Environmental Engineering Reference
In-Depth Information
density of water at STP
ρ H 2
ρ H O
=
1
gcm
3
2
d
diameter of an idealized tube (cm)
R
radius of curvature of an idealized tube (cm)
REFERENCES
1. Fuchs, N.A., The Mechanics of Aerosols , Pergamon Press, New York, 1964.
2. Mercer, T.T., Aerosol Technology in Hazard Evaluation , Academic Press, New York, 1973.
3. Reist, P.C., Aerosol Science and Technology , McGraw-Hill, New York, 1993.
4. Hinds, W.C., Aerosol Technology: Properties, Behavior and Measurement of Airborne Particles , Wiley,
New York, 1999.
5. Friedlander, S., Smoke, Dust and Haze: Fundamentals of Aerosol Dynamic , 2nd Edn., Oxford University
Press, New York, 2000.
6. Hofmann, W., Morawska, L., Winkler-Heil, R., and Moustafa, M., Deposition of combustion aerosols in
the human respiratory tract: Comparison of theoretical predictions with experimental data considering
nonspherical shape. Inhal. Toxicol ., 21, 1154, 2009.
7. Baron, P.A. and Willeke, K., Gas and particle motion, in Aerosol Measurement: Principles, Techniques,
and Applications , 2nd edn., Baron, P. and Willeke, K. (Eds.), Van Nostrand Reinhold, New York, 2001,
Chap. 4.
8. Moss, O., Shape factors for airborne particles, Am. Ind. Hyg. Assoc. J ., 32, 221, 1971.
9. Stober, W.A., A note on the aerodynamic diameter and the mobility of non-spherical aerosol particles,
J. Aerosol Sci ., 2, 453, 1971.
10. Stober, W., Dynamic shape factors of nonspherical aerosol particles, in Assessment of Airborne Particles ,
Mercer, T., Morrow, P., and Stober, W. (Eds.), Charles C. Thomas, Springield, IL, 1972, Chap. 14.
11. Leith, D., Drag on nonspherical object, Aerosol Sci. Technol ., 6, 153, 1987.
12. Davies, C.N., Particle luid interaction, J. Aerosol Sci ., 10, 477, 1979.
13. Davies, C.N., Deinitive equations for the luid resistance of spheres, Proc. Phys. Soc ., 57, 259, 1945.
14. Allen, M.D. and Raabe, O.G., Re-evaluation of Milikan's oil drop data for the motion of small particles
in air, J. Aerosol Sci ., 6, 537, 1982.
15. Jennings, S.G., The mean free path in air, J. Aerosol Sci ., 19, 159, 1988.
16. Crowder, T.M., Rosati, J.A., Schroeter, J.D., Hickey, A.J., and Martonen, T.B., Fundamental effects of
particle morphology on lung delivery: Predictions of Stokes's law and the particular relevance to dry
powder inhaler formulation and development, Pharm. Res ., 19, 239, 2002.
17. Dennis, W.L., The growth of hygroscopic drops in a humid air stream, in The Physical Chemistry of
Aerosols , The Faraday Society, Aberdeen University Press, Aberdeen, Scotland, 1961, Chap. 2.
18. Ferron, G.A., Haider, B., and Kreyling, W.G., Inhalation of salt aerosol particles. I. Estimation of the
temperature and relative humidity of the air in the human upper airways, J. Aerosol Sci ., 19, 343, 1988.
19. Morrow, P.E., Factors determining hygroscopic aerosol deposition in airways, Physiol. Rev ., 66, 330, 1986.
20. Hiller, F.C., Health implications of hygroscopic particle growth in the human respiratory tract, J. Aerosol
Med ., 4, 1, 1991.
21. Robinson, R.J. and Yu, C.P., Theoretical analysis of hygroscopic growth rate of mainstream and side-
stream cigarette smoke particles in the human respiratory tract, Aerosol Sci. Technol ., 28, 21, 1998.
22. Finlay, W.H., Estimating the type of hygroscopic behavior exhibited by aqueous droplets, J. Aerosol
Med ., 11, 221, 1998.
23. Ferron, G.A., The size of soluble aerosol particles as a function of the humidity of the air: Application to
the human respiratory tract, J. Aerosol Sci ., 8, 251, 1977.
24. Martonen, T.B., Analytical model of hygroscopic particle behavior in human airways, Bull. Math. Biol .,
44, 425, 1982.
25. Blanchard, J.D. and Willeke, K., Total deposition of ultraine sodium chloride particles in human lungs,
J. Appl. Physiol ., 57, 1850, 1984.
26. Chan, H.K., Eberl, S., Daviskas, E., Constable, C., and Young, I., Changes in lung deposition of aerosols
due to hygroscopic growth: A fast SPECT study, J. Aerosol Med ., 15, 307, 2002.
27. Hofmann, W., Morawska, L., and Bergmann, R., Environmental tobacco smoke deposition in the human
respiratory tract: Differences between experimental and theoretical approaches, J. Aerosol Med ., 14, 317,
2001.
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