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How Much Do Adjuvant and Nozzles Models Reduce the Spraying Drift? Drift in Agricultural Spraying

机译:佐剂和喷嘴模型多少钱减少了喷涂漂移?农产品喷雾漂移

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The spraying of herbicides in crops has become the main form of weed control. Although it means unexpected effects on non-target plants resulted by spraying drift. Thus, improvements in application techniques, as the best selection of spray nozzles and adjuvant, style="font-family:Verdana;">are style="font-family:Verdana;"> essential to avoid environmental contamination and economic losses. style="font-size:10pt;font-family:""> style="font-family:Verdana;">On this work, we evaluate how much adjuvant associated with nozzles can reduce the spray drift. The nozzles used at experiment were air induction flat tip, hollow cone and twinjet and the spray liquids style="font-family:Verdana;">, which style="font-family:Verdana;"> were composed of herbicide glyphosate and phosphatidylcholine + propionic acid adjuvant. Measurements were made at wind tunnel and droplet sizer, at laser diffraction method. style="font-size:10pt;font-family:""> style="font-family:Verdana;">The models of nozzles influence in droplet size characteristics and in occurrence of spray drift. The use of adjuvants reduces the spray drift only combined with the twinjet nozzle, while for the other models the adjuvant did not reduce the global spray drift at significant levels. The adjuvant reduced the spray drift until 39%, while the nozzles model reduced until 74%. Both techniques when combined were able to reduce until 80%. style="font-size:10pt;font-family:""> style="font-family:Verdana;">The model of nozzle has the biggest result on drift mitigation and the use of adjuvants can increase the drift mitigation specially with nozzles that produces smallest droplets.
机译:在作物中喷洒除草剂已成为杂草控制的主要形式。虽然它对喷涂漂移导致非靶植物的意外效果。因此,应用技术的改进,作为喷嘴和佐剂的最佳选择, <跨度样式=“字体家族:verdana;”>是 style =“font-family:verdana; “>避免环境污染和经济损失是必不可少的。 style =”字体大小:10pt;字体 - 家庭:“”> style =“font-family:verdana;”>在这项工作中,我们评估与喷嘴相关的佐剂可以减少喷雾漂移。实验中使用的喷嘴是空气感应扁平尖端,空心锥和孪晶和喷雾液体 <跨度风格=“字体 - 家庭: Verdana;“>,哪种 <跨度样式=”Font-Family:Verdana;“>由除草剂草甘膦和磷脂酰胆碱+丙酸佐剂组成。在激光衍射法下在风隧道和液滴Sizer进行测量。 style =“font-size:10pt; font-family:”“> y style =”font-family:verdana;“>喷嘴模型在液滴尺寸特征中影响喷雾博士的发生IFT。佐剂的使用减少了喷雾漂移只与双肠杆喷嘴相结合,而对于其他型号,佐剂没有减少显着水平的全球喷雾漂移。佐剂将喷雾漂移降低至39%,而喷嘴模型降低至74%。组合时的技术都能够减少到80%。 style =“字体大小:10pt;字体 - 家庭:”“> dey =”font-family:verdana;“ >喷嘴模型具有漂移缓解的最大结果,使用佐剂的使用可以通过产生最小液滴的喷嘴来增加漂移缓解。

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