大豆喷滴沉降对播距的影响

A. L. Viegas Neto, C. M. A. D. Souza, P. Degrande, Izidro dos Santos Lima Júnior
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摘要

由于几种作物会出现滴落,要达到植物的所有部分可能是一项困难的成就。作物管理方面的策略,如增加植株间距,可以促进喷雾应用的成功。以大豆为研究对象,在两行距条件下,采用三种不同的喷雾喷嘴和施用量,对液滴在大豆中的沉积进行了研究。实验设计采用随机分组,按分块方案安排处理。行距分别为0.45和0.76 m,喷淋喷嘴分别为JA-2和Magno 11002 BD,施用量分别为120、200和280 L ha-1。对大豆植株上、中、下三分之一的液滴覆盖率进行了评价。在植物叶片的正面安装水敏纸,分析喷雾技术,并使用E-Sprinkle®软件进行评估。在R5.3大豆生育期对植株进行喷施。本实验评估了以下参数:体积中值直径、每cm2液滴密度、液滴覆盖面积和小于150µm的液滴百分比。增加大豆行距和增加喷雾量可以提高大豆作物中三分之一的液滴覆盖率。Magno 11002 BD液滴喷嘴在排距为0.76 m时液滴覆盖率较高。在280 L ha-1的喷雾速率下,下三分之一的雾滴密度最高,中三分之一的覆盖率更高。
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Deposition of sprayed drops in soybean in function of sowing spacing
To reach all parts of the plants can be a difficult achievement faced by the drops in several crops. Strategies in crop management such as an increment in the plant spacing can contribute to the spray application's success. This study aimed to evaluate the droplets deposition in soybean, using three different spray nozzles and application rate, in two soybean rows spacing. The experimental design used was the randomized blocks, with treatments arranged in a split-plot scheme. The plots were the interrow spacing (0.45 and 0.76 m), the subplots were the spray nozzles (JA-2 and Magno 11002 BD), and the sub-subplots were the application rate (120, 200 and 280 L ha-1). Droplets coverage was evaluated in the upper, middle and lower thirds of soybean plants. Water-sensitive papers were installed in the adaxial part of plant leaves to analyze the spray technology and evaluated using E-Sprinkle® software. Spraying was performed in plants at the R5.3 soybean stage. This experiment evaluated the following parameters: the volume median diameter, the density of droplets per cm2, the droplet coverage area, and the droplet percentage less than 150 µm. The increase in the soybean row spacing combined with the spray volume increase provided greater droplet coverage in the middle third in soybean crop. The Magno 11002 BD droplet nozzle provided the higher droplet coverage in the row spacing of 0.76 m. The spray rate of 280 L ha-1 provided the highest density of droplets per cm2 in the lower third and greater coverage in the middle-third.
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