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PMID: 13954626 Published · ppublish English Journal Article

Effect of relative humidity on the bactericidal activity of propylene oxide vapor.

Applied microbiology ·Vol. 10 ·1962-09-00 ·Pages 431-5

HIMMELFARB P, EL-BISI HM, READ RB, LITSKY W

Abstract

Because of the low toxicity of its breakdown product, propylene oxide (PO) vapor will play an increasingly important role in the preservation of foods. It is therefore necessary that the diversified variables which influence effectiveness of PO treatment be thoroughly investigated and understood prior to advocating its general use in industry. Accordingly, the present study was undertaken to determine the effect of relative humidity (RH) upon the bactericidal activity of PO sterilant atmospheres. Death rates were established at increasing RH values of < 1, 52, 65, 80, and 98% and under constant conditions of concentration, pressure, and temperature. Test bacterial populations were preconditioned to corresponding moisture levels. Results indicate that gram-positive cocci were relatively insensitive to PO vapor at dry conditions but became progressively less resistant with the increase in RH up to a maximum of 65 to 70%. Lactic acid bacteria and gram-negative rods were much more sensitive at dry conditions, showing much less dependency upon water vapor. Bacillus subtilis spores elicited the highest degree of resistance but the death rate substantially increased with the increase in RH.

Keywords
ETHERS CYCLIC FOOD PRESERVATION FUMIGATION HUMIDITY
MeSH Terms
Bacillus subtilis Disinfectants Epoxy Compounds Ethers Ethers, Cyclic Food Preservation Fumigation Gases Gram-Negative Bacteria Gram-Positive Cocci Humidity Spores, Bacterial Temperature
Chemicals
Disinfectants Epoxy Compounds Ethers Ethers, Cyclic Gases propylene oxide
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
HIMMELFARB P
EL-BISI H M
READ R B
LITSKY W
Article Info
Journal
Applied microbiology
Abbr.
Appl Microbiol
ISSN
0003-6919
Published
1962-09-00
Pages
431-5
Language
English
Region
United States
NLM ID
7605802
PMCID
PMC1057887
Subset
OM
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