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Thermal Inactivation Characteristics of Bacterial Spores at Ultrahigh Temperatures

机译:超高温下细菌孢子的热失活特性

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The thermal inactivation characteristics of Bacillus stearothermophilus (1518) spores and putrefactive anaerobe (PA) 3679 (NCA) spores suspended in skim milk were determined after treatment in pilot-plant ultrahigh-temperature (UHT) processing equipment. Temperature-survivor curves were constructed from survival data to emphasize the critical nature of temperature control in process evaluation. Time-survivor curves for PA 3679 spores were concave upward, and decimal reduction time (DRT) curves for these spores supported the observation of a protective response occurring at the longest exposure times. However, exposure time did not markedly affect the extremely high zD value obtained for PA 3679 spores. The substitution of Gelysate for Trypticase and Thiotone as the peptone in the sporulation medium increased the relative heat resistance of B. stearothermophilus spores, but lowered the zD value from 16 F to 12 F. The DRT curves in all cases were linear, but the zD values observed in this study differed considerably from those reported by other workers.
机译:经中试超高温(UHT)处理设备处理后,测定了悬浮在脱脂乳中的嗜热脂肪芽孢杆菌(1518)芽孢和厌氧厌氧菌(PA)3679(NCA)孢子的热失活特性。从存活数据构建温度-存活曲线,以强调过程评估中温度控制的关键性质。 PA 3679孢子的存活时间曲线向上凹,这些孢子的十进制减少时间(DRT)曲线支持观察到在最长暴露时间下发生的保护反应。但是,暴露时间并未明显影响PA 3679孢子获得的极高zD值。用孢粉培养基中的蛋白one用胰蛋白酶替代胰蛋白酶和硫酮可增加嗜热脂肪芽孢杆菌孢子的相对耐热性,但将zD值从16 F降低至12F。所有情况下的DRT曲线均为线性,但zD在这项研究中观察到的值与其他工人报告的值有很大差异。

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