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利用旋翼机应用松毛虫赤眼蜂防治玉米欧洲玉米螟。

Using gyroplane for application of Trichogramma spp. against the European corn borer in maize.

机构信息

University of Life Sciences in Lublin, Lublin, Poland.

Institute of Agrophysics, Polish Academy of Sciences, Lublin, Poland.

出版信息

Pest Manag Sci. 2020 Jun;76(6):2243-2250. doi: 10.1002/ps.5762. Epub 2020 Feb 8.

Abstract

BACKGROUND

Achieving sustainability of agricultural production is one of the key challenges for humanity. Minimizing the use of chemicals and replacing them with biological plant protection is, firstly, fully in line with the agriculture's development strategy and, secondly, confirmed to be achievable in practice. For instance, many researchers point to the potential of using Trichogramma spp. to control Ostrinia nubilalis in maize. However, the application methods for preparations containing Trichogramma spp. are still at the stage of development. So far, ground application proved time and energy consuming. Aerial application using ultralight aircraft is a new option.

RESULTS

The present study presents the results of tests on the effectiveness of applying Trichogramma spp. from the board of an ultralight gyroplane. A 6-year experiment was conducted on a maize monoculture located in south-western Poland. The results indicate that the low-height aerial application allows precise dosing and satisfactory distribution of the biopesticide. The efficacy of 60-85% (depending on the year) of the gyroplane-based spraying operations was comparable with that observed for ground application.

CONCLUSION

Considering the speed and high efficiency of the treatment, using a gyroplane as a carrier of the biopesticide application system is a good alternative to the other methods. © 2020 Society of Chemical Industry.

摘要

背景

实现农业生产的可持续性是人类面临的关键挑战之一。尽量减少化学品的使用并用生物防治方法替代它们,首先,完全符合农业发展战略,其次,在实践中已被证实是可行的。例如,许多研究人员指出,利用赤眼蜂来防治玉米上的玉米螟是有潜力的。然而,含有赤眼蜂的制剂的应用方法仍处于开发阶段。到目前为止,地面应用已被证明既费时又费力。使用超轻型飞机进行空中应用是一个新的选择。

结果

本研究介绍了从超轻型自转旋翼机的机板上应用赤眼蜂的效果测试结果。在波兰西南部的一个玉米单作区进行了为期 6 年的试验。结果表明,低空空中应用可实现精确施药量和令人满意的生物农药分布。基于旋翼机的喷雾作业的效率在 60-85%之间(取决于年份),与地面应用观察到的效率相当。

结论

考虑到处理速度和高效率,使用自转旋翼机作为生物农药应用系统的载体是其他方法的良好替代选择。© 2020 英国化学学会。

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