通过佐剂和喷嘴的使用减少喷淋漂移,提高氟唑胺的扩散效果

Gong Cw, Y. Ma, Liu Yh, Wang Xg, Zhang Xx, R. Yang, Ruan Yw, Shen Lt, B. Li, Ltd. China Chengdu Green Gold High-tech Co., Ltd. China Chongqing Jian’an Instrument Co.
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摘要

喷雾漂移是无人机(UAV)喷洒过程中的一个实际问题,对环境有负面影响,使用空气感应喷嘴或抗漂移佐剂是减少漂移最常见的建议。为了筛选具有良好雾化性能和防漂移效果的佐剂,我们通过液滴大小测量系统评估了不同佐剂的喷雾雾化性能。根据风洞实验结果,对雾化性能、漂移距离和漂移沉积之间的关系进行了评述,并确定了不同喷嘴的漂移百分比和不同佐剂液体的表面张力。结果表明:佐剂的加入会改变其分布跨度S, ΦVol<150μm,体积介质直径D50;ΦVol<150μm,麦飞处理的D50下降和增加最多。漂移距离、D50与漂移量百分比呈负相关。麦非佐剂和IDK120-015喷嘴显著降低了漂移沉积量。IDK120-015加麦菲的抗漂效果明显强于其他喷嘴或佐剂。此外,佐剂的加入可以显著降低表面张力,特别是对麦菲。这些结果表明,麦菲的加入是一种有效的方法来减少喷雾漂移和降低表面张力的喷嘴类型。这些数据有助于为植保无人机选择合适的喷嘴和佐剂提供理论依据。
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Reducing Spray Drift and Increasing Spreading Effect of the Thifluzamide Through the Use of Adjuvants and Nozzles
Spray drift, as a practical issue during Unmanned Aerial Vehicle (UAV) spraying, has a negative impact on the environment, and the use of air-induction nozzles or anti-drift adjuvants are the most common recommendations for reducing drift. To screen the adjuvants for favourable atomization performance and anti-drift effect, we evaluated the spray atomization performance of different adjuvants by the droplet size measurement system. From the wind tunnel results, we commented on the relationship among the atomization performance, drift distance and drift deposition, and determined the drift percentage of different nozzles and the surface tension of liquids with different adjuvants. The results showed that the addition of adjuvants would modify the distribution span S, ΦVol<150μm and the volume medium diameter D50; ΦVol<150μm and D50 of the Maifei treatment decreased and increased the most of all the treatments. There were negative correlations between the drift distance, D50 and percentage of drift amount. The adjuvants Maifei and the nozzle IDK120-015 significantly decreased the drift deposition amount. And the anti-drift effect of nozzle IDK120-015 plus Maifei was significantly stronger than that of other nozzles or adjuvants. In addition, the addition of adjuvants could significantly decrease the surface tension, especially for Maifei. These results suggest that the addition of Maifei is an effective way to reduce the spray drift for all nozzle types and lessen the surface tension. These data help to provide a theoretical basis for selecting suitable nozzles and adjuvants for plant protection UAVs.
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