Jalali Ali, Linke Manfred, Geyer Martin, Mahajan Pramod
Department of Horticultural Engineering, Leibniz Institute for Agricultural Engineering and Bioeconomy (ATB), Potsdam, Germany.
MethodsX. 2021 Sep 11;8:101514. doi: 10.1016/j.mex.2021.101514. eCollection 2021.
Fresh horticultural products are exposed to different environmental conditions from farm to fork. Barrier properties of packaging and physiological behaviour of produce, namely respiration and transpiration can affect headspace conditions surrounding produce and consequently remaining shelf life. Packaging material also plays a role in heat and mass transfer, such as thermal conduction and permeation of O, CO and water vapour. All of these behaviours are integrated together in the form of ordinary differential equations and solved using numerical methods in MATLAB. • The simulation program is useful for designing the size and number of perforations to achieve equilibrium modified atmosphere alone or in combination with packaging material having a higher water transmission rate or active moisture absorber. • The simulation program is also useful for predicting the shelf life of fresh produce under the actual supply chain conditions. • The simulation program provides a flexible system to input predefined supply chain conditions and the properties of fresh produce and packaging material, thus, minimizing the costly and time consuming experimental procedures for selecting the optimum packaging material for fresh produce.
新鲜园艺产品从农场到餐桌会经历不同的环境条件。包装的阻隔性能以及农产品的生理行为,即呼吸作用和蒸腾作用,会影响农产品周围的顶空条件,进而影响剩余货架期。包装材料在热量和质量传递中也发挥着作用,例如热传导以及氧气、二氧化碳和水蒸气的渗透。所有这些行为都以常微分方程的形式整合在一起,并在MATLAB中使用数值方法求解。
• 该模拟程序对于设计穿孔的尺寸和数量很有用,以单独实现平衡气调包装,或与具有较高透湿率的包装材料或活性吸湿剂结合使用。
• 该模拟程序对于预测新鲜农产品在实际供应链条件下的货架期也很有用。
• 该模拟程序提供了一个灵活的系统,可输入预定义的供应链条件以及新鲜农产品和包装材料的特性,从而最大限度地减少为新鲜农产品选择最佳包装材料时成本高昂且耗时的实验程序。