Sánchez-Fernández Luis, Barrera-Báez María, Martínez-Guanter Jorge, Pérez-Ruiz Manuel
Departamento de Ingeniería Aeroespacial y Mecánica de Fluidos, Área de Ingeniería Agroforestal, Universidad de Sevilla, Seville, Spain.
Digital Marketing Manager Iberia at Corteva Agriscience, Sevilla, Spain.
Front Plant Sci. 2024 Jan 4;14:1272372. doi: 10.3389/fpls.2023.1272372. eCollection 2023.
The increasing demand for optimizing the use of agricultural resources will require the adoption of cutting-edge technologies and precision farming management. Unmanned Aerial Vehicle (UAV) sprayers seem promising due to their potential to perform precision or spot spraying, particularly in woody crop environments where total surface spraying is unnecessary. However, incorporating this technology is limited by the lack of scientific knowledge about the environmental risks associated with UAV sprayers and the strict legal framework. Nonetheless, these spraying systems' characteristic downwash airflow and the limited swath width can potentially mitigate drift in hedgerow crops. During our study we performed comparative studies aimed to compare the airborne drift, soil, and crop depositions between a conventional orchard sprayer and a UAV sprayer in a commercial superhigh-density orchard in the South Iberian Peninsula in 2022. Our findings reveal that, in superhigh-density olive orchards, the UAV sprayer presents a substantial reduction in airborne drift, while soil depositions showed no significant differences compared to those of a conventional terrestrial orchard sprayer. Crop depositions were significantly lower when utilizing the UAV sprayer. These results suggest that introducing UAV spraying technology in Mediterranean agricultural systems, under specific scenarios, can effectively reduce the environmental impact of crop spraying and encourage the responsible use of plant protection products (PPPs).
对优化农业资源利用的需求不断增加,这将需要采用前沿技术和精准农业管理。无人机喷雾器似乎很有前景,因为它们有进行精准或定点喷雾的潜力,特别是在木本作物环境中,不需要进行全面积喷雾。然而,由于缺乏关于无人机喷雾器相关环境风险的科学知识以及严格的法律框架,这项技术的应用受到限制。尽管如此,这些喷雾系统特有的下冲气流和有限的喷幅宽度可能会减轻树篱作物中的漂移。在我们的研究中,我们进行了比较研究,旨在比较2022年伊比利亚半岛南部一个商业超高密度果园中,传统果园喷雾器和无人机喷雾器之间的空中漂移、土壤和作物沉积情况。我们的研究结果表明,在超高密度橄榄园中,无人机喷雾器的空中漂移显著减少,而与传统地面果园喷雾器相比,土壤沉积没有显著差异。使用无人机喷雾器时,作物沉积显著降低。这些结果表明,在特定情况下,将无人机喷雾技术引入地中海农业系统,可以有效减少作物喷雾对环境的影响,并鼓励对植物保护产品进行负责任的使用。