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Atmospheric cold plasma interactions with modified atmosphere packaging inducer gases for safe food preservation

机译:大气冷等离子体与改性气氛包装诱导气体的相互作用,可安全保存食品

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Drverse microbiological challenges and pervasive microbial resistance drive technological development in rood processing, where increasing process complexity and consumer demand for less processed goods leads to strong demand for effective decontamination. Atmospheric cold plasma (ACP) has wide potential for decontamination application in the food sector. We investigated the effect of Modified Atmosphere Packaging (MAP) gas mixtures on reactive species generated, their efficacy and mechanism of inactivation against Escherichia coli, Listeria monocytogenes and Staphylococcus aureus. Oxygen levels in the applied working gas had positive interactive effects on ROS generation, in-package inactivation efficacy in conjunction with post-treatment storage time. Listeria populations were undetectable after 15 s treatment with high Oxygen MAP mix using 24 h post-treatment storage time. However, RNS generation and effect was dependent on the nitrogen content but also on the presence of oxygen. Different modesof interaction of ROS and RNS with Gram positive and Gram negative bacteria were observed.
机译:微生物挑战性的挑战和普遍的微生物抵抗力推动了粗肉加工的技术发展,在此过程中,工艺复杂性的提高和消费者对加工产品的需求减少,导致对有效净化的强烈需求。大气冷等离子体(ACP)在食品领域具有广泛的去污应用潜力。我们调查了大气包装(MAP)气体混合物对产生的反应性物种的影响,它们的功效以及对大肠杆菌,单核细胞增生李斯特菌和金黄色葡萄球菌的失活机理。施加的工作气体中的氧气水平对ROS的产生,包装内的灭活功效以及后处理的储存时间具有积极的相互作用。用高氧MAP混合液处理15 s后(处理后24 h的存储时间)无法检测到李斯特菌种群。但是,RNS的产生和作用取决于氮含量,也取决于氧的存在。观察到ROS和RNS与革兰氏阳性和革兰氏阴性细菌相互作用的不同模式。

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