首页> 外文期刊>Crop Protection >Spray deposition and distribution in a bay laurel crop as affected by nozzle type, air assistance and spray direction when using vertical spray booms.
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Spray deposition and distribution in a bay laurel crop as affected by nozzle type, air assistance and spray direction when using vertical spray booms.

机译:当使用垂直喷杆时,月桂作物中的喷雾沉积和分布受喷嘴类型,空气辅助和喷雾方向的影响。

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In Flanders, greenhouse growers predominantly use handheld sprayers instead of spray boom equipment. Nevertheless, handheld sprayers have several drawbacks. Growers increasingly recognize the advantages of spray boom equipment, which has resulted in increasing adoption of spray boom systems. Some growers still doubt the efficacy of spray boom systems, however, while others have questions about their use. In this study, we aimed to address both doubts and questions by optimizing a vertical spray boom application for a bay laurel crop using air support and spray angling. Spray deposition on the stem and the upper and lower side of the leaves was measured using mineral chelates as tracers at twenty collector positions in the top and bottom as well as in the front, back, left and right zone of the plant. Four plant repetitions were used for every spray event. Nine different application techniques were tested in three repetitions in laboratory conditions using a fully automated spray system. The effect of nozzle type, angled nozzles, air support and spraying in two passes with an opposite direction was evaluated. The experiments showed that collector position and application technique had a significant effect on deposition. However, angling the spray, using air support or spraying in two consecutive passes with an opposite direction did not result in a higher deposition or penetration capacity compared with the standard vertical spray boom. Nevertheless, some techniques might still result in a higher bio-efficacy due to a more homogenous liquid distribution. The use of a vertical spray boom is a promising technique for safe and efficient application of plant protection products in a vertical crop. Nozzle choice, spray boom setting, spray distance and the air speed of air assisted sprayers require careful consideration, however. Of the tested techniques, the applications made with an extended range standard flat fan nozzle without air support, directed straight toward the crop and used with a fixed spray distance of 30 cm to the stem generally produced the best spray results in the considered, conically pruned bay laurel crop.Digital Object Identifier http://dx.doi.org/10.1016/j.cropro.2012.05.020
机译:在法兰德斯,温室种植者主要使用手持喷雾器代替喷杆设备。然而,手持喷雾器具有几个缺点。种植者越来越认识到喷杆设备的优势,这导致喷杆系统的采用日益增加。一些种植者仍然对喷杆系统的功效表示怀疑,而另一些种植者则对其使用存在疑问。在这项研究中,我们旨在通过使用空气支撑和喷雾角度优化月桂树作物的垂直喷雾臂应用来解决疑问和问题。使用矿物螯合物作为示踪剂,在植物的顶部和底部以及植物的前,后,左和右区域中的二十个收集器位置,测量了茎叶以及叶片的上,下侧的喷雾沉积情况。每个喷洒事件使用四次植物重复。使用全自动喷雾系统,在实验室条件下以三个重复测试了九种不同的应用技术。评估了喷嘴类型,成角度的喷嘴,空气支撑和相反方向的两次喷涂的效果。实验表明,收集器的位置和应用技术对沉积有重要影响。但是,与标准的垂直喷杆相比,使用空气支撑或在连续两个相反方向的连续喷雾中使喷雾成角度,不会导致更高的沉积或渗透能力。然而,由于液体分布更加均匀,某些技术可能仍会导致更高的生物功效。垂直喷杆的使用是一种在垂直作物中安全有效地使用植物保护产品的有前途的技术。但是,必须仔细考虑喷嘴的选择,喷杆的设置,喷雾距离和空气辅助喷雾器的风速。在经过测试的技术中,使用不带空气支撑的大范围标准平板风扇喷嘴,笔直朝向农作物并与茎杆之间的固定喷雾距离为30 cm的应用通常会在考虑的圆锥修剪条件下产生最佳的喷雾效果月桂树作物。数字对象标识符http://dx.doi.org/10.1016/j.cropro.2012.05.020

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