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首页> 外文期刊>Horticulture,Environment,and Biotechnology >Inferring ethylene temporal and spatial distribution in an apple orchard (Malus domestica Borkh): a pilot study for optimal sampling with a gas sensor
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Inferring ethylene temporal and spatial distribution in an apple orchard (Malus domestica Borkh): a pilot study for optimal sampling with a gas sensor

机译:在苹果园(Malus Domestica Borkh)中推断乙烯时间和空间分布:通过气体传感器最佳采样的试验研究

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摘要

Apples emit a volatile organic compounds during the ripening process named ethylene, which can be used to infer the optimal harvest time. Currently, the fruit ethylene emission is assessed in controlled facilities, thus laborious and expensive. This article pioneers the study of assessing ethylene emissions in uncontrolled environments. However, understanding how the ethylene spatial temporal dynamics in an open field, its still elusive. Therefore, this paper provides a model from an (Malus domestica Borkh) apple orchard for simulation and analysis of ethylene behaviour. We demonstrate that the model is able to explain the ethylene emissions behaviour in an orchard field when subject to different wind speeds, directions and ripeness stages. Based on that we have investigated different sampling schemes-regular and random-for capturing the variability of ethylene in an orchard using an electrochemical gas sensor. These results show that a random sampling scheme performs 25% better than an equivalent regular-defined grid. Moreover, the measurements acquired locally in the rows tend to be 10% more reliable than in other locations from the orchard. Finally, the ethylene variability can be assessed with a confidence of 75% using 4 and 16 sampling points.
机译:苹果在成熟过程中会释放一种叫做乙烯的挥发性有机化合物,可以用来推断最佳收获时间。目前,水果乙烯排放是在受控设施中进行评估的,因此既费时又昂贵。本文开创了在非受控环境中评估乙烯排放的研究。然而,了解乙烯在开放领域的时空动态,仍然是难以捉摸的。因此,本文提供了一个苹果园乙烯行为的模拟和分析模型。我们证明,该模型能够解释在不同风速、方向和成熟阶段下果园中乙烯的排放行为。在此基础上,我们研究了使用电化学气体传感器捕捉果园中乙烯变化的不同常规和随机采样方案。这些结果表明,随机抽样方案的性能比同等规则定义的网格要好25%。此外,与果园其他位置相比,在果园行中获得的本地测量结果往往更可靠10%。最后,可以使用4个和16个采样点,以75%的置信度评估乙烯的可变性。

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