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Novel Wireless Sensor System for Monitoring Oxygen, Temperature and Respiration Rate of Horticultural Crops Post Harvest

机译:新型无线传感器系统,用于监测园艺作物收获后的氧气,温度和呼吸速率

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摘要

In order to design optimal packages, it is of pivotal importance to determine the rate at which harvested fresh fruits and vegetables consume oxygen. The respiration rate of oxygen (RRO2) is determined by measuring the consumed oxygen per hour per kg plant material, and the rate is highly influenced by temperature and gas composition. Traditionally, RRO2 has been determined at discrete time intervals. In this study, wireless sensor networks (WSNs) were used to determine RRO2 continuously in plant material (fresh cut broccoli florets) at 5 °C, 10 °C and 20 °C and at modified gas compositions (decreasing oxygen and increasing carbon dioxide levels). Furthermore, the WSN enabled concomitant determination of oxygen and temperature in the very close vicinity of the plant material. This information proved a very close relationship between changes in temperature and respiration rate. The applied WSNs were unable to determine oxygen levels lower than 5% and carbon dioxide was not determined. Despite these drawbacks in relation to respiration analysis, the WSNs offer a new possibility to do continuous measurement of RRO2 in post harvest research, thereby investigating the close relation between temperature and RRO2. The conclusions are that WSNs have the potential to be used as a monitor of RRO2 of plant material after harvest, during storage and packaging, thereby leading to optimized consumer products.
机译:为了设计最佳包装,确定收获的新鲜水果和蔬菜消耗氧气的速率至关重要。氧气的呼吸速率(RRO2)是通过测量每千克植物材料每小时所消耗的氧气来确定的,该速率在很大程度上受温度和气体成分的影响。传统上,RRO2是在离散时间间隔内确定的。在这项研究中,使用无线传感器网络(WSN)在5°C,10°C和20°C以及改良的气体成分(减少氧气和增加二氧化碳含量)下连续测定植物材料(新鲜西兰花小花)中的RRO2。 )。此外,WSN能够同时确定植物材料附近的氧气和温度。该信息证明温度变化与呼吸速率之间存在非常密切的关系。所应用的WSN无法确定氧气含量低于5%,也无法确定二氧化碳。尽管在呼吸分析方面存在这些缺点,但无线传感器网络为在收获后研究中连续测量RRO2提供了新的可能性,从而研究了温度与RRO2之间的紧密关系。结论是,WSN有潜力在收获后,存储和包装过程中用作监测植物材料RRO2的潜力,从而优化消费产品。

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