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Wind tunnel studies on spray deposition on leaves of tree species used for windbreaks and exposure of honey bees

机译:风洞研究用于防风林和蜜蜂暴露的树种叶片上的喷雾沉积

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摘要

A wind tunnel study was conducted to determine pesticide deposition on commonly used windbreak tree species used as spray drift barriers and associated exposure of honey bees. Although it has been known that windbreaks are effective in reducing chemical drift from agricultural applications, there is still an enormous information and data gap on details of the dependence of the mechanism on the biological materials of the barriers and on standardization of relevant assessment methods. Beneficial arthropods like honey bees are adversely affected by airborne drift of pesticides. A tracer dye solution was sprayed onto the windbreak samples and honey bees located in the wind tunnel at various simulated wind speeds. Analysis of data from this work has shown that needle-like foliage of windbreak trees captures two to four times more spray than broad-leaves. In addition, it was determined that, at lower wind speeds, flying bees tend to capture slightly more spray than bees at rest.
机译:进行了风洞研究,以确定农药在常用的防风林树种上的沉积情况,这些树种用作喷雾漂移屏障和相关的蜜蜂接触。尽管已经知道防风林可以有效减少农业应用中的化学漂移,但是关于机理对屏障生物材料的依赖性以及相关评估方法的标准化方面,仍然存在巨大的信息和数据缺口。诸如蜜蜂等有益的节肢动物会受到农药空中飘移的不利影响。将示踪染料溶液以各种模拟风速喷涂到防风样品和位于风洞中的蜜蜂上。对这项工作数据的分析表明,防风林针叶状的叶子比阔叶树捕获的喷雾多了两到四倍。另外,已经确定,在较低的风速下,飞行的蜜蜂比静止的蜜蜂倾向于捕获更多的喷雾。

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