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Artificial fruit for monitoring the thermal history of horticultural produce in the cold chain

机译:用于监测冷链园艺产品热历史的人造水果

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摘要

There is a need for more realistic monitoring of fruit pulp temperature history throughout the cold chain at a higher spatial resolution inside the cargo. Particularly solutions that are easy to install in a commercial setting are required. For this purpose, a novel kind of fruit simulator - an artificial fruit has been designed, manufactured and tested. Using a biomimetic approach, it was engineered specifically to match the thermal response of real fruit as close as possible. The artificial fruit is composed out of a thin plastic shell, which mimics the exterior size, shape, surface texture and color of the fruit of interest. This shell is filled with a mixture that has similar thermal properties as real fruit as it is basically composed out of the same components. Two self-powered data loggers with a built-in sensor are integrated in the artificial fruit. These different components of the artificial fruit were combined successfully into a manufactured prototype. The thermal response of an artificial apple fruit during cooling was evaluated against that of 10 real apples. The cooling time of the artificial fruit was within 5% of that of the real fruits. The artificial fruit also had a more accurate thermal response than that of water-filled fruit simulators, with which differences up to 16% were found. The uniformity in size, shape and sensor location of the artificial fruit also enables it to measure fruit pulp temperature in a much more repeatable manner than with real fruit. A particular advantage of the artificial fruit is that it can be packed directly with the fresh produce in a commercial setting, by which multiple locations inside the cargo can easily be monitored. This novel sensor system thus provides an improved method to identify heterogeneities in cargo cooling, and associated quality issues. The artificial fruit is especially of interest for monitoring fruit pulp in precooling facilities, cold stores, ripening facilities and refrigerated containers. (C) 2017 Elsevier Ltd. All rights reserved.
机译:需要在货物内部以更高的空间分辨率更实际地监测整个冷链中果肉温度的历史记录。特别需要易于在商业环境中安装的解决方案。为此,已经设计,制造和测试了一种新型的水果模拟器-人造水果。它采用仿生方法进行了专门设计,以尽可能接近真实水果的热响应。人造水果由薄塑料外壳组成,该塑料外壳模仿目标水果的外部尺寸,形状,表面纹理和颜色。该壳充满了一种混合物,该混合物具有与真实水果相似的热性能,因为它基本上由相同的成分组成。人造水果中集成了两个带有内置传感器的自供电数据记录器。人造水果的这些不同成分成功地组合到了制造的原型中。相对于10个真实的苹果,评估了冷却期间人造苹果果实的热响应。人造水果的冷却时间是真实水果的5%。人造水果的热响应也比充水水果模拟器的热响应更精确,后者的差异高达16%。人造水果的尺寸,形状和传感器位置的均匀性也使它能够以比真实水果更可重复的方式测量果肉温度。人造水果的一个特殊优点是,可以在商业环境中将其与新鲜农产品直接包装在一起,通过该人造水果可以轻松监控货物内部的多个位置。因此,这种新颖的传感器系统提供了一种改进的方法来识别货物冷却中的异质性以及相关的质量问题。人造水果对于监控预冷设备,冷库,成熟设备和冷藏容器中的果肉特别有用。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of food engineering》 |2017年第12期|51-60|共10页
  • 作者单位

    Empa, Multiscale Studies Bldg Phys, Uberlandstr 129, CH-8600 Dubendorf, Switzerland|ETH, Chair Bldg Phys, Stefano Franscini Pl 5, CH-8093 Zurich, Switzerland;

    ETH, Chair Bldg Phys, Stefano Franscini Pl 5, CH-8093 Zurich, Switzerland;

    Empa, Multiscale Studies Bldg Phys, Uberlandstr 129, CH-8600 Dubendorf, Switzerland|ETH, Chair Bldg Phys, Stefano Franscini Pl 5, CH-8093 Zurich, Switzerland;

    Empa, Lab Protect & Physiol, Lerchenfeldstr 5, CH-9014 St Gallen, Switzerland;

    Empa, Lab Protect & Physiol, Lerchenfeldstr 5, CH-9014 St Gallen, Switzerland;

    Empa, Ctr Xray Analyt, Uberlandstr 129, CH-8600 Dubendorf, Switzerland;

    Stellenbosch Univ, Dept Hort Sci, Citrus Res Int, ZA-7602 Stellenbosch, South Africa;

    Univ Leuven, KU Leuven, Div MeBioS, Postharvest Grp, Willem de Croylaan 42, B-3001 Heverlee, Belgium;

    Univ Leuven, KU Leuven, Div MeBioS, Postharvest Grp, Willem de Croylaan 42, B-3001 Heverlee, Belgium|VCBT, Flanders Ctr Postharvest Technol, Willem de Croylaan 42, B-3001 Heverlee, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fruit simulator; Convective cooling; Apple; Sensor; Temperature; Biomimetic;

    机译:水果模拟器;对流冷却;苹果;传感器;温度;仿生;

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