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The sanitary condition of rural drinking water in a Nile Delta village: II. Bacterial contamination of drinking water in a Nile Delta village

Published online by Cambridge University Press:  25 March 2010

Laila El Attar
Affiliation:
Departments of Microbiology, Rural Health and Sanitary Chemistry, High Institute of Public Health, University of Alexandria
Aleya Abdel Gawad
Affiliation:
Departments of Microbiology, Rural Health and Sanitary Chemistry, High Institute of Public Health, University of Alexandria
Amal E. M. Khairy
Affiliation:
Departments of Microbiology, Rural Health and Sanitary Chemistry, High Institute of Public Health, University of Alexandria
Olfat El Sebaie
Affiliation:
Departments of Microbiology, Rural Health and Sanitary Chemistry, High Institute of Public Health, University of Alexandria
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Summary

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Whilst the major danger associated with drinking water is that it may be contaminated with sewage or human excreta, the danger of pollution from animals must not be overlooked. Outbreaks of infection from drinking water are frequently reported (Melnick & Gerba, 1979) and high prevalence rates of diarrhoeal diseases have been found in the Nile Delta (Sallam et al. unpublished data). The supply of potable water is a critically urgent national problem and is of especial importance to communities which must rely on poorly designed supply systems and which lack even the minimum quality control services.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1982

References

REFERENCES

A.P.H.A., American Public Health Association (1975). Standard Methods for the Examination of Water and Waste-water. 14th ed.New York.Google Scholar
Dufour, A. P., Strickland, E. R. & Cabelli, V. J. (1975). Enumeration method for thermotolerant. E.coli. Marine Field Station. Health Effect Research Laboratory, U.S. Environmental Protection Agency. West Kingstone. Rhode Island 02892.Google Scholar
El Shafhy, F. A. Housing sanitation and health practices among rural families in Abbis II village. Thesis, University of Alexandria.Google Scholar
Geldreich, E. E. & Kenner, B. A. (1969). Concepts of faecal streptococci in stream pollution. Journal of the Water Pollution Control Federation 41, 336351.Google ScholarPubMed
Hufham, J. B. (1974). Evaluating the membrane faecal coliform test by using E. coli as the indicator organisms. Applied Microbiology 27, 771776.CrossRefGoogle Scholar
Levine, M. A., Fischer, J. R. & Cabelli, V. J. (1975). Membrane filter technique for enumeration of Enterococci in marine waters. Applied Microbiology 30, 6671.CrossRefGoogle Scholar
Melnick, J. L. & Gerba, C. P. (1979). Is the water safe to drink? Journal of Infectious Diseases 139, 736737.CrossRefGoogle Scholar
Papavassiliou, J. (1958). The rapid identification of Escherichia coli I by the production at 44° of both indole and gas from lactose. Journal of Applied Bacteriology 21, 104106.CrossRefGoogle Scholar
Sallam, S., Hassan, M. N. R., Hasab, A., Reda, A., Abdel Gawad, A., El-Attar, L. & El Shazly, S. Epidemiology of diarrhoeal diseases in Egypt. (Unpublished data).Google Scholar
Sandhu, S. S., Warren, J. W. & Nelson, P. (1979). Magnitude of pollution Indicator organisms in rural potable water. Applied and Environmental Microbiology 37, 744749.CrossRefGoogle ScholarPubMed
Wilson, G. S. & Miles, A. (1975). Principles of Bacteriology, Virology and Immunity, 6th ed.London: Edward Arnold.Google Scholar