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通过实时精准喷雾减少农药使用。

Reduction of pesticide application via real-time precision spraying.

机构信息

Universidade Federal de Mato Grosso do Sul (UFMS), Chapadão do Sul, MS, Brazil.

Universidade do Estado de Mato Grosso (UNEMAT), Sinop, MT, Brazil.

出版信息

Sci Rep. 2022 Apr 4;12(1):5638. doi: 10.1038/s41598-022-09607-w.

Abstract

Farmers focus on reducing the cost of production and aim to increase profit. The objective of this study was to quantify the reduction of pesticides applied to soybean (Glycine max (L.) Merrill) and maize (Zea mays L.) crops in several stages of the production cycle using a site-specific spraying application based on real-time sensors in the Brazilian Cerrado region. The sprayers were equipped with a precision spraying control system based on a real-time sensor. The spraying operations were performed not only for herbicide, but also for fungicide and insecticides applications. The maps recorded the percentage of the spray boom when the application was turned on (on/off spray system) with nozzle-to-nozzle control. The precision spraying system based on real-time sensors reduced the volume of pesticides (including herbicides, insecticides, and fungicides) applied to soybean and maize crops. There was a more significant reduction in the volume of pesticides applied post-emergence of the crops in the initial stages of soybean and maize when the crops had less leaf area or less foliage coverage between the rows. The cost reduction achieved using this technology was 2.3 times lower than the cost associated with pesticide application over the entire area using a conventional sprayer. Under the experimental conditions, there were no differences in the average crop yield, compared to the historical productivity of soybean and maize crops by applying this technology because the recommended doses were not affected and the site of application was limited to points where the presence of plants was present was detected.

摘要

农民专注于降低生产成本,旨在提高利润。本研究的目的是量化巴西塞拉多地区在生产周期的几个阶段减少大豆(Glycine max(L.)Merrill)和玉米(Zea mays L.)作物使用基于实时传感器的定点喷雾应用的农药使用量。喷雾器配备了基于实时传感器的精密喷雾控制系统。喷雾作业不仅针对除草剂,还针对杀菌剂和杀虫剂应用。地图记录了应用程序开启时(开/关喷雾系统)喷杆的百分比,具有喷嘴到喷嘴的控制。基于实时传感器的精密喷雾系统减少了大豆和玉米作物中农药(包括除草剂、杀虫剂和杀菌剂)的用量。在大豆和玉米作物的初始阶段,当作物的叶片面积较小或行间的叶片覆盖较少时,对作物进行芽后处理时,农药的用量减少幅度更大。与使用传统喷雾器对整个区域进行农药应用相关的成本相比,使用这项技术可降低 2.3 倍的成本。在实验条件下,与应用这项技术的大豆和玉米作物的历史生产力相比,平均作物产量没有差异,因为推荐剂量没有受到影响,并且应用地点仅限于检测到植物存在的点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a67b/8980047/adc3f2f93bd9/41598_2022_9607_Fig1_HTML.jpg

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