Droplet Dynamics and Initial Field Tests for Microencapsulated Pesticide Formulations Applied at Ultra Low Volume Using Rotary Atomisers for Control of Locusts and Grasshoppers

J. Holland, P. Jepson
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引用次数: 3

Abstract

The physical properties and field efficacy of microencapsulated acridicides (ME) were investigated to determine their suitability for application at Ultra Low Volume (ULV) rates in Sahelian conditions. Microcapsules were not damaged during application using Micronair AU7000 rotary atomisers. Drop size was dependent upon microcapsule size, smaller microcapsules tending to form dense aggregates within large droplets. The aggregation effect was counteracted by larger microcapsule sizes and by dilution of the concentrated formulation. There was a tendency for microcapsules to land dry at increasing distances from the point of application and at high temperatures and low humidities. In the field in Mali (W. Africa) diluted ME formulations were found to be suitable for ULV application by Berthoud C8 hand-held sprayers, vehicle-mounted Micronair AU7000 pest control kits and helicopter-mounted Beecomist rotary atomisers. ME formulations of fenitrothion, chlorpyriphos and diazinon all suppressed grasshopper populations in annual grassland and were as effective as fenitrothion applied at the standard ULV rate. The spatially heterogeneous and shifting nature of the grasshopper populations prevented the relative efficacy or persistence of the different products to be quantified and the potential for reduced environmental impact could not be tested.
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旋转喷雾器超低体积微胶囊农药防治蝗虫的液滴动力学和初步现场试验
研究了微囊化酸酯(ME)的物理性质和田间效果,以确定其在萨赫勒条件下超低体积(ULV)速率下的适用性。微胶囊在使用Micronair AU7000旋转雾化器时不会损坏。液滴大小取决于微囊的大小,较小的微囊倾向于在大液滴内形成致密的聚集体。较大的微胶囊尺寸和稀释的浓缩制剂抵消了聚集效应。微胶囊在离施用点越来越远的地方以及在高温低湿条件下有干燥着陆的趋势。在马里(西非)的现场,发现稀释的ME配方适用于Berthoud C8手持式喷雾器、车载Micronair AU7000病虫害防治套件和直升机上安装的beeconomist旋转喷雾器。杀虫磷、毒死蜱和二嗪农的ME配方均能抑制一年生草地上的蝗虫种群,且与按标准紫外倍率施用的杀虫磷效果相同。蝗虫种群在空间上的异质性和移动性阻碍了不同产品的相对功效或持久性的量化,也无法测试减少环境影响的潜力。
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