Assessment of the efficiency of ozone application for post-harvest microbial disinfection of some fruits and vegetables

H. A. Sideeq, Hewa A. Mohammed
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Abstract

The treatment of ozone is widely used for post-harvest fruit and vegetable processing because of its high activity and safety. As opposed to the gaseous form, the aqueous form is more active. The technique and commodities are major factors in determining the ozone efficiency ratio. Fresh products are a source of pathogen organisms such as Fecal coliform (FC) that are considered a threat to quality and health. This study applied to evaluate the quality and safety of some fruits such (as apples and oranges) with some fruit vegetables like (tomatoes, bell peppers, eggplant, cucumber, and squash), as well as some vegetables such as (lettuce, and arugula) by detection ratio of FC microorganisms. These classes of products were exposed to (3 mg/L) aqueous ozone for 5 minutes. Overall, these concentrations improved entire products. Ozon application lowered the overall activity of contaminants about 25 times from 2792.26 to 105.96 RLU/cm2 after processing. Most of the commodities as eggplant, lettuce, apples, and orange were disinfected and other products significantly decreased. The system is capable of inactivating about 6935.3 relative light units (RLU/cm2) of FC in an ideal situation
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评估使用臭氧对一些水果和蔬菜进行收获后微生物消毒的效率
由于臭氧的高活性和安全性,臭氧处理被广泛用于采后水果和蔬菜加工。与气态臭氧相比,水态臭氧的活性更高。技术和商品是决定臭氧效率比的主要因素。新鲜产品是粪大肠菌群(FC)等病原体的来源,这些病原体被认为是对质量和健康的威胁。本研究通过检测 FC 微生物的比率来评估一些水果(如苹果和橘子)、一些果蔬(如西红柿、甜椒、茄子、黄瓜和南瓜)以及一些蔬菜(如生菜和芝麻菜)的质量和安全性。将这些产品暴露在(3 毫克/升)水臭氧中 5 分钟。总体而言,这些浓度能改善整个产品。加工后,臭氧可将污染物的总体活性降低约 25 倍,从 2792.26 RLU/cm2 降至 105.96 RLU/cm2。大多数商品如茄子、莴苣、苹果和橘子都得到了消毒,而其他产品的消毒效果则明显下降。在理想情况下,该系统能够灭活约 6935.3 个相对光单位(RLU/cm2)的 FC
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