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喷雾液滴大小和载液量对麦草畏和草铵膦药效的影响。

Spray droplet size and carrier volume effect on dicamba and glufosinate efficacy.

作者信息

Butts Thomas R, Samples Chase A, Franca Lucas X, Dodds Darrin M, Reynolds Daniel B, Adams Jason W, Zollinger Richard K, Howatt Kirk A, Fritz Bradley K, Clint Hoffmann Wesley, Kruger Greg R

机构信息

Department of Agronomy & Horticulture, University of Nebraska-Lincoln, North Platte, NE, USA.

Department of Plant and Soil Sciences, Mississippi State University, Mississippi State, MS, USA.

出版信息

Pest Manag Sci. 2018 Mar 13. doi: 10.1002/ps.4913.

Abstract

BACKGROUND

Pesticide applications using a specific droplet size and carrier volume could maximize herbicide efficacy while mitigating particle drift in a precise and efficient manner. The objectives of this study were to investigate the influence of spray droplet size and carrier volume on dicamba and glufosinate efficacy, and to determine the plausibility of droplet-size based site-specific weed management strategies.

RESULTS

Generally, across herbicides and carrier volumes, as droplet size increased, weed control decreased. Increased carrier volume (187 L ha ) buffered this droplet size effect, thus greater droplet sizes could be used to mitigate drift potential while maintaining sufficient levels of weed control. To mitigate drift potential and achieve satisfactory weed control (≥ 90% of maximum observed control), a 900 µm (Ultra Coarse) droplet size paired with 187 L ha carrier volume is recommended for dicamba applications and a 605 µm (Extremely Coarse) droplet size across carrier volumes is recommended for glufosinate applications. Although general droplet size recommendations were created, optimum droplet sizes for weed control varied significantly across site-years.

CONCLUSION

Convoluted interactions occur between droplet size, carrier volume, and other application parameters. Recommendations for optimizing herbicide applications based on droplet size should be based on a site-specific management approach to better account for these interactions. © 2018 Society of Chemical Industry.

摘要

背景

使用特定液滴大小和载体体积进行农药喷洒,能够以精确且高效的方式最大化除草剂效果,同时减轻颗粒漂移。本研究的目的是调查喷雾液滴大小和载体体积对麦草畏和草铵膦效果的影响,并确定基于液滴大小的精准除草管理策略的可行性。

结果

总体而言,在不同除草剂和载体体积条件下,随着液滴大小增加,杂草控制效果下降。增加载体体积(187升/公顷)可缓冲这种液滴大小效应,因此可以使用更大的液滴大小来减轻漂移可能性,同时保持足够的杂草控制水平。为减轻漂移可能性并实现令人满意的杂草控制(≥最大观察到的控制效果的90%),建议麦草畏应用采用900微米(超粗)液滴大小与187升/公顷载体体积相结合,草铵膦应用在不同载体体积下采用605微米(极粗)液滴大小。尽管制定了一般的液滴大小建议,但不同地点年份的杂草控制最佳液滴大小差异显著。

结论

液滴大小、载体体积和其他应用参数之间存在复杂的相互作用。基于液滴大小优化除草剂应用的建议应基于特定地点的管理方法,以更好地考虑这些相互作用。©2018化学工业协会。

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