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Sensorial and microbial effects of gaseous ozone on fresh scad (Trachurustrachurus)

机译:气态臭氧对新鲜大鳞茎(Trachurustrachurus)的感官和微生物影响

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The bactericidal activity of gaseous ozone was investigated using a commercial ozone generator. Five species of fish bacteria, Pseudomonas putida, Shewanella putrefaciens, Brochothrix thermosphacba, Enterobacter sp. and Lactobacillus plantarum, were inoculated on agar surfaces and exposed to different ozonation times in a gas chamber. Results showed ozone in relatively low concentrations (<0.27 x 10(-3) g l(-1)) was an effective bactericide of vegetative cells of the five fish bacteria. The age of the cell culture was shown to influence the cell response following exposure. Survival rate was not linearly related to ozonation time, but exhibited biphasic death over an extended period. Similar bactericidal effects were observed on fish skin treated with ozone daily in the laboratory, with decreases of 1.0 log cfu cm(-2) for the micro-organisms studied. Whole fish treated daily in the laboratory using a commercial ozone generator showed improved scores for sensory analyses compared with the controls. The results were statistically significant. Fish treated on board ships were also analysed for microbiological and sensory changes. Controls were obtained from a similar vessel without the ozone facility in the hold. Similar trends to those recorded in the laboratory for the microbiological and sensory results on ozonated fish were observed.
机译:使用商业臭氧发生器研究了气态臭氧的杀菌活性。五种鱼类细菌,恶臭假单胞菌,恶臭希瓦氏菌,嗜热布鲁氏菌,肠杆菌。将植物乳杆菌和植物乳杆菌(Lactobacillus plantarum)接种在琼脂表面上,并在气室内暴露于不同的臭氧化时间。结果表明,臭氧浓度相对较低(<0.27 x 10(-3)g l(-1))是五种鱼类细菌营养细胞的有效杀菌剂。显示细胞培养物的年龄会影响暴露后的细胞反应。存活率与臭氧化时间没有线性关系,但是在较长时期内表现出双相死亡。在实验室每天用臭氧处理的鱼皮上也观察到了类似的杀菌效果,所研究的微生物减少了1.0 log cfu cm(-2)。与对照组相比,每天在实验室中使用商用臭氧发生器处理的整条鱼的感官分析得分更高。结果具有统计学意义。还分析了船上处理过的鱼的微生物和感官变化。对照是从类似的容器中获得的,船上没有臭氧设施。观察到与实验室记录的臭氧化鱼类的微生物和感官结果相似的趋势。

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