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Calculating the efficacy of heat sterilization processes

机译:计算加热灭菌过程的功效

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The isothermal semi-logarithmic survival curves of certain bacterial spores, C. botulinum and B. sporothermodurans among them, are non-linear. Hence, the methods to calculate the efficacy of processes to destroy them need to be revised. These spores' survival curves could be described by a power law model, which is based on the assumption that the spores' heat resistances have a Weibull type distribution, with a practically temperature independent shape factor. The temperature dependence of the 'rate parameter' of the power law model (related to the reciprocal of the distribution's scale factor) could be described by a log logistic or a discontin- nous linear model. The survival characteristics of the two spores are described in terms of the power law model's exponents and the tog logistic and discontinuous linear models' two parameters; the temperature level where the inactivation accelerates and the rate at which it rises with temperature at the lethal range. These three parameters, together with the temperature profiles were used to sim-ulate the outcome of different heat processes by solving, numerically, a rate based survival model. The resulting survival curves could then be compared and the processes' lethality assessed in terms of the final survival ratio that they had produced. The method to calculate the survival curves is applicable to thermal processes having either a continuous or a discontinuous temperature profile. The same survival model could also be used to estimate the spores' survival parameters directly from the non-isothermal survival curves in simulated inactivation data to which a scatter had been added.
机译:其中某些细菌孢子,肉毒梭菌和孢子梭菌的等温半对数存活曲线是非线性的。因此,需要对计算销毁过程效率的方法进行修订。这些孢子的存活曲线可以通过幂律模型来描述,该幂律模型基于以下假设:孢子的耐热性具有Weibull型分布,并且具有与温度无关的形状因子。幂律模型“速率参数”(与分布的比例因子的倒数有关)的温度依赖性可以通过对数逻辑模型或间断线性模型来描述。根据幂律模型的指数以及tog logistic和不连续线性模型的两个参数来描述两个孢子的存活特征。灭活加速的温度水平及其在致死范围内的温度升高的速率。这三个参数与温度曲线一起用于通过数值求解基于速率的生存模型来模拟不同加热过程的结果。然后可以比较最终的生存曲线,并根据过程产生的最终生存率评估其杀伤力。计算存活曲线的方法适用于具有连续或不连续温度曲线的热过程。相同的生存模型也可用于直接从模拟消灭数据中的非等温生存曲线直接估算孢子的生存参数,并在其中添加了散射。

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