State Key Laboratory of Vegetable Biobreeding, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.
Pest Manag Sci. 2024 Jun;80(6):2761-2772. doi: 10.1002/ps.7983. Epub 2024 Feb 5.
The use of pesticides in greenhouse vegetable cultivation is necessary and significant. However, traditional pesticide application methods such as the use of backpack sprayers with water-diluted pesticides have certain drawbacks, e.g., uneven distribution, high labor intensity, and safety risks.
In this work, fluazinam ultra-low-volume liquids (Flu-ULVs) were prepared using oily solvents as carriers. The effects of different oils on the physical properties of the preparations were investigated. The Flu-ULV can be sprayed directly using a hand-held ultra-low-volume (ULV) sprayer without dilution with water. Compared with commercial water-based suspension concentrates of fluazinam, the Flu-ULV samples showed better wetting of tomato leaves, better atomization, and more uniform droplet distribution. At a dosage of 300 mL/ha, the coverage rate of tomato leaves ranged from 32.47% to 79.3%, with a droplet deposition density of 556 to 2017 droplets/cm. Application of Flu-ULVs provided 70.86% control efficacy against gray mold in tomatoes, which was higher than those achieved with reference products. Dermal exposure to Flu-ULVs was also evaluated in greenhouse experiments. The coverage rates for all parts of the operator's body ranged from 0.02% to 0.07%, with deposition volumes of 2.23 to 12.26 μg/cm.
Ground ULV spraying of fluazinam was proved to be an effective and safe management option for the control of tomato gray mold in greenhouses. This study laid a foundation for the use of ultra-low volume spray to control vegetable diseases in greenhouse, especially those induced by high humidity environment. © 2024 Society of Chemical Industry.
在温室蔬菜种植中使用农药是必要且重要的。然而,传统的农药施用方法,如使用背负式喷雾器稀释农药,存在分布不均匀、劳动强度大、安全风险高等缺点。
本工作采用油性溶剂作为载体制备氟唑菌酰胺超低容量液剂(Flu-ULVs)。考察了不同油对制剂物理性能的影响。Flu-ULV 可直接使用手持超低容量(ULV)喷雾器喷雾,无需用水稀释。与市售氟唑菌酰胺水基悬浮剂相比,Flu-ULV 样品在番茄叶片上具有更好的润湿性、更好的雾化效果和更均匀的液滴分布。在 300 mL/ha 的剂量下,番茄叶片的覆盖率为 32.47%至 79.3%,液滴沉积密度为 556 至 2017 个/cm。Flu-ULV 的施用量为 300 mL/ha 时,对番茄灰霉病的防治效果为 70.86%,高于对照药剂。在温室试验中还评估了皮肤接触 Flu-ULVs 的情况。操作人员身体各部位的覆盖率在 0.02%至 0.07%之间,沉积量为 2.23 至 12.26 μg/cm。
证明地面超低容量喷雾施药是防治温室番茄灰霉病的一种有效且安全的管理措施。本研究为利用超低容量喷雾防治温室蔬菜病虫害,特别是高湿环境下诱导的病虫害奠定了基础。 © 2024 英国化学学会。