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Air purification by hypochlorous acid gas

Published online by Cambridge University Press:  15 May 2009

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1. A short synopsis of research upon application of hypochlorites to airpurification is given.

2. A short review of the most recent work on this subject shows that:

(a) Of the “nebulizers” employed by Baker, Finn & Twort (1940) the “Atmozon” is incapable of consistent atomizing of hypochlorites, whilst the “Aerograph” has an efficiency much below that of modern atomizers.

(b) The data obtained by them, after due allowance for defective technique, can be interpreted as fully confirming the view that HOCl gas is the active germicide in hypochlorite spraying. Sterility can be approximately attained (99·75% reduction) by HOCl gas with a volumetric concentration in air, of not more than (3·5 × 109)−1.

(c) The application of the “Aerosol” theory is discussed and reasons given for its non-applicability to hypochlorite spraying.

(d) Alleged drawbacks to this practical application of hypochlorite air disinfection are discussed and shown to be of no practical importance.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1941

References

REFERENCES

Baker, A. H., Finn, S. R. & Twort, C. C. (1940). The use of hypochlorites for aerial disinfection. J. Hyg., Camb., 40, 560–82.Google Scholar
Douglas, S. R., Hill, L. & Smith, W. (1928). Effect of antiseptic sprays on the bacterial content of the air. J. industr. Hyg. 10, 219–36.Google Scholar
Masterman, A. T. (1938). Air purification in inhabited rooms by spraying or atomizing hypochlorites. J. Industr. Hyg. 20, 278–88.Google Scholar
Masterman, A. T. (1939). Colour tests for chlorine, ozone and hypochlorites with methane base. Analyst, 64, 760.Google Scholar
Masterman, A. T. (1940a). A System of Air-Purification by Hypochlorous Acid Gas. London.Google Scholar
Masterman, A. T. (1940b). Air purification. Industrial Welfare and Personnel Management, 22, 261.Google Scholar
Pulvertaft, R. J. V., Lemon, G. J. & Walker, J. W. (1939). Atmospheric and surface sterilization by aerosols. Lancet, 1, 443–6.CrossRefGoogle Scholar
Pulvertaft, R. J. V. & Walker, J. W. (1939). The control of air-borne bacteria and fungus spores by means of aerosols. J. Hyg., Camb., 39, 696708.Google Scholar
Trillat, A. (1938). Propriétés des Aérosols microbiens: Applications. Ann. Hyg. publ., Paris, 119, 6472.Google Scholar
Twort, C. C., Baker, A. H., Finn, S. R. & Powell, E. O. (1940). The disinfection of close atmospheres with germicidal aerosols. J. Hyg., Camb., 40, 253344.CrossRefGoogle ScholarPubMed
Wells, W. F. (1935). Air-borne infection and sanitary air control. J. Industr. Hyg. 17, 253.Google Scholar
Whytlaw-Gray, R. & Patterson, H. S. (1932). Smoke. London: Ed. Arnold and Co.Google Scholar