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Droplet deposition and control effect of insecticides sprayed with an unmanned aerial vehicle against plant hoppers

机译:无人机喷洒的杀虫剂对植物料斗的小滴沉积和防治效果

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A small unmanned aerial vehicle (UAV) that can spray pesticide with high efficiency and with no damage to crops is required for the timely and effective spraying of small fields and/or those in hilly mountains. The current study aimed to illuminate the influence of spraying parameters, such as operation height and operation velocity, of the UAV on droplet deposition on the rice canopy and protection efficacy against plant hoppers. Droplets of 480 gl(-1) chlorpyrifos (Regent EC) (at a dose of 432 g a.i. ha(-1), spray volume rate of approximately 15 1 ha(-1)) were collected using water-sensitive paper, and the coverage rates of the droplets on the rice canopy and lower layer were statistically analyzed. The deposition and distribution of droplets in the late stage of rice growth were closely related to the operational height and velocity of crop spraying as executed by the UAV, further affecting insect control. The spraying parameters for preventing plant hoppers were then optimized. When the spraying height was 1.5 m and the spraying velocity 5 m s(-1), the droplet deposition in the lower layer was maximized, and the droplets exhibited the most uniform distribution (CV = 23%). The insecticidal efficacy was 92%-74% from 3 to 10 days after spraying insecticide. Both the insecticidal efficacy and the persistence period were greater than those achieved with a hand lance operated from a stretcher-mounted sprayer (at dose of 432 g a.i. ha(-1), spray volume rate of approximately 750 1 ha(-1)), especially on the 5th day, indicating that UAV had a low volume and highly concentrated spray pattern to enhance the duration of efficacy. This work offers a basis for the optimized design, improved performance, and rational application of UAV. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了及时有效地喷洒小田地和/或丘陵山区,需要一种小型的无人飞行器(UAV),该无人机可以高效喷洒农药且不会损害农作物。当前的研究旨在阐明无人机的喷洒参数(例如操作高度和操作速度)对水稻冠层上的液滴沉积以及对植物料斗的防护功效的影响。使用水敏纸收集480 gl(-1)毒死rif(Regent EC)的液滴(剂量为432 g ai ha(-1),喷雾体积率约为15 1 ha(-1)),统计分析了水稻冠层和下层的液滴覆盖率。水稻生长后期液滴的沉积和分布与无人机执行作物喷洒的操作高度和速度密切相关,进一步影响了昆虫的控制。然后优化用于防止料斗的喷雾参数。当喷射高度为1.5 m,喷射速度为5 m s(-1)时,下层中的液滴沉积最大,并且液滴显示出最均匀的分布(CV = 23%)。喷洒杀虫剂后3至10天的杀虫效力为92%-74%。杀虫功效和持续时间都比使用担架式喷雾器操作的手动喷枪(在432 g ai ha(-1)的剂量,约750 1 ha(-1)的喷雾量)下获得的杀虫功效和持续时间都长。 ,尤其是在第5天,这表明无人机具有小体积和高浓度的喷雾模式,可以延长疗效持续时间。这项工作为无人机的优化设计,改进性能和合理应用提供了基础。 (C)2016 Elsevier Ltd.保留所有权利。

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