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Nozzle Formulation Interactions: Consequences for Spray Droplet Adhesion to Plant Surfaces

机译:喷嘴配方相互作用:喷雾液滴与植物表面的粘附后果

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Tests were conducted with a widely used herbicide (glyphosate) that is available in a range of formulations and a selection of commonly used nozzle types [XR TeeJet, extended range flat spray tip (XR), Turbo TeeJet, wide angle flat spray tip (TT), AI TeeJet, Air Induction spray tip (AI)] and determined the rebound characteristics of each combination using a difficult-to-wet foliar crop target (cabbage), an easy-to-wet hairy weed (velvetleaf), and a difficult-to-wet weed (lambsquarters). The rebound was determined under standard spraying conditions in a track room using a "bounce chamber" constructed at The Laboratory for Pest Control Application Technology (LPCAT). The amount of spray liquid retained and reflected from the leaf surfaces was determined by weight. The data showed that there were no significant differences between the nozzles, but that formulation differences did occur and were a reflection of surfactant level in the spray mixture. There was a significant formulation X leaf interaction and leaf X nozzle interaction, but not a formulation X nozzle interaction.
机译:用广泛使用的除草剂(草甘膦)进行测试,可在一系列配方和常用喷嘴类型[XR Teejet,延伸范围平面喷雾尖端(XR),涡轮增压器,广角扁平喷雾尖端(TT ),ai teejet,空气感应喷雾尖端(ai)]并使用难以湿的叶面植物靶(卷心菜),易湿毛茸茸(velvetleaf)和难度 - 湿杂草(羊羔)。在轨道室的标准喷涂条件下使用在攻击应用技术(LPCAT)的“反弹室”中的标准喷涂条件下确定了反弹。由叶片表面保留和反射的喷雾液的量由重量计确定。数据显示喷嘴之间没有显着差异,但是发生了制剂的差异,并且是喷雾混合物中表面活性剂水平的反射。有一个重要的配方X叶相互作用和叶X喷嘴相互作用,但不是配方X喷嘴相互作用。

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