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Air-assistance in spray booms which have different spray volumes and nozzle types for chemically controlling spodoptera frugiperda on corn

机译:具有不同喷雾量和喷嘴类型的喷杆中的空气辅助,用于化学控制玉米上的斜纹夜蛾

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摘要

The study aimed to evaluate the performance of air assistance in spray booms using different types of nozzles and spray volumes. We took into account spray deposits, fall armyworm control and crop corn performance in a narrow row cropping system. The experiment was carried out at the experimental area of Sao Paulo State University, Botucatu/SP, Brazil, during the 2008/2009 agricultural season, in randomized blocks with a factorial scheme (2×2+1) and four replications. Two spray nozzles (flat fan nozzle and hollow cone nozzle) were tested, combined with two air assistance levels in the spray boom (with and without air assistance) and a treatment control. In the experimental spraying, Spinosad insecticide was sprayed in amounts of 48 g active substance (a.s.)/ha. The air assistance in the spray boom increased the spray deposits in the V 4 growth stage of the corn plants. Moreover, the application of this technology showed higher efficiency on fall armyworm control, reaching a 100% level 15 days after spraying, in the V 10 growth stage of the plants. The hollow cone nozzle increased the spray deposit level on the corn plants compared with the flat fan nozzle, at growth stage V 4. However, the flat fan nozzle, combined with air assistance technology, was more effective for controlling fall armyworm in the same growth stage (V 4), although the hollow cone nozzle increased the deposit levels on the plants. All the technologies tested in the study promoted a reduction of plant damage from fall armyworm attack. Corn productivity is directly related to the control efficiency of fall armyworm.
机译:该研究旨在评估使用不同类型的喷嘴和喷雾量的喷杆中的空气辅助性能。我们考虑了窄行种植系统中的喷雾沉积物,秋夜蛾防治和农作物玉米的性能。该实验是在巴西Botucatu / SP的圣保罗州立大学实验区于2008/2009农业季节进行的,采用因子分解法(2×2 + 1)和四次重复的随机区组进行。测试了两个喷嘴(平扇形喷嘴和空心锥形喷嘴),并结合了喷杆中的两个空气辅助水平(有或没有空气辅助)和处理控制。在实验性喷雾中,以48g活性物质(a.s。)/ ha的量喷雾多杀菌素杀虫剂。喷杆中的空气辅助作用在玉米植株的V 4生长阶段增加了喷雾沉积物。此外,该技术的应用显示出对秋季粘虫的防治效率更高,在植物的V 10生长阶段,喷洒15天后达到100%的水平。与平扇形喷嘴相比,空心锥形喷嘴在生长阶段V 4上增加了玉米植株上的喷雾沉积水平。但是,平扇形喷嘴结合空气辅助技术在相同的生长条件下对落地夜蛾的防治更为有效。阶段(V 4),尽管空心锥形喷嘴增加了植物上的沉积水平。该研究中测试的所有技术都促进减少了秋天粘虫侵袭造成的植物损害。玉米生产力直接与秋夜蛾的防治效率有关。

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