Decontamination of cut carrot by Persteril agent based on the action of peroxyacetic acid

The first aim of this study was to test the efficacy of peroxyacetic acid (Persteril) on carrots contaminated by natural microbial flora. The second aim was to test the efficacy of peroxyacetic acid vapours generated by injecting the tested agent into the packed, previously decontaminated carrots. T...

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Published in:Czech Journal of Food Sciences Vol. 28; no. 6; pp. 564 - 571
Main Authors: Landfeld, A.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic), Erban, V.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic), Kovarikova, E.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic), Houska, M.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic), Kyhos, K.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic), Pruchova, J.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic), Novotna, P.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
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Language:English
Published: Prague Czech Academy of Agricultural Sciences (CAAS) 01-01-2010
Czech Academy of Agricultural Sciences
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Abstract The first aim of this study was to test the efficacy of peroxyacetic acid (Persteril) on carrots contaminated by natural microbial flora. The second aim was to test the efficacy of peroxyacetic acid vapours generated by injecting the tested agent into the packed, previously decontaminated carrots. Tests were carried out on a model of pre-washed, cut, and re-washed carrots, which were left naturally contaminated to resemble real grocery store conditions. Four decontamination regimens were applied: (1) rinsing with ordinary tap (drinking) water, (2) rinsing with a 0.2% solution of Persteril, (3) rinsing with a 0.2% solution of Persteril + the addition of concentrated Persteril into the packaging before sealing, and (4) rinsing with a 0.2% solution of Persteril + the addition of concentrated Persteril into the packaging before sealing + another addition of concentrated Persteril after 24 hours. The total number of aerobe mesophilic microorganisms (TNM) and the numbers of yeasts and moulds were monitored in the samples taken during 28-days of storage. The last decontamination regimen reduced the initial contamination by TNM by about 10,000 CFU/g or 4 log units and no further microbial growth was observed during storage. Yeasts and moulds were reduced by about 3,160 CFU/g or 3.5 log units. No statistically significant changes in colour, texture or taste were noted during storage. There was a slight change immediately after the application in the odour of samples treated with concentrated Persteril; however, the odour returned to original levels during storage.
AbstractList The first aim of this study was to test the efficacy of peroxyacetic acid (Persteril) on carrots contaminated by natural microbial flora. The second aim was to test the efficacy of peroxyacetic acid vapours generated by injecting the tested agent into the packed, previously decontaminated carrots. Tests were carried out on a model of pre-washed, cut, and re-washed carrots, which were left naturally contaminated to resemble real grocery store conditions. Four decontamination regimens were applied: (1) rinsing with ordinary tap (drinking) water, (2) rinsing with a 0.2% solution of Persteril, (3) rinsing with a 0.2% solution of Persteril + the addition of concentrated Persteril into the packaging before sealing, and (4) rinsing with a 0.2% solution of Persteril + the addition of concentrated Persteril into the packaging before sealing + another addition of concentrated Persteril after 24 hours. The total number of aerobe mesophilic microorganisms (TNM) and the numbers of yeasts and moulds were monitored in the samples taken during 28-days of storage. The last decontamination regimen reduced the initial contamination by TNM by about 10,000 CFU/g or 4 log units and no further microbial growth was observed during storage. Yeasts and moulds were reduced by about 3,160 CFU/g or 3.5 log units. No statistically significant changes in colour, texture or taste were noted during storage. There was a slight change immediately after the application in the odour of samples treated with concentrated Persteril; however, the odour returned to original levels during storage.
The use of cleaned and cut fresh vegetables for direct consumption without cooking is limited by the short shelf life caused by the fast growth of contaminating microflora. With the aim of reducing the contamination, we tested the possible use of peroxyacetic acid (brand name Persteril) as an additive. Peroxyacetic acid breaks down quickly into oxygen and acetic acid; with the latter quickly vaporising through the packaging. Tests were carried out on a model of pre-washed, cut, and re-washed carrots, which were left naturally contaminated to resemble real grocery store conditions. Four decontamination regimens were applied: (1) rinsing with ordinary tap (drinking) water, (2) rinsing with a 0.2% solution of Persteril, (3) rinsing with a 0.2% solution of Persteril + the addition of concentrated Persteril into the packaging before sealing, and (4) rinsing with a 0.2% solution of Persteril + the addition of concentrated Persteril into the packaging before sealing + another addition of concentrated Persteril after 24 hours. The total number of aerobe mesophilic microorganisms (TNM) and the numbers of yeasts and molds were monitored in the samples taken during 28-days of storage. The last decontamination regimen reduced the initial contamination by TNM by about 1× 104 CFU/g or 4 log units and no further microbial growth was observed during storage. Yeasts and molds were reduced by about 3.16 × 103 CFU/g or 3.5 log units. No statistically significant changes in colour, texture or taste were noted during storage. There was a slight change immediately after the application in the odour of samples treated with concentrated Persteril; however, the odour returned to original levels during storage.
Author Landfeld, A.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
Erban, V.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
Kovarikova, E.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
Houska, M.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
Pruchova, J.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
Kyhos, K.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
Novotna, P.,Vyzkumny Ustav Potravinarsky, Prague (Czech Republic)
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crossref_primary_10_1098_rsta_2013_0309
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Snippet The first aim of this study was to test the efficacy of peroxyacetic acid (Persteril) on carrots contaminated by natural microbial flora. The second aim was to...
The use of cleaned and cut fresh vegetables for direct consumption without cooking is limited by the short shelf life caused by the fast growth of...
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SubjectTerms Acetic acid
Acids
ALMACENAMIENTO
ANALISIS MICROBIOLOGICO
ANALISIS ORGANOLEPTICO
ANALYSE MICROBIOLOGIQUE
ANALYSE ORGANOLEPTIQUE
ANTIMICROBIAL PROPERTIES
ANTIMICROBIALS
ANTIMICROBIANOS
ANTIMICROBIEN
BACTERIA
BIOLOGICAL CONTAMINATION
Brand names
CALIDAD
CAROTTE
carrot
CARROTS
CELL COUNTING
COLOR
COLOUR
CONTAMINACION BIOLOGICA
Contamination
CONTAMINATION BIOLOGIQUE
CONTEO DE CELULAS
Cooking
COULEUR
CRECIMIENTO
CROISSANCE
Decontamination
DESINFECCION
DESINFECTANT
DESINFECTANTES
DESINFECTION
DISINFECTANTS
DISINFECTION
Drinking water
DURACION
DURATION
DUREE
FLAVEUR
FLAVOUR
GROWTH
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http://www.fao.org/aos/agrovoc#c_509
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http://www.fao.org/aos/agrovoc#c_8480
http://www.fao.org/aos/agrovoc#c_9640
INHIBICION
INHIBITION
LEVADURA
LEVURE
MICRO-ORGANISME
MICROBIOLOGICAL ANALYSIS
Microflora
MICROORGANISMOS
MICROORGANISMS
MOHO
MOISISSURE
Mold
MOULDS
NUMERATION CELLULAIRE
ODEUR
Odor
OLOR
ORGANOLEPTIC ANALYSIS
ORGANOLEPTIC PROPERTIES
Packaging
Peracetic acid
peroxyacetic acid
PEROXYACETIC ACIDS
persteril
PROPIEDADES ANTIMICROBIANAS
PROPIEDADES ORGANOLEPTICAS
PROPRIETE ANTIMICROBIENNE
PROPRIETE ORGANOLEPTIQUE
QUALITE
QUALITY
Rinsing
SABOR
Sealing
sensory quality
Shelf life
SMELL
Statistical analysis
Statistical methods
STOCKAGE
STORAGE
TEMPS
TEXTURA
TEXTURE
TIEMPO
TIME
Water purification
Yeast
YEASTS
ZANAHORIA
Title Decontamination of cut carrot by Persteril agent based on the action of peroxyacetic acid
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