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The chemical and physical investigation of germicidal aerosols: II. The aerosol centrifuge

Published online by Cambridge University Press:  15 May 2009

S. R. Finn
Affiliation:
From the Portslade Research Laboratories, Portslade, Sussex
E. O. Powell
Affiliation:
From the Portslade Research Laboratories, Portslade, Sussex
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The principle of the aerosol centrifuge is described, and an elementary mathematicaltreatment is given.

The relations between the behaviour of the centrifuge and its dimensions, speed and airflow have been tested experimentally on three machines. It is shown that the mathe-matical formulae given are an adequate basis for design.

Various applications are mentioned.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1942

References

REFERENCES

Bourdillon, R. B., Lidwell, O. M., & Thomas, J. C., (1941). A slit sampler for collecting and counting air-borne bacteria. J. Hyg., Camb., 41, 198.CrossRefGoogle ScholarPubMed
Finn, S. R., Powell, E. O., & Shepherd's Industries Ltd. (1939). An improved centrifuge for forming aerosols. British Patent 534,849 (1941).Google Scholar
Twort, C. C., Baker, A. H., Finn, S. R., & Powell, E. O., (1940). The disinfection of closed atmospheres with germicidal aerosols. J. Hyg., Camb., 40, 253344.CrossRefGoogle ScholarPubMed
Wells, W. F., (1936). Centrifuging apparatus. U.S.A. Patent 2,043,313.Google Scholar
Wells, W. F., Phelps, E. B., & Winslow, C. E. A., (1937). A bacteriological method of sanitary air analysis. Report of sub-committee, Amer. J. Publ. Hlth (Yearbook), 27, 97101.Google Scholar