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Ethylene production, respiration and gas exchange modelling in modified atmosphere packaging for banana fruits

机译:香蕉果实气调包装中的乙烯生产,呼吸和气体交换模型

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摘要

A mathematical model was developed from experimental measurements to describe the evolution of the O_2, CO_2 and ethylene in a modified atmosphere packaging system for Cavendish bananas. The respiration and ethylene production in the fruits were experimentally obtained from a closed system method and then represented by Michaelis-Menten equations of enzyme kinetics. The gas transfer through the packaging was described by a Fick's diffusion equation, and the temperature dependence was represented based on the Arrhenius law. The model was validated by packaging the fruit in perforated bags of polypropylene and low density polyethylene at 12 ℃ for a period of 8 days. With the developed model it was possible to satisfactorily describe the experimental evolution of the gas content in the headspace of the packages, obtaining coefficients of determination (R~2) of 0.93 for the O_2 levels, 0.90-0.91 for the CO_2 levels, and 0.89-0.93 for the ethylene levels.
机译:通过实验测量建立了数学模型,以描述卡文迪许香蕉在改良气氛包装系统中O_2,CO_2和乙烯的演变。水果中的呼吸和乙烯的产生是通过封闭系统方法实验获得的,然后用酶动力学的Michaelis-Menten方程表示。通过Fick扩散方程描述了通过包装的气体转移,并且基于阿伦尼乌斯定律表示了温度依赖性。通过将水果在12℃的聚丙烯和低密度聚乙烯的穿孔袋中包装8天来验证该模型。利用开发的模型,可以令人满意地描述包装顶部空间中气体含量的实验演变,对于O_2含量,测定系数(R〜2)为0.93,对于CO_2含量,测定系数为0.90-0.91,并且为0.89乙烯含量为-0.93。

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