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Development and evaluation of a mobile thermotherapy technology for in-field treatment of Huanglongbing (HLB) affected trees

机译:黄龙兵(HLB)对田间治疗流动热处理技术的开发与评价受影响的树木

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Thermotherapy, as a non-chemical method to treat pests, has many advantages over the conventional chemical methods for treating some plant diseases. However, applying this method in the field, especially in orchards, can be difficult due to technical complications with regards to total coverage of large trees. In this work, a mobile thermotherapy system was designed and developed to provide heat treatment to individual citrus trees infected with Huanglongbing (HLB) disease. Based on previous studies, the system was designed to produce heat inside a canopy cover that covered a whole citrus tree, raising the internal temperature to 54 degrees C and treating the tree for 90 s. The system was able to increase the heat inside the canopy cover using different heat sources by either releasing steam or a combination of steam and hot water. A series of experiments were conducted to assess the uniformity of heat distribution within the tree canopy and the time to reach an appropriate temperature utilising two treatment types: Steam Treatment (ST) and Hot Water & Steam Treatment (HWST). Results indicated that the uniformity of heat is similar with both treatment types, while the average time for the entire treating process was 63% shorter when using HWST compared to ST. Furthermore, HWST reduced energy consumption by 52% compared to ST. The present study focuses on the technical evaluation of an thermotherapy system and does not evaluate the treatment efficiency and tree condition after treatment, which will be the subject of future experimental work. (C) 2019 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:热疗,作为一种治疗害虫的非化学方法,对治疗一些植物疾病的常规化学方法具有许多优点。然而,在该领域应用这种方法,特别是在果园中,由于大树的总覆盖范围的技术并发症,可能是困难的。在这项工作中,设计了一种移动热疗系统,并开发了一种对感染黄龙(HLB)疾病感染的单个柑橘树的热处理。基于以前的研究,该系统旨在在覆盖整个柑橘树的树冠盖内产生热量,将内部温度提高至54℃并处理树90秒。该系统能够通过释放蒸汽或蒸汽和热水的组合使用不同的热源增加顶篷覆盖内的热量。进行了一系列实验,以评估树冠内的热分布的均匀性以及利用两种处理类型达到适当温度的时间:蒸汽处理(ST)和热水&蒸汽处理(HWST)。结果表明,与ST相比,加热的均匀性与两种治疗类型相似,而在使用HWST时,整个治疗方法的平均时间是63%。此外,与ST相比,HWST将能量消耗降低52%。本研究侧重于热疗系统的技术评估,并且在治疗后不评估治疗效率和树木状况,这将是未来实验工作的主题。 (c)2019年IAGRE。 elsevier有限公司出版。保留所有权利。

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