首页> 外文期刊>The Science of the Total Environment >Comparison of the drift potential of two application methods for the control of oak processionary moths with biocidal products in an oak avenue
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Comparison of the drift potential of two application methods for the control of oak processionary moths with biocidal products in an oak avenue

机译:比较两种施用方法在橡树大道上使用杀生物产品控制橡树前进蛾的漂移潜力

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The control of oak processionary moths (OPM; Thaumetopoea processionea) with biocidal products has become more important to protect humans from its urticating hairs. Two important application methods are cannon sprayers and helicopters. However, drift of insecticides to non-target areas might occur during the treatment resulting in potential risks for non-target organisms. Until now, information about the direct drift resulting from the applications are missing because equipment for the application of biocidal products is not tested or regulated within Europe. The aim of this work is to measure the direct drift in up to 100 m distance resulting from the application of biocidal products using a cannon sprayer and helicopter in an oak avenue. Furthermore, two different nozzles were tested for the helicopter application. The results show high drift potential with decreasing concentrations in relation to the distance to the treated area. Considering the 50th percentile of the results, the cannon sprayer produced generally more drift than the helicopter. Considering the 90th percentile at near distance, the helicopter equipped with ID-120-05 POM nozzles showed a significantly lower drift than both other tested techniques, the helicopter equipped with the Airmix 110 05 nozzles and the cannon sprayer. Hundred m away from the treated area, both nozzles installed at the helicopter showed a lower drift than the cannon sprayer. For the first time, this study shows the drift potential of applications of biocidal products and shows the possibilities to reduce drift into non-target areas by choosing appropriate equipment. This leads to a reduction of risks for non-target organisms in the vicinity of treated avenues.
机译:用杀生物剂产品控制橡树飞蛾(OPM; Thaumetopoea processionea)对于保护人类免受其毛发感染变得更加重要。两种重要的应用方法是大炮喷雾器和直升机。但是,在治疗过程中可能会发生杀虫剂向非目标区域漂移的情况,从而导致非目标生物体的潜在风险。到目前为止,由于在欧洲尚未对杀生物产品的应用设备进行测试或管理,因此缺少有关应用导致的直接漂移的信息。这项工作的目的是测量使用大炮喷雾器和直升机在橡树大道上应用杀生物产品所产生的直接漂移,最大距离为100 m。此外,针对直升机应用测试了两个不同的喷嘴。结果表明,随着到治疗区域距离的增加,浓度降低的高漂移潜力。考虑到结果的第50个百分位数,大炮喷雾器产生的漂移通常比直升机大。考虑到近距离的第90个百分位,配备ID-120-05 POM喷嘴的直升机显示的漂移明显低于其他两种测试技术,配备有Airmix 110 05喷嘴和大炮喷雾器的漂移。距治疗区域数百米处,直升飞机上安装的两个喷嘴均显示出比大炮喷雾器更低的漂移。这项研究首次显示了杀生物产品应用的漂移潜力,并显示了通过选择合适的设备来减少向非目标区域漂移的可能性。这样可以减少治疗途径附近非目标生物的风险。

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