诺如病毒
风险分析(工程)
生化工程
过程(计算)
计算机科学
环境科学
食品加工
工艺工程
生物
可靠性工程
渔业
业务
病毒学
工程类
病毒
食品科学
操作系统
作者
Winy Messens,Pablo Salvador Fernández Escámez,David N. Lees,Roland Lindqvist,Michael J. O’Mahony,Elisabetta Suffredini,José Cortiñas Abrahantes,Emmanouil Chantzis,Kostas Koutsoumanis
标识
DOI:10.1080/10408398.2017.1338246
摘要
Norovirus (NoV) and Hepatitis A virus (HAV) are the most important viral hazards associated with human illness following consumption of contaminated bivalve molluscs. The effectiveness of the current EU criteria for heat processing of bivalve molluscs (i.e. raising the temperature of the internal mollusc flesh to at least 90°C for a minimum of 90 seconds) was evaluated using predictive microbiology. A HAV thermal inactivation model was developed based on literature data in mollusc matrices during isothermal heat treatment. Application of the developed model demonstrated that the 90°C-90 s requirement may lead to significantly different virus inactivation depending on the commercial process design. This shows the need for the establishment of a Performance Criterion for bivalve molluscs heat processing which will assure a common specified level of consumer protection. A risk-based approach is described that allows for an effective processing design providing a more transparent and objective relation between the thermal processing targets and public health. Model simulations demonstrate that the F-value is a more appropriate Process Criterion than a single time-temperature combination since it enables the food business operators to design a process that is compliant with the safety requirements while at the same time achieving a desired product quality.
科研通智能强力驱动
Strongly Powered by AbleSci AI