Читать книгу Continuous Emission Monitoring - James A. Jahnke - Страница 148
REFERENCES
Оглавление1 Doussin, J.F., Ritz, D., and Carlier, P. (1999). Multiple‐pass cell for very‐long‐path infrared spectrometry. Applied Optics 38: 4145–4150.
2 Durham, M.D., Ebner, T.G., Burkhardt, M.R., and Sagan, F.J. (1990). Development of an ammonia slip monitor for process control of NH3 based NOx control technologies. In: Proceedings – Continuous Emission Monitoring – Present and Future Applications (ed. J.A. Jahnke), 227–238. Pittsburgh: Air & Waste Management Association.
3 Ensor, D.S. and Pilat, M.J. (1971). Calculation of smoke plume opacity from particulate air pollutant properties. Journal of the Air Pollution Control Association 21: 496–501.
4 Faist, J., Capasso, F., Sivco, D.L. et al. (1994). Quantum cascade laser. Science 264: 553–556.
5 Frisch, M.B. (1996). The spectra scan family of trace gas monitors based on tunable diode laser spectroscopy. Paper presented at the Air & Waste Management Association meeting, Nashville. June, paper 96‐TP26B.05.
6 Herriott, D. and Schulte, H. (1965). Folded optical delay lines. Applied Optics 4 (8): 883–891.
7 Hinkley, E.D. (1972). Development and Application of Tunable Diode Lasers to the Detection and Quantitative Evaluation of Pollutant Gases. Final Technical Report. Prepared for the Environmental Protection Agency. Research Triangle Park: MIT Lincoln Laboratory.
8 Hinkley, E.D. and Kelley, P.L. (1971). Detection of air pollutants with tunable diode lasers. Science 171: 635–639.
9 Imasaka, T. and Ishibashi, N. (1990). Diode lasers and practical trace analysis. Analytical Chemistry 62 (6): 363A–371A.
10 International Standards Organization (ISO) (2015). Optics and photonics – spectral bands. ISO Standard 20473:(2007). (R2015). Geneva: Central Secretariat.
11 Jahnke, J. A. (1984). Transmissometer Systems – Operation and Maintenance, an Advanced Course. EPA 450/2‐84‐004. Research Triangle Park, NC: Environmental Protection Agency‐Air Pollution Training Institute.
12 Kosterev, A., Wysocki, G., Bakhirkin, Y. et al. (2008). Application of quantum cascade lasers to trace gas analysis. Applied Physics B 90: 165–176.
13 Lerner, E.J. (1998). Diode‐laser wavelengths shift deeper into the infrared. Laser Focus World 34: 95–102.
14 Mettler‐Toledo (2017). Tunable diode laser spectroscopy – theory and background. https://www.mt.com/us/en/home/library/guides/process‐analytics/TDL‐booklet.html (accessed 3 June 2021).
15 Middleton, W.E.K. (1968). Vision Through the Atmosphere. Toronto: University of Toronto Press.
16 O’Keefe, A. and Deacon, D.S.G. (1988). Cavity ring‐down optical spectrometer for absorption measurements using pulsed laser sources. Review of Scientific Instruments 59: 2544–2555.
17 Pilat, M.J. and Ensor, D.S. (1970). Plume opacity and particulate mass concentration. Atmospheric Environment 4: 163–173.
18 Saltzman, R.S. (1990). A process UV/VIS diode array analyzer for source monitoring. In: Proceedings – Continuous Emission Monitoring – Present and Future Applications (ed. J.A. Jahnke), 227–238. Pittsburgh: Air & Waste Management Association.
19 Thielke, J.F. and Pilat, M.J. (1978). Plume opacity related to particle mass concentration and size distribution. Atmospheric Environment 12: 2439–2447.
20 Vidrine, D.W. and Warren, D. (2000). Chapter 4 – mid infrared spectroscopy. In: Chemical Process Analysis. Ed.: J.M. Chalmers. Sheffield Academic Press.
21 White, J.U. (1942). Long optical paths of large aperture. Journal of the Optical Society of America 32 (5): 285–289.