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Adverse effect of ammonium salts on the antibacterial activity of paraformaldehyde solutions
Abstract:
The antibacterial activity of aqueous solutions of paraformaldehyde in concentrations from 0.1 to 0.4% (w/v) is bacteriostatic rather than bactericidal in the presence or absence of ammonium chloride. The presence of ammonium chloride significantly lengthened the time of exposure to paraformaldehyde necessary for inhibition of growth of the test organism (Staphylococcus aureus FDA 209) when unbuffered solutions were used. Elevation of the pH of the reacting mixture of paraformaldehyde and ammonium chloride by partial buffering lengthened the time of exposure necessary for inhibition of growth of the test organism. Decrease of antibacterial activity was concomitant with the disappearance of paraformaldehyde from the reacting mixture. The reaction of paraformaldehyde with ammonium chloride was rapid at room temperature (25 C) and at pH levels near neutrality. The fate of the reacting paraformaldehyde, including the possibility of the formation of hexamethylenetetramine or methylenimine, is discussed with particular reference to loss of antibacterial activity.
Insights
Paraformaldehyde exhibits bacteriostatic, not bactericidal, activity against Staphylococcus aureus. Ammonium chloride and pH changes reduce its antibacterial effectiveness by reacting with and diminishing paraformaldehyde concentration.
Area of Science:
- Microbiology
- Chemical kinetics
Background:
- Paraformaldehyde is used for its antimicrobial properties.
- Understanding its interaction with other chemicals is crucial for its application.
Purpose of the Study:
- To investigate the antibacterial activity of paraformaldehyde.
- To determine the influence of ammonium chloride and pH on this activity.
Main Methods:
- Testing antibacterial activity of paraformaldehyde (0.1-0.4%) against Staphylococcus aureus.
- Observing effects of ammonium chloride and pH variations.
- Monitoring paraformaldehyde concentration over time.
Main Results:
- Paraformaldehyde showed bacteriostatic, not bactericidal, effects.
- Ammonium chloride and elevated pH prolonged the time for growth inhibition.
- Antibacterial activity decreased as paraformaldehyde disappeared due to reactions.
Conclusions:
- The antibacterial efficacy of paraformaldehyde is reduced by reactions with ammonium chloride, especially at neutral pH.
- Potential reaction products like hexamethylenetetramine may form, impacting activity.
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