy K. Seeley, and James D. McCurry, Microfluidic Deans Switch for Comprehensive Two-Dimensional Gas Chromatography. Anal. Chem 79, 1840-1847 (2007).
44. Aligent. Capillary Flow Technology: Deans Switch.
45. 空氣中揮發性有機化合物檢測方法-不銹鋼採樣筒/氣相層析質譜儀 (2021).
46. 中華民國行政院環保署. 環境檢驗檢量線製備及查核指引 (2004).
47. 中華民國行政院環保署. 環境檢驗方法偵測極限測定指引 (2004).
48. 陳致廷. 改良觸媒法非甲烷總碳氫化合物分析儀應用於空氣品質監測. 國立中央大學, 碩士論文 (2022).
49. J. A. a. A. Tuck, The calculation of stratospheric air parcel trajectories using satellite data. Quarterly Journal of the Royal Meteorological Society 111, 279-307 (1985).
50. M. I. Y. D. Ray, Dichloromethane (methylene chloride). Reference Module in Biomedical Sciences, (2023). |