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- W2563713624 endingPage "67" @default.
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- W2563713624 abstract "Mathematical growth and inactivation models are increasingly used in the context of the hazard analysis and critical control point (HACCP) system for food safety and as a means to demonstrate compliance of a product with microbiological criteria enforced by food safety and hygiene legislation. This chapter categorizes the available classical and modern modeling approaches according to the existing food processes and associated microbial responses, starting from below the growth boundaries and extending to the superoptimal growth limits. Food quality changes are influenced by intrinsic factors such as pH, water activity, the food matrix, etc., and by extrinsic processing factors such as temperature, processing time, and packaging conditions. The interaction of these factors enables particular microorganisms to prevail in a food ecosystem having thus synergistic or antagonistic effects on the microbial activity of other species encountered on a food product." @default.
- W2563713624 created "2017-01-06" @default.
- W2563713624 creator A5040294637 @default.
- W2563713624 creator A5043097767 @default.
- W2563713624 date "2016-12-24" @default.
- W2563713624 modified "2023-10-14" @default.
- W2563713624 title "Predictive microbiology: mathematics towards understanding the fate of food‐borne microorganisms in food processing" @default.
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