首页> 外文期刊>Journal of Stored Products Research >Modelling the effect of temperature and water activity on the growth of Aspergillus parasiticus on irradiated Argentinian flint maize.
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Modelling the effect of temperature and water activity on the growth of Aspergillus parasiticus on irradiated Argentinian flint maize.

机译:模拟温度和水分活度对辐照的阿根廷火石玉米上米曲霉生长的影响。

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摘要

A full factorially designed experiment including storage temperature (10, 20, 30 and 37 degrees C) and water activity (0.88, 0.92 and 0.96) was undertaken to study the growth of Aspergillus parasiticus in maize samples. Kinetic parameters such as specific growth rate ( mu), lag phase duration and maximum logarithmic increase were determined by fitting the Modified Gompertz equation to the viable mould count data (N in CFU/g) as a function of time collected in twelve experiments. The average coefficient of determination (R2) was 0.987, being the mean standard deviation of the estimate of 0.216 in units of log10N. In the practical range of 10-30 degrees C, the relationship of the three kinetic parameters with temperature was described by second order polynomial expressions, whose parameters, in turn, depended on water activity. The combined or full model i.e., the Modified Gompertz model with its parameters expressed as a function of temperature and water activity, was able to predict log10N with an average percentage error of 4.3, so agreement with the experimental data was highly satisfactory. In a simulation exercise, the full model was able to predict the viable mould count, given an initial value and grain temperature and water activity histories, with promising results for maize storage.
机译:进行了包括工厂储存温度(10、20、30和37摄氏度)和水分活度(0.88、0.92和0.96)在内的充分析因设计的实验,以研究玉米样品中寄生曲霉的生长。通过将改良的Gompertz方程拟合为可行的霉菌计数数据(CFU / g中的N)作为十二个实验中收集的时间的函数,确定动力学参数,例如比生长速率(mu),滞后阶段持续时间和最大对数增长。平均测定系数(R 2 )为0.987,是估计值的平均标准偏差0.216,以log 10 N为单位。在10-30摄氏度的实际范围内,三个动力学参数与温度的关系由二阶多项式表达式描述,该表达式的参数又取决于水分活度。组合模型或完整模型(即修改的Gompertz模型,其参数表示为温度和水分活度的函数)能够预测log 10 N,平均百分比误差为4.3,因此与实验数据非常令人满意。在模拟演练中,完整模型能够预测给定的初始值以及谷物温度和水分活度历史的可行霉菌数量,并为玉米贮藏提供了有希望的结果。

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