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Weibull Distribution Function Based on an Empirical Mathematical Model for Inactivation of Escherichia coli by Pulsed Electric Fields

机译:基于经验数学模型的威布尔分布函数用于脉冲电场灭活大肠杆菌

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The pulsed electric field inactivation kinetics of Escherichia coli suspended in orange juices with three different concentrations of carrot juice (0, 20, and 60%) was studied. Electric field strengths ranged from 25 to 40 kV/cm, and treatment times ranged from 40 to 340μs. Experimental data were fitted to Bigelow, Huelsheger, and Weibull distribution functions, and the Weibull function provided the best fit (with the lowest mean square error). The dependency of each model's kinetic constant on electric field strength and carrot juice concentration was studied. A secondary model was developed to describe the relationship of Weibull parameters a and n to electric field strength and carrot juice concentration. An empirical mathematical model based on the Weibull distribution function, relating the natural logarithm of the survival fraction to treatment time, electric field strength, and carrot juice concentration, was developed. Parameters were estimated by a nonlinear regression. The results of this study indicate that the error rate for the model's predictions was 6.5% and that the model was suitable for describing E. coli inactivation.
机译:研究了悬浮在橙汁中的大肠杆菌的脉冲电场失活动力学,该橙汁含有三种不同浓度的胡萝卜汁(0%,20%和60%)。电场强度范围为25至40 kV / cm,处理时间范围为40至340μs。实验数据拟合到Bigelow,Huelsheger和Weibull分布函数,而Weibull函数提供了最佳拟合(均方差最低)。研究了每种模型的动力学常数对电场强度和胡萝卜汁浓度的依赖性。建立了一个次要模型来描述威布尔参数a和n与电场强度和胡萝卜汁浓度的关系。建立了基于威布尔分布函数的经验数学模型,该模型将存活分数的自然对数与处理时间,电场强度和胡萝卜汁浓度相关联。通过非线性回归估计参数。这项研究的结果表明,该模型预测的错误率为6.5%,该模型适用于描述大肠杆菌的失活。

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