首页> 外文期刊>Acta Horticulturae >Reduction of spray pressure leads to less emission and better deposition of spray liquid at high-volume spraying in greenhouse tomato.
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Reduction of spray pressure leads to less emission and better deposition of spray liquid at high-volume spraying in greenhouse tomato.

机译:降低喷洒压力可以减少温室番茄大剂量喷洒时的排放量,并使喷洒液体更好地沉积。

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In an experimental greenhouse, growing a tomato (Lycopersicon esculentum) crop, it was investigated if a reduction in spray pressure could improve the spray result, while, simultaneously, emission to the ground could be reduced. Spray deposition on the leaves and the emission to the ground was evaluated at different spray pressures (2.5, 5, 10 and 15 bar). An Empas vertical spray mast with 6x2 Teejet XR8002VK flat fan nozzles was used to spray the tomato crop in three stages of crop growth, respectively 0.75, 2.25 and 2.80 m height, spraying 500-1500 l ha-1 (stage 1) and 1000-3000 l ha-1 (stage 2 and 3) depending on the spray pressure. Flow rate ranged from 0.74 to 1.80 l min-1 at an increasing spray pressure from 2.5 to 15 bar. The VMD (Volume Median Diameter) decreased in the same pressure range from 207 to 124 micro m. The emission of spray liquid to the ground was measured in the spraying path and beneath the plants between the rows closest to the spray mast. The highest emission to the ground appeared closest to the spray mast, and increased at higher spray pressures. In crop growth stage 1 and 2, approximately 35% of the spray volume emitted to the ground, in stage 3 only 15%. The direction of the nozzles (upwards directed with an angle of at least 400) appeared to be of great importance. The deposition of spray liquid on the leaves was measured at two rows (A: closest to the sprayer, B: the next row behind it) at one, two or three heights depending the stage of the crop. Highest spray deposition could be found in row A, at the upper side of the leaf and at a higher working pressure. Differences were smaller in the next row and at greater height in the plant. Finally, it could be concluded that a decrease in spray pressure to 5 bar gave an adequate deposition on the leaves in micro l cm-2, and a decrease in emission to the ground..
机译:在一个试验性温室中,种植番茄(Lycopersicon esculentum)作物,研究了降低喷雾压力是否可以改善喷雾效果,同时可以减少向地面的排放。在不同的喷雾压力(2.5、5、10和15 bar)下评估叶片上的喷雾沉积和向地面的排放。使用具有6x2 Teejet XR8002VK平扇喷嘴的Empas垂直喷雾桅杆,在作物生长的三个阶段(分别为0.75、2.25和2.80 m高度)对番茄进行喷雾,分别喷洒500-1500 l ha-1(阶段1)和1000- 3000 l ha-1(阶段2和3),具体取决于喷雾压力。在2.5至15 bar的喷射压力下,流量范围从0.74至1.80 l min-1。在相同的压力范围内,VMD(体积中值直径)从207降低到124微米。在喷涂路径中和最靠近喷涂桅杆的行之间的植物下方测量喷涂液体向地面的排放量。最高的地面排放似乎最靠近喷雾桅杆,并在较高的喷雾压力下增加。在作物生长的第1和第2阶段,大约有35%的喷雾量排放到地面,第3阶段只有15%。喷嘴的方向(向上以至少400°的角度定向)似乎非常重要。根据作物的生长阶段,在两行(A:最靠近喷雾器,B:在其后的下一排)处测量喷雾液在叶片上的沉积,高度分别为一,二或三倍。最高的喷雾沉积可以在A行,叶片的上侧和较高的工作压力下找到。下一行的差异较小,而工厂中的差异较大。最后,可以得出结论,将喷雾压力降低至5 bar,可使叶片上的微滴cm-2沉淀量充分,并减少向地面的排放量。

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