首页> 外文期刊>Critical Reviews in Food Science and Nutrition >Application of Failure Mode and Effect Analysis (FMEA) and cause and effect analysis in conjunction with ISO 22000 to a snails (Helix aspersa) processing plant; a case study.
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Application of Failure Mode and Effect Analysis (FMEA) and cause and effect analysis in conjunction with ISO 22000 to a snails (Helix aspersa) processing plant; a case study.

机译:将故障模式和后果分析(FMEA)以及因果分析与ISO 22000一起应用于蜗牛( Helix aspersa )加工厂;案例研究。

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Failure Mode and Effect Analysis (FMEA) has been applied for the risk assessment of snails manufacturing. A tentative approach of FMEA application to the snails industry was attempted in conjunction with ISO 22000. Preliminary Hazard Analysis was used to analyse and predict the occurring failure modes in a food chain system (snails processing plant), based on the functions, characteristics, and/or interactions of the ingredients or the processes, upon which the system depends. Critical Control points have been identified and implemented in the cause and effect diagram (also known as Ishikawa, tree diagram, and fishbone diagram). In this work a comparison of ISO 22000 analysis with HACCP is carried out over snails processing and packaging. However, the main emphasis was put on the quantification of risk assessment by determining the RPN per identified processing hazard. Sterilization of tins, bioaccumulation of heavy metals, packaging of shells and poisonous mushrooms, were the processes identified as the ones with the highest RPN (280, 240, 147, 144, respectively) and corrective actions were undertaken. Following the application of corrective actions, a second calculation of RPN values was carried out leading to considerably lower values (below the upper acceptable limit of 130). It is noteworthy that the application of Ishikawa (Cause and Effect or Tree diagram) led to converging results thus corroborating the validity of conclusions derived from risk assessment and FMEA. Therefore, the incorporation of FMEA analysis within the ISO 22000 system of a snails processing industry is considered imperative.
机译:失效模式和影响分析(FMEA)已用于蜗牛制造的风险评估。尝试将FMEA应用于蜗牛行业并尝试与ISO 22000结合使用。初步危害分析用于根据功能,特性和特性,分析和预测食品链系统(蜗牛加工厂)中发生的故障模式。 /或系统所依赖的成分或过程的相互作用。已经在因果图(也称为Ishikawa,树图和鱼骨图)中标识并实现了关键控制点。在这项工作中,对蜗牛加工和包装进行了ISO 22000分析与HACCP的比较。但是,主要重点是通过确定每个确定的加工危害的RPN来量化风险评估。锡罐的杀菌,重金属的生物富集,贝壳和有毒蘑菇的包装被确定为具有最高RPN(分别为280、240、147、144)的过程,并采取了纠正措施。采取纠正措施后,对RPN值进行了第二次计算,导致值大大降低(低于可接受的上限130)。值得注意的是,Ishikawa(因果关系图或树图)的应用导致结果趋同,从而证实了从风险评估和FMEA得出的结论的有效性。因此,将FMEA分析纳入蜗牛加工业的ISO 22000系统被认为是必须的。

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