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Spray droplet coverage achieved with different nozzles and application rates in the aerial part of sugar cane

机译:在甘蔗的地上部分使用不同的喷嘴和施用量实现喷雾覆盖

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> face="Verdana, Arial, Helvetica, sans-serif" size="2">The terrestrial application of agricultural defensives in the sugar-alchool producer sector until recently was focused on weed control. After the appearance of orange rust, a disease of agricultural importance in sugar cane production, it has become imperative to know how the application arrives at the plant canopy. In such a way, the present study was developed with the objective of evaluate the quality of the deposition in terrestrial spraying, lead in factorial project 2x2x2 (two nozzles of spraying, two rates of application and two positions of the water-sensitive papers in the canopy of plant), six repetitions, with ten papers each. It has been used the nozzles of spraying XR110.02 (plain jet of extended range) and TTJ60 - 110,02 (double plain jet, with angle of 60 degrees between itself) using the rates of application of 120 and 160L ha-1. The water-sensitive papers cards used to evaluate the deposition of the sprayings had been distributed on the leaves of sugar cane in two distinct heights (upper and lower, approximately 0,80 and 0,50 meters above ground level, arranged in horizontal and inclined with respect to the road surface, respectively). A table scanner was used to generate the digital images of the papers and evaluated the coverings through the Conta-Gotas® program. The deposition data/covering had been submitted to the variance analysis and the averages compared with the Tukey test at 5% of significance. It was observed in the superior canopy of the sugarcane a bigger covering when compared with the inferior, there was no difference between the application rates, 120 and 160L ha-1. The TTJ600110.02 nozzle promoted bigger covering the XR110.02 nozzle when using 160L ha-1 (40,34 and 36,50%, respectively).
机译:> face =“ Verdana,Arial,Helvetica,sans-serif” size =“ 2”>直到今天,农业防御剂在制糖业的工业应用一直集中在杂草控制上。出现橙色锈病(一种在甘蔗生产中具有农业重要性的疾病)之后,必须知道应用程序如何到达植物冠层。通过这种方式,开发本研究的目的是评估地面喷涂中沉积的质量,析因项目2x2x2中的铅(两个喷嘴喷涂,两个施用率和两个水敏纸在两个位置中的位置)。植物冠层),重复六次,每篇十篇。已使用120和160L ha的喷洒速率喷涂XR110.02(扩展射程的普通喷嘴)和TTJ60-110,02(彼此之间成60度角的双重平射喷嘴)的喷嘴。 -1 。用于评估喷洒物沉积的水敏纸卡已在甘蔗的叶子上以两个不同的高度分布(上下,大约在地面以上0.80和0.50米,水平和倾斜排列)相对于路面而言)。使用台式扫描仪生成纸张的数字图像,并通过Conta-Gotas ®程序评估封面。沉积数据/覆盖率已经提交给方差分析,并且将平均值与Tukey检验进行了比较(显着性为5%)。与下部相比,在甘蔗的上盖中观察到更大的覆盖,施用量在120和160L ha -1 之间没有差异。使用160L ha -1 时,TTJ600110.02喷嘴的XR110.02喷嘴的覆盖面积增大(分别为40,34和36,50%)。

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