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Shelf life prediction of oxygen-sensitive products: The influence of moisture on prediction accuracy for freeze-dried coffee

机译:氧气敏感产品的保质期预测:水分对冷冻干燥咖啡的预测精度的影响

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摘要

Optimised packaging requires that properties are matched to the protection requirements of food for its shelf life duration. Benefits include reduced packaging costs, use volumes, and potentially improved environmental performance. The ability to predict product shelf life in different materials can assist in selecting optimal packaging. However, the availability of such tools is limited, and risk for over packing exists. The aim with this work is to develop a prediction approach which can be applied to assist users to select more optimal packaging materials. Soluble coffee was used to develop the approach, where oxygen consumption of the product is used as a quality indicator. The effect of moisture content on O-2 consumption was studied to determine its influence on prediction accuracy. Samples were prepared with different levels of moisture content. O-2 consumption rates were measured, and a notable influence of moisture was observed. A model was developed to predict the O-2 consumption of the product when packed in a pouch. The model considers oxygen and moisture permeation properties of the packaging film, O-2 and moisture differential between the interior and exterior of the packaging, and the evolution of the O-2 consumption rate as a function of moisture increase. To test model accuracy, coffee samples were packed in flexible pouches, and O-2 consumption was measured which showed that predicted and measured values shared the same trend characteristics. We show that considering both moisture and O-2 ingress simultaneously leads to more precise shelf life prediction as oxidation rate is influenced by moisture content.
机译:优化的包装要求其保质期与食品的保护要求相匹配。好处包括降低包装成本,减少使用量并可能改善环境绩效。预测不同材料的产品货架期的能力可以帮助选择最佳包装。但是,这种工具的可用性受到限制,并且存在过度包装的风险。这项工作的目的是开发一种预测方法,该方法可用于协助用户选择更理想的包装材料。可溶性咖啡用于开发该方法,其中产品的耗氧量用作质量指标。研究了水分含量对O-2消耗量的影响,以确定其对预测精度的影响。样品的含水量不同。测量了O-2的消耗速率,观察到明显的水分影响。开发了一个模型来预测包装在袋子中产品的O-2消耗量。该模型考虑了包装薄膜的氧气和水分渗透特性,O-2以及包装内部和外部之间的水分差异,以及O-2消耗速率随水分增加而变化的情况。为了测试模型的准确性,将咖啡样品装在柔软的小袋中,并测量O-2的消耗量,这表明预测值和测量值具有相同的趋势特征。我们表明,同时考虑水分和O-2的进入会导致更精确的货架期预测,因为氧化速率受水分含量的影响。

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