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首页> 外文期刊>Journal of food engineering >A comprehensive simulation program for modified atmosphere and humidity packaging (MAHP) of fresh fruits and vegetables
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A comprehensive simulation program for modified atmosphere and humidity packaging (MAHP) of fresh fruits and vegetables

机译:全面的模拟程序,用于对新鲜水果和蔬菜进行改良的大气和湿度包装(MAHP)

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Modified atmosphere and humidity packaging (MAHP) is used to extend shelf life and maintaining the quality of fresh fruits and vegetables by modifying desired gas concentration and relative humidity (RH) inside fresh produce package. Several factors affect the optimum design of MAHP, most of which are time and or temperature dependent. Hence, there is a vital need for a simulation tool that includes all affecting parameters and their interactive behavior on package gas composition and water vapour. In this study a comprehensive simulation program based on integrative mathematical modeling is presented. A number of validation experiments were conducted to evaluate the robustness of the simulation program under constant and varying temperature conditions during storage period and predict gas composition, humidity and moisture condensation dynamics in packaged strawberry and plum. The simulated results were satisfactory with those obtained experimentally. The validated simulation program was then used for optimization of modified humidity packaging for both plum and strawberry. The predicted equilibrium headspace humidity was 94.0 and 98.8% for strawberries and plums, respectively which was very close to measured values of 93.5 and 94.1%, respectively. Therefore, the simulation program was found to be a convenient tool to virtually test the package under a broad range of environmental conditions such as temperature and RH resembling real supply chain conditions and ensure proper selection of packaging systems for the optimum performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:修改过的大气和湿度包装(MAHP)可通过修改新鲜农产品包装内所需的气体浓度和相对湿度(RH)来延长保质期并保持新鲜水果和蔬菜的质量。有几个因素会影响MAHP的最佳设计,其中大多数取决于时间和/或温度。因此,迫切需要一种包括所有影响参数及其在包装气体成分和水蒸气上的相互作用行为的仿真工具。在这项研究中,提出了一种基于集成数学模型的综合仿真程序。进行了许多验证实验,以评估模拟程序在存储期间中恒定温度和变化温度条件下的鲁棒性,并预测包装的草莓和李子中的气体成分,湿度和湿气冷凝动力学。仿真结果与实验获得的结果令人满意。然后将经过验证的仿真程序用于优化李子和草莓的改良湿度包装。草莓和李子的预测平衡顶空湿度分别为94.0和98.8%,非常接近于93.5%和94.1%的实测值。因此,发现仿真程序是在广泛的环境条件下(例如类似于真实供应链条件的温度和相对湿度)虚拟测试包装并确保正确选择包装系统以获得最佳性能的便捷工具。 (C)2017 Elsevier Ltd.保留所有权利。

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