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Effect of spray drift reduction techniques on pests and predatory mites in orchards and vineyards

机译:喷雾漂移减少技术对果园和葡萄园害虫和掠夺性螨虫的影响

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Spray drift of pesticides has a negative impact on aquatic ecosystems and the environment, including damage to non-target organisms. Particularly, the drift of some insecticides can have detrimental effects on beneficial arthropods such as predatory mites. According to a recent EU Directive, the reduction of spray drift is required for a sustainable use of pesticides, yet without reduction of efficacy against pests. In this framework, eight field trials were conducted from 2012 to 2014 in two typical growing areas of Verona district (Northern Italy), four on apple orchards and four on vineyards. The aim of these trials was to evaluate, for two spray drift reduction techniques: 1) the spatial patterns of in-field droplets, 2) the efficacy against key pests on apple and grape (Cydia pomonella L and Lobesia botrana Denis & Schif-fermuller respectively), 3) the side effects on predatory mite populations. Four insecticides: chlorpyrifos, chlorpyrifos-methyl, methoxyfenozide and spinetoram, were applied with three different spraying techniques: high-drift nozzles (Albuz, ATR 80 yellow), low-drift nozzles (Albuz, TVI 80015 green), and high-drift nozzles with an anti-drift adjuvant (rapeseed oil). Results showed that the two spray drift reduction techniques effectively increased droplets amounts next to sprayer, reducing potential drift on both apple orchards and vineyards and were generally as effective as standard nozzles without additional side effects on beneficial arthropods. Results suggest that the use of spray drift reduction techniques such as low-drift nozzles and anti-drift adjuvants can be effective in managing key pests and also in decreasing the environmental impact of using insecticides. (C) 2017 Elsevier Ltd. All rights reserved.
机译:杀虫剂的喷雾漂移对水生生态系统和环境产生负面影响,包括对非靶毒性生物的损害。特别是,一些杀虫剂的漂移可能对诸如捕食性螨虫的有益节肢动物的漂移可能具有不利影响。根据最近的欧盟指令,可持续使用农药需要减少喷雾漂移,但在不降低针对害虫的疗效。在这一框架中,在2012年至2014年,在2012年至2014年,在维罗纳区(意大利北部)的两个典型生长地区,四个在苹果园和四个葡萄园中的四个。这些试验的目的是评估两个喷雾漂移减少技术:1)现场液滴的空间模式,2)对苹果和葡萄的关键害虫的功效(Cydia Pomonella L和Lobesia Botrana Denis& Schif- FERMULLER分别),3)侧面影响掠夺性螨虫。四种杀虫剂:用三种不同的喷嘴(ALBUZ,ATR 80黄色),低漂移喷嘴(ALBUZ,TVI 80015绿色)和高漂移喷嘴(ALBUZ,ATR 80015绿色)和高漂移喷嘴(ALBUZ,ATR 80黄色)和高漂移喷嘴和高漂移喷嘴和高漂移喷嘴和高漂流喷嘴用抗漂移佐剂(菜籽油)。结果表明,两种喷雾漂移减少技术有效增加了喷雾器旁边的液滴量,减少了苹果园和葡萄园的潜在漂移,并且通常与标准喷嘴一样有效,而没有对有益节肢动物的额外副作用。结果表明,使用喷雾漂移减少技术,如低漂移喷嘴和抗漂移佐剂可以有效地管理关键害虫,以及降低使用杀虫剂的环境影响。 (c)2017 Elsevier Ltd.保留所有权利。

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