Journal of Food Science · 2000 · 136 citations · 25 references
Microbial InactivationFood PreservationInactivation KineticsFood MicrobiologyContinuous Ozone ReactorEnvironmental MicrobiologyUniform ExposureFood DisinfectionInfection ControlPublic HealthAntimicrobial ResistanceOzone Layer DepletionFoodborne PathogensPseudomonas FluorescensOzoneFood SafetyMicrobial ContaminationFood SpoilageAntibioticsEnvironmental EngineeringMicrobiologyMedicine
A continuous ozone reactor was used to expose Pseudomonas fluorescens, Escherichia coli O157:H7, Leuconostoc mesenteroides, and Listeria monocytogenes to a uniform, constant ozone concentration. Dose‑response modeling revealed a two‑phase linear relationship, with 2.5 ppm ozone for 40 s achieving 5–6 log reductions, and the bacteria exhibited decreasing resistance in the order E.
ABSTRACT: Ozone was tested against Pseudomonas fluorescens, Escherichia coli O157:H7, Leuconostoc mesenteroides , and Listeria monocytogenes. When kinetic data from a batch reactor were fitted to a dose‐response model, a 2‐phased linear relationship was observed. A continuous ozone reactor was developed to ensure a uniform exposure of bacterial cells to ozone and a constant concentration of ozone during the treatment. Survivors plots in the continuous system were linear initially, followed by a concave downward pattern. Exposure of bacteria to ozone at 2.5 ppm for 40 s caused 5 to 6 log decrease in count. Resistance of tested bacteria to ozone followed this descending order: E. coli O157:H7, P. fluorescens, L. mesenteroides , and L. monocytogenes.
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Standard methods: For the examination of water and waste water
Analytical Biochemistry · 1990 · 72.5K citations · Full text
Efficacy of ozonated water against various food-related microorganisms
Lawrence Restaino, E.W. Frampton, J B Hemphill et al. · Applied and Environmental Microbiology · 1995 · 387 citations · Full text