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空气辅助下中液滴喷雾的喷射角度和喷射量对常春藤盆栽植物沉积的影响。

Effect of spray angle and spray volume on deposition of a medium droplet spray with air support in ivy pot plants.

机构信息

Institute for Agricultural and Fisheries Research (ILVO), Technology and Food Science Unit, Agricultural Engineering, Burg. Van Gansberghelaan 115, bus 1, 9820, Merelbeke, Belgium.

出版信息

Pest Manag Sci. 2014 Mar;70(3):427-39. doi: 10.1002/ps.3584. Epub 2013 Jul 9.

Abstract

BACKGROUND

Spray boom systems, an alternative to the predominantly-used spray guns, have the potential to considerably improve crop protection management in glasshouses. Based on earlier experiments, the further optimization of the deposits of a medium spray quality extended range flat fan nozzle type using easy adjustable spray boom settings was examined. Using mineral chelate tracers and water sensitive papers, the spray results were monitored at three plant levels, on the upper side and the underside of the leaves, and on some off-target collectors. In addition, the deposition datasets of all tree experiments were compared.

RESULTS

The data showed that the most efficient spray distribution with the medium spray quality flat fan nozzles was found with a 30° forward angled spray combined with air support and an application rate of 1000 L ha(-1) . This technique resulted in a more uniform deposition in the dense canopy and increased spray deposition on the lower side of the leaves compared with the a standard spray boom application. Applying 1000 L ha(-1) in two subsequent runs instead of one did not seem to show any added value.

CONCLUSION

Spray deposition can be improved hugely simply by changing some spray boom settings like nozzle type, angling the spray, using air support and adjusting the spray volume to the crop.

摘要

背景

喷雾吊杆系统是一种替代广泛使用的喷枪的方法,有潜力极大地改善温室中的作物保护管理。基于早期的实验,进一步优化了使用易于调节的喷雾吊杆设置的中喷雾质量扩展范围扁平扇形喷嘴类型的沉积物。使用矿物螯合示踪剂和水敏纸,在三个植物层、叶片的上侧和下侧以及一些非目标收集器上监测喷雾结果。此外,还比较了所有树木实验的沉积数据集。

结果

数据表明,中喷雾质量扁平扇形喷嘴最有效的喷雾分布是在 30°向前倾斜喷雾与空气支撑相结合的情况下,以 1000 L ha(-1)的施用量获得的。与标准喷雾吊杆施药相比,这种技术在密集冠层中产生了更均匀的沉积,并增加了叶片下侧的喷雾沉积。在两次后续运行中施用量为 1000 L ha(-1),而不是一次,似乎没有显示出任何附加值。

结论

通过改变一些喷雾吊杆设置,如喷嘴类型、倾斜喷雾、使用空气支撑和根据作物调整喷雾量,可以极大地提高喷雾沉积。

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