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Efficiency of N2 Gas Flushing Compared to the Lactoperoxidase System at Controlling Bacterial Growth in Bovine Raw Milk Stored at Mild Temperatures

机译:与乳过氧化物酶系统相比N2气体冲洗在温和温度下储存的牛原料乳中控制细菌生长的效率

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摘要

To prevent excessive bacterial growth in raw milk, the FAO recommends two options: either cold storage or activation of the lactoperoxidase system (LPs/HT) in milk with the addition of two chemical preservatives, hydrogen peroxide (H) and thiocyanate (T). N2 gas flushing of raw milk has shown great potential to control bacterial growth in a temperature range of 6–12°C without promoting undesired side effects. Here, the effect of N2 gas (N) was tested as a single treatment and in combination with the lactoperoxidase system (NHT) on seven raw milk samples stored at 15 or 25°C. For the ratio defined as bacterial counts from a certain treatment/counts on the corresponding control, a classical Analyse of Variance (ANOVA) was performed, followed by mean comparison with the Ryan-Einot-Gabriel-Welsch multiple range test (REGWQ). Altogether, the growth inhibition was slightly but significantly higher at 25°C than at 15°C. Except for one sample, all ratios were lower for HT than for N alone; however, these differences were not judged to be significant for five samples by the REGWQ test; in the remaining two samples, N was more effective than HT in one case and less effective in the other case. This study shows that N2 gas flushing, which inhibited bacterial growth in raw milk at 15 and 25°C for 24 and 12 h, respectively, could constitute an alternative to LPs where no cold storage facilities exist, especially as a replacement for adulterating substances.
机译:为防止原料奶中细菌过度生长,粮农组织建议采取两种选择:冷藏或激活牛奶中的乳过氧化物酶系统(LPs / HT),并添加两种化学防腐剂过氧化氢(H)和硫氰酸盐(T)。原料奶中的N2气体冲洗已显示出在6–12°C的温度范围内控制细菌生长而不增加不良副作用的巨大潜力。在此,将N2气体(N)的效果作为一次处理并与乳过氧化物酶系统(NHT)结合使用,对存储在15或25°C的七个原奶样品进行了测试。对于定义为特定对照中某种处理/计数的细菌计数的比率,进行了经典的方差分析(ANOVA),然后与Ryan-Einot-Gabriel-Welsch多范围检验(REGWQ)进行了均值比较。总体而言,在25°C时的生长抑制略高于15°C,但明显更高。除一个样品外,HT的所有比率均低于单独使用N的比率。但是,通过REGWQ测试,这些差异对于五个样本而言并不明显。在剩下的两个样本中,N在一种情况下比HT更有效,而在另一种情况下则更差。这项研究表明,N2气体冲洗分别在15和25°C分别抑制原奶中的细菌生长24和12 h,可以代替没有冷库的LP,特别是作为掺假物质的替代品。

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