College of Science, China Agricultural University, Beijing, P. R. China.
College of Agricultural Unmanned System, China Agricultural University, Beijing, P. R. China.
Pest Manag Sci. 2024 Sep;80(9):4371-4385. doi: 10.1002/ps.8143. Epub 2024 May 4.
The use of unmanned aerial vehicles (UAVs) for the application of plant protection products (PPPs) in paddy fields is becoming increasingly prevalent worldwide. Despite its growing usage, UAV spraying for rice pest control faces practical challenges, including limited canopy penetration, uneven deposition, and significant spray drift. This study investigated the impact of two tank-mix adjuvants, Wonderful Rosin (Adjuvant-1) and Tiandun (Adjuvant-2), at six volume concentrations, on the spray liquid's physicochemical properties, spray drift, plant deposition, and the biological efficacy of rice insecticides using a quadrotor UAV sprayer.
The physicochemical characteristics of the spray liquid influenced spray performance and biological efficacy. Incorporating Adjuvant-1 and Adjuvant-2 led to a decrease in surface tension and contact angle while increasing the viscosity of the spray solution. These alterations in surface tension and viscosity contributed to an optimized droplet size distribution, reduced spray drift, enhanced deposition uniformity and penetration, and improved control efficacy against the rice planthopper in UAV applications. The highest control efficacy was observed at a concentration of 0.5%, showing an improvement of 35.12% (Adjuvant-1) and 20.23% (Adjuvant-2) over applications without tank-mix adjuvant 7 days after treatment.
The judicious selection of tank-mix adjuvants for UAV PPP applications can significantly enhance spray performance and biological efficacy in controlling rice insects. This study's findings offer valuable insights for integrating tank-mix adjuvants into UAV spraying applications. © 2024 Society of Chemical Industry.
在稻田中使用无人飞行器(UAV)应用植保产品(PPPs)的做法在全球范围内越来越普遍。尽管其应用日益广泛,但 UAV 喷雾在防治水稻病虫害方面仍面临着实际挑战,包括有限的冠层穿透、不均匀沉积和大量喷雾漂移。本研究使用四旋翼 UAV 喷雾器,调查了两种罐混助剂 Wonderful Rosin(助剂 1)和 Tiandun(助剂 2)在六个体积浓度下对喷雾液理化性质、喷雾漂移、植物沉积和水稻杀虫剂生物功效的影响。
喷雾液的理化特性影响喷雾性能和生物功效。加入助剂 1 和助剂 2 会降低表面张力和接触角,同时增加喷雾溶液的粘度。这些表面张力和粘度的变化导致优化的液滴尺寸分布,减少喷雾漂移,提高沉积均匀性和穿透性,并提高对水稻叶蝉的防治效果。在 0.5%的浓度下观察到最高的防治效果,与不添加罐混助剂相比,处理后 7 天的防治效果提高了 35.12%(助剂 1)和 20.23%(助剂 2)。
明智地选择 UAV PPP 应用中的罐混助剂可以显著提高喷雾性能和防治水稻昆虫的生物功效。本研究的结果为将罐混助剂整合到 UAV 喷雾应用中提供了有价值的见解。© 2024 化学工业协会。