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Nano-Fertilization as an Emerging Fertilization Technique: Why Can Modern Agriculture Benefit from Its Use?

机译:纳米施肥作为新兴施肥技术:为什么现代农业可以从其使用中获益?

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摘要

There is a need for a more innovative fertilizer approach that can increase the productivity of agricultural systems and be more environmentally friendly than synthetic fertilizers. In this article, we reviewed the recent development and potential benefits derived from the use of nanofertilizers (NFs) in modern agriculture. NFs have the potential to promote sustainable agriculture and increase overall crop productivity, mainly by increasing the nutrient use efficiency (NUE) of field and greenhouse crops. NFs can release their nutrients at a slow and steady pace, either when applied alone or in combination with synthetic or organic fertilizers. They can release their nutrients in 40–50 days, while synthetic fertilizers do the same in 4–10 days. Moreover, NFs can increase the tolerance of plants against biotic and abiotic stresses. Here, the advantages of NFs over synthetic fertilizers, as well as the different types of macro and micro NFs, are discussed in detail. Furthermore, the application of NFs in smart sustainable agriculture and the role of NFs in the mitigation of biotic and abiotic stress on plants is presented. Though NF applications may have many benefits for sustainable agriculture, there are some concerns related to the release of nanoparticles (NPs) from NFs into the environment, with the subsequent detrimental effects that this could have on both human and animal health. Future research should explore green synthesized and biosynthesized NFs, their safe use, bioavailability, and toxicity concerns.
机译:需要一种更具创新的肥料方法,可以提高农业系统的生产率,比合成肥料更环保。在本文中,我们审查了最近在现代农业中使用纳米体ilizers(NFS)的发展和潜在福利。 NFS有潜力促进可持续农业,并提高整体作物生产力,主要是通过提高野外和温室作物的营养利用效率(NUE)。 NFS可以以缓慢且稳定的速度释放它们的营养素,当单独施用或与合成或有机肥料组合时。它们可以在40-50天内释放营养素,而合成肥料在4-10天内同样做。此外,NFS可以增加植物对生物和非生物应激的容差。这里,详细讨论了NFS对合成肥料以及不同类型的宏观和微NFS的优点。此外,介绍了NFS在智能可持续农业中的应用以及NFS在减轻生物和非生物胁迫下对植物缓解的作用。虽然NF应用可能对可持续农业有许多益处,但是与NFS释放来自NFS进入环境的纳米颗粒(NPS)释放有些疑虑,其随后可能对人类和动物健康产生的不利影响。未来的研究应该探索绿色合成和生物合成的NFS,他们的安全使用,生物利用度和毒性问题。

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