Hostname: page-component-586b7cd67f-2brh9 Total loading time: 0 Render date: 2024-11-23T03:46:50.075Z Has data issue: false hasContentIssue false

Poultry House Dust, Odours and Feathers—A Review1

Published online by Cambridge University Press:  13 March 2007

Daniel Zavaleta
Affiliation:
University of CaliforniaDavis, California 95616
W. O. Wilson
Affiliation:
University of CaliforniaDavis, California 95616
Get access

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
Research Article
Copyright
Copyright © Cambridge University Press 1976

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Anderson, D. P.Beard, C. W. and Hanson, R. P. (1964). The adverse effects of ammonin on chickens including resistance to infection with Newcastle disease virus. Avian Dis. 8: 369379.CrossRefGoogle Scholar
Anderson, D. P.Beard, C. W. and Hanson, R. P. (1966). Influence of poultry house dust. ammonia and carbon dioxide on the resistance of chickens to Newcastle disease virus. Avian Dis. 10: 177188.CrossRefGoogle ScholarPubMed
Azevedo, J. and Stout, P. R. (1974). Farm animal manures: An overview of their role in the agricultural environment. Calif. Agr. Exp. Sta. and Ext. Service. Manual 44.Google Scholar
Bell, R. G. (1970). Fatty acid content as a measure of the odour potential of stored liquid poultry manure. Poultry Sci. 49: 11261129.CrossRefGoogle Scholar
Bullis, K. L.Snoeyenbos, G. H.and Van Roekel, H. (1950). A keratoconjunctivitis in chickens. Poultry Sci. 29: 386389.CrossRefGoogle Scholar
Burmester, B. R.and Witter, R. L. (1972). Efficiency of commercial air filters against Marek's disease virus. Appl. Microbiol. 23: 505508.CrossRefGoogle ScholarPubMed
Burnett, W. E. (1969a). Odor transport by particulate matter in high density poultry houses. Poultry Sci. 48: 182185.CrossRefGoogle ScholarPubMed
Burnett, W. E. (1969b). Air pollution from animal wastes—the determination of malodors by gas chromatographic and organoleptic techniques. Envir. Sci. Technol. 3: 744749.CrossRefGoogle Scholar
Charles, D. R.and Payne, C. G. (1966a). The influence of graded levels of atmospheric ammonia on chickens. I. Effects of respiration and on the performance of broilers and replacement growing stock. Brit. Poultry Sci. 7: 177187.CrossRefGoogle ScholarPubMed
Charles, D. R.and Payne, C. G. (1966b). The influence of graded levels of atmospheric ammonia on chickens. II. Effects on the performance of laying hens. Brit. Poultry Sci. 7: 189198.CrossRefGoogle ScholarPubMed
Diebel, R. H. (1967). Agriculture and the quality of our environment. Brady, Nyle C., Ed. A. A. A. Sci. Pub. No. 85, pp. 395–9, Washington, D.C.Google Scholar
Dobie, J. B. (1964). Airborne dust in agricultural environments. Paper No. 64–914 Winter MeetingASAENew Orleans.Google Scholar
Drury, L. N.Patterson, W. C.and Beard, C. W. (1969). Ventilating opultry houses with filtered air under positive pressure to prevent airborne diseases. Poultry Sci. 48: 16401646.CrossRefGoogle ScholarPubMed
Faddoul, G. P.and Ringrose, R. C. (1950). Avian keratoconjunctivitis. Vet. Med. 45: 492493.Google ScholarPubMed
Harry, E. G.and Hemsley, L. A. (1964). Factors influencing the survival of coliforms in the dust of deep litter houses. Vet. Record. 76: 863867.Google Scholar
Hart, S. A. (1957). Chicken house fly control through manure handling. Calif. Vector Views 4(11): 6768.Google Scholar
Kling, H. Fand Quarles, C. L. (1974). Effect of atmospheric ammonia and the stress of infectious bronchitis vaccination on Leghorn males. Poultry Sci. 53: 11611167.CrossRefGoogle ScholarPubMed
Kling, H. F.and Bressler, G. O. (1974). Gas and particulate levels in sloping wire poultry houses. Pa. Agr. Expt. Sta. Prog. Rpt. 342.Google Scholar
Koon, J.Howes, J. R.Grub, W.and Rollo, C. A. (1963). Poultry dust: Origin and composition. Agr. Engin. 44: 608609.Google Scholar
Legner, E. F.Bowen, W. R.Rooney, W. F.McKeen, W. D.and Johnston, G. W. (1975). Integrated fly control on poultry ranches. Calif. Agr. 29(5): 810.Google Scholar
Quarles, C. L.and Kling, H. F. (1974). Evaluation of ammonia and infectious bronchitis vaccination stress on broiler performance and carcass quality. Poultry Sci. 53: 15921596.CrossRefGoogle Scholar
Sainsbury, D. W. B. (1967). Effects of air movement. In, Housing, Environment and Health of Tuble Chicken. (Ed). Sainsbury, D. W. B.Farm Building Centre, Kenilworth, Warwickshire, Eng.Google Scholar
Seltzer, W.Mourn, S. G.and Goldhaft, T. M. (1969). A method for the treatment of animal wastes to control ammonia and other odors. Poult. Sci. 48: 1912.CrossRefGoogle ScholarPubMed
Valentine, H. (1964). A study of the effect of different ventilation rates on the ammonia concentrations in the atmosphere of broiler houses. Brit. Poultry Sci. 5: 149159.CrossRefGoogle Scholar
Witter, R. L. (1970). Epidemiological studies related to the control of Marek's disease. World's Poultry Sci. J. 26: 755762.CrossRefGoogle Scholar