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Effects of Formulated Glyphosate and Adjuvant Tank Mixes on Atomization from Aerial Application Flat Fan Nozzles

机译:配制草甘膦和佐剂罐混合气对空中应用扁平风扇喷嘴雾化的影响

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This study was designed to determine if the present USDA-ARS spray-nozzle models, which were based on spray solutions of water plus non-ionic surfactant, could be used to estimate spray droplet-size data for different spray formulations through use of experimentally determined correction factors. Twelve spray-solution treatments were evaluated, ten of which contained a formulated glyphosate product and nine of these contained an additional tank-mix adjuvant. Droplet-size testing was conducted across multiple operational points (nozzle-orifice size, nozzle orientation, spray pressure, and airspeed), in a high-speed wind tunnel, which corresponds to the response surface experimental model used to develop the present spray-nozzle models. The hypothesis that the different treatment solutions would respond linearly across a range of operational parameters and that a correction factor from relative to water plus non-ionic surfactant solution was proven false. When compared to water or the water plus non-ionic surfactant, the changes in atomization across the operation spectrum of the nozzle were not consistent and varied by formulation. Attempts to apply regression fits for a correction factor based on solution physical properties were not successful. With the formulated glyphosate tank mix used, none of the adjuvants tested, except the polymer, showed significant changes in droplet size under the high air shear regime. Whereas there is likely a need to develop formulated product-specific atomization models, the further addition of adjuvants do not significantly change the atomization characteristics, and, as such, should not require a unique spray-nozzle model.
机译:这项研究旨在确定当前的USDA-ARS喷雾嘴模型是否基于水加非离子表面活性剂的喷雾溶液,可以通过使用实验确定的方法来估算不同喷雾剂的喷雾液滴大小数据校正因素。评估了十二种喷雾溶液处理,其中十种包含配制的草甘膦产品,其中九种包含额外的桶混助剂。在高速风洞中的多个操作点(喷嘴孔尺寸,喷嘴方向,喷雾压力和空速)上进行了液滴尺寸测试,这与用于开发当前喷雾喷嘴的响应面实验模型相对应楷模。假设不同的处理溶液将在一系列操作参数上线性响应,并且相对于水加非离子表面活性剂溶液的校正因子被证明是错误的。当与水或水加非离子表面活性剂相比时,喷嘴整个工作范围内的雾化变化不一致,并随配方而变化。尝试基于解决方案物理属性将回归拟合用于校正因子的尝试未成功。使用配制的草甘膦桶混物时,在高空气剪切条件下,除聚合物外,所有测试的佐剂均未显示出液滴大小的显着变化。尽管可能需要开发特定产品的配方雾化模型,但进一步添加佐剂不会显着改变雾化特性,因此,不需要独特的喷雾嘴模型。

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