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A QUALITY, ENERGY AND ENVIRONMENTAL ASSESSMENT TOOL FOR THE EUROPEAN COLD CHAIN

机译:欧洲冷链的质量,能源和环境评估工具

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According to 5th Informatory Note on Refrigeration and Food published by the International Institute of Refrigeration, 20% of the global losses in perishable products was due to lack of refrigeration. It is expected that increased use of refrigeration to reduce these losses will help meet the increasing food demands of the growing world population. However, the use of refrigeration already accounts for about 15% of world's electricity usage. In addition, the use of refrigeration significantly contributes to global warming via emission of CO_2. In this paper, a software tool was developed to assess food quality and safety evolution, energy usage and CO_2 emission of different refrigeration technologies along the European cold chain. A reference product was chosen for the main different food categories in the European cold chain. Software code to predict the products temperature using the room temperature as input, based on validated heat and mass transfer models, were written in Matlab (The Mathworks Inc., Natick, USA). Also, based on validated kinetic models for the different quality indicators of the reference products, a software code was written to calculate the quality and safety evolutions of the food product, using the predicted product temperature as input. Finally, software code to calculate the energy usage and Total Equivalent Warming Impact (TEWI) value of different refrigeration technologies was also written in Matlab. All three software codes were integrated, and a graphical user interface was developed. Using the graphical user interface, a user can tailor a cold chain scenario by adding different cold chain blocks. Each cold chain block has properties that can be modified. The tool can be used to compare different cold chains with respect to quality, safety, energy usage, and environmental impact.
机译:根据国际制冷研究所发表的制冷和食品的第五次信息说明,易腐产品的20%的损失是由于缺乏制冷。预计利用制冷以减少这些损失将有助于满足日益增长的世界人口的粮食需求。然而,使用制冷已经占世界电力使用的约15%。此外,使用制冷的使用显着促进了通过CO_2的发射全球变暖。在本文中,开发了一种软件工具,以评估欧洲冷链的不同制冷技术的食品质量和安全进化,能源使用和CO_2排放。选择了欧洲冷链主要不同食品类别的参考产物。在Matlab(Mathworks Inc.,Natick,USA)编写了使用房间温度的软件代码使用室温作为输入,基于验证的热量和传质模型。此外,基于用于参考产品的不同质量指标的经过验证的动力学模型,写入了一种软件代码,以计算使用预测的产品温度作为输入来计算食品的质量和安全演进。最后,在MATLAB中还写入了计算不同制冷技术的能量使用和总等效变暖影响(TEWI)值的软件代码也是用的MATLAB编写的。集成了三个软件代码,并开发了一个图形用户界面。使用图形用户界面,用户可以通过添加不同的冷链块来定制冷链场景。每个冷链块具有可以修改的属性。该工具可用于比较不同的冷链相对于质量,安全性,能源使用和环境影响。

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