A kinetic model for predicting the relative humidity in modified atmosphere packaging and its application in lentinula edodes packages

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Abstract

Adjusting and controlling the relative humidity (RH) inside package is crucial for ensuring the quality of modified atmosphere packaging (MAP) of fresh produce. In this paper, an improved kinetic model for predicting the RH in MAP was developed. The model was based on heat exchange and gases mass transport phenomena across the package, gases heat convection inside the package, and mass and heat balances accounting for the respiration and transpiration behavior of fresh produce. Then the model was applied to predict the RH in MAP of fresh Lentinula edodes (one kind of Chinese mushroom). The model equations were solved numerically using Adams-Moulton method to predict the RH in model packages. In general, the model predictions agreed well with the experimental data, except that the model predictions were slightly high in the initial period. The effect of the initial gas composition on the RH in packages was notable. In MAP of lower oxygen and higher carbon dioxide concentrations, the ascending rate of the RH was reduced, and the RH inside packages was saturated slowly during storage. The influence of the initial gas composition on the temperature inside package was not much notable. © 2013 Li-xin Lu et al.

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Lu, L. X., Tang, Y. L., & Lu, S. Y. (2013). A kinetic model for predicting the relative humidity in modified atmosphere packaging and its application in lentinula edodes packages. Mathematical Problems in Engineering, 2013. https://doi.org/10.1155/2013/304016

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