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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >Study of the suitability of the central composite design to predict the inactivation kinetics by pulsed electric fields (PEF) in Escherichia coli, Staphylococcus aureus and Pseudomonas fluorescens in milk
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Study of the suitability of the central composite design to predict the inactivation kinetics by pulsed electric fields (PEF) in Escherichia coli, Staphylococcus aureus and Pseudomonas fluorescens in milk

机译:研究中央复合设计能否通过脉冲电场(PEF)预测大肠杆菌,金黄色葡萄球菌和荧光假单胞菌的灭活动力学

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The kinetics of inactivation of Escherichia coli K12, Staphylococcus aureus and Pseudomonas fluorescens due to pulsed electric fields (PEF) was investigated in the present study. The effects of treatment inlet temperature (20-45 degrees C), electric field strength (EFS; 20-42.5 kV/cm) and treatment time (68-170 mu s, as a function of the flow rate) on microbial inactivation were studied with a central composite design using a response surface model (ccRSM). Reductions of 5 and 5.2 log(10) cycles were achieved for E. coli and S. aureus, respectively, at 32.5 degrees C, 40 kV/cm and 89 mu s. Viability of P. fluorescens was reduced by 5.3 log(10) cycles at 32.5 degrees C, but at slightly higher EFS (42.5 kV/cm) and a longer treatment time (106 mu s). Statistical models describing microbial inactivation by PEF (R-2 >= 0.91) were derived from the design. The study of the sum of square values after regression analysis showed that EFS was the factor with greatest effect on microbial inactivation. The present study confirms the suitability of using ccRSM as a tool for investigating and predicting microbial inactivation. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在本研究中,研究了由于脉冲电场(PEF)导致大肠杆菌K12,金黄色葡萄球菌和荧光假单胞菌失活的动力学。研究了处理入口温度(20-45摄氏度),电场强度(EFS; 20-42.5 kV / cm)和处理时间(68-170μs,作为流速的函数)对微生物灭活的影响使用响应面模型(ccRSM)进行中央复合设计。大肠杆菌和金黄色葡萄球菌分别在32.5℃,40 kV / cm和89 s s下减少了5和5.2 log(10)循环。在32.5摄氏度下,荧光假单胞菌的生存力降低了5.3 log(10)周期,但EFS稍高(42.5 kV / cm)和更长的处理时间(106μs)。从设计中得出描述PEF使微生物失活的统计模型(R-2> = 0.91)。回归分析后的平方和的研究表明,EFS是影响微生物灭活的最大因素。本研究证实了使用ccRSM作为研究和预测微生物灭活的工具的适用性。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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