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Potential of Cold Plasma Technology in Ensuring the Safety of Foods and Agricultural Produce: A Review

机译:冷等离子体技术在确保食品和农产品安全的潜力:综述

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摘要

Cold plasma (CP) is generated when an electrical energy source is applied to a gas, resulting in the production of several reactive species such as ultraviolet photons, charged particles, radicals and other reactive nitrogen, oxygen, and hydrogen species. CP is a novel, non-thermal technology that has shown great potential for food decontamination and has also generated a lot of interest recently for a wide variety of food processing applications. This review discusses the potential use of CP in mainstream food applications to ensure food safety. The review focuses on the design elements of cold plasma technology, mode of action of CP, and types of CP technologies applicable to food applications. The applications of CP by the food industry have been demonstrated for food decontamination, pesticide residue removal, enzyme inactivation, toxin removal, and food packaging modifications. Particularly for food processing, CP is effective against major foodborne pathogenic micro-organisms such as Listeria monocytogenes and Salmonella Typhimurium, Tulane virus in romaine lettuce, Escherichia coli O157:H7, Campylobacter jejuni, and Salmonella spp. in meat and meat products, and fruits and vegetables. However, some limitations such as lipid oxidation in fish, degradation of the oligosaccharides in the juice have been reported with the use of CP, and for these reasons, further research is needed to mitigate these negative effects. Furthermore, more research is needed to maximize its potential.
机译:当将电能源施加到气体时产生冷等离子体(CP),导致产生几种反应性物质,例如紫外光子,带电粒子,自由基和其他反应性氮,氧气和氢物质。 CP是一种新型,非热技术,表明食品净化的巨大潜力,最近也为各种食品加工应用产生了很多兴趣。本综述讨论了CP在主流食品应用中的潜在使用,以确保食品安全。审查重点介绍了冷等离子技术,CP行动模式的设计元素,以及适用于食品应用的CP技术的类型。食品工业的CP应用已被证明用于食品去污,农药残留去除,酶失活,毒素去除和食品包装修饰。特别是对于食品加工,CP对主要的食源性致病性微生物是有效的,例如Histeria单核细胞增生和沙门氏菌毒蕈毒蕈毒蕈毒素,杜兰莴苣中的Tulane病毒,大肠杆菌O157:H7,Campylobacter Jejuni和Salmonella SPP。在肉和肉制品中,水果和蔬菜。然而,使用CP的使用报告了一些脂质氧化,脂质氧化,少辛糖的降解,并且由于这些原因,需要进一步研究来减轻这些负面影响。此外,需要更多的研究来最大限度地提高其潜力。

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