Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
J Nanobiotechnology. 2022 Jan 4;20(1):11. doi: 10.1186/s12951-021-01214-7.
Nanomaterials (NMs) have received considerable attention in the field of agrochemicals due to their special properties, such as small particle size, surface structure, solubility and chemical composition. The application of NMs and nanotechnology in agrochemicals dramatically overcomes the defects of conventional agrochemicals, including low bioavailability, easy photolysis, and organic solvent pollution, etc. In this review, we describe advances in the application of NMs in chemical pesticides and fertilizers, which are the two earliest and most researched areas of NMs in agrochemicals. Besides, this article concerns with the new applications of NMs in other agrochemicals, such as bio-pesticides, nucleic acid pesticides, plant growth regulators (PGRs), and pheromone. We also discuss challenges and the industrialization trend of NMs in the field of agrochemicals. Constructing nano-agrochemical delivery system via NMs and nanotechnology facilitates the improvement of the stability and dispersion of active ingredients, promotes the precise delivery of agrochemicals, reduces residual pollution and decreases labor cost in different application scenarios, which is potential to maintain the sustainability of agricultural systems and improve food security by increasing the efficacy of agricultural inputs.
纳米材料(NMs)由于其小颗粒尺寸、表面结构、溶解度和化学成分等特殊性质,在农业化学品领域受到了相当大的关注。纳米材料和纳米技术在农业化学品中的应用极大地克服了传统农业化学品的缺陷,包括生物利用度低、易光解和有机溶剂污染等。在本文中,我们描述了纳米材料在化学农药和肥料中的应用进展,这是纳米材料在农业化学品中最早和研究最多的两个领域。此外,本文还关注了纳米材料在其他农业化学品中的新应用,如生物农药、核酸农药、植物生长调节剂(PGRs)和信息素。我们还讨论了纳米材料在农业化学品领域的挑战和工业化趋势。通过纳米材料和纳米技术构建纳米农业化学品输送系统有助于提高活性成分的稳定性和分散性,促进农业化学品的精确输送,减少残留污染,降低不同应用场景下的劳动力成本,从而通过提高农业投入的效果,有可能维持农业系统的可持续性并提高粮食安全。