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撞击过程中附着阻力对药液在甘蓝叶表面反弹高度的影响。

Effect of adhesion force on the height pesticide droplets bounce on impaction with cabbage leaf surfaces.

机构信息

Key Laboratory of Integrated Pest Management in Crops, Ministry of Agriculture, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, No. 2 Yuanmingyuan West Road, Beijing 100193, China.

出版信息

Soft Matter. 2018 Oct 10;14(39):8030-8035. doi: 10.1039/c8sm01413b.

Abstract

The relationship between adhesion force and the height drops containing difenoconazole-loaded mesoporous silica nanoparticles (DF-MSNs)/Tween 80 bounce on cabbage leaf surfaces was investigated as a function of Tween 80 concentration. The adhesion force of a pesticide droplet on cabbage leaf surfaces was assessed using a high-sensitivity microelectromechanical balance system and the impact behavior was recorded with a high-speed camera. The height droplets bounced decreased with increasing adhesion force, with a negative correlation between the height of the bouncing drops and adhesion force. Although droplets containing ≥0.06% Tween 80 adhered to the cabbage leaves, the retraction height was still observed to decrease as the adhesion force increased. The experimental results indicate that for cabbage leaf surfaces, the adhesion force has a significant effect on the height drops bounce. The results provide new insights into how researchers can screen for formulations for hydrophobic target crops and how to increase spray adhesion to difficult-to-wet crop leaf surfaces.

摘要

采用高灵敏度微机电天平系统评估了农药液滴在甘蓝叶片表面的粘附力,并用高速摄像机记录了撞击行为。研究了载有吡虫啉的介孔硅纳米粒子(DF-MSNs)/吐温 80 液滴在甘蓝叶片表面的高度随粘附力的变化关系以及吐温 80 浓度的影响。结果表明,对于甘蓝叶片表面,粘附力对液滴的反弹高度有显著影响。研究结果为研究人员筛选疏水性靶标作物的制剂以及提高喷雾对难润湿作物叶片表面的附着性提供了新的思路。

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