IFAPA, Centro Alameda del Obispo, Área de Mejora y Biotecnología, Avda. Menédez Pidal s/n, Apdo. 3092, 14004, Córdoba, Spain.
Sci Rep. 2020 Sep 25;10(1):15738. doi: 10.1038/s41598-020-73198-7.
Agriculture must overcome several challenges in order to increase—or even maintain—production, while also reducing negative environmental impact. Nanotechnology, fundamentally through the development of smart delivery systems and nanocarriers, can contribute to engineering more efficient and less contaminant agrochemicals. This Collection presents recent related works, covering nanodevices that improve crop protection against pests and diseases, nanoformulations for enhancing plant nutrition, and nanomaterials strengthening the general crop performance.
农业必须克服若干挑战,才能提高甚至维持产量,同时减少对环境的负面影响。纳米技术可通过开发智能输送系统和纳米载体,推动更高效、更少污染的农用化学品工程学的发展。本专辑介绍了最近相关的工作,涵盖了改善作物病虫害防治的纳米器件、增强植物营养的纳米制剂以及增强作物整体性能的纳米材料。