Nongbet Amilia, Mishra Awdhesh Kumar, Mohanta Yugal Kishore, Mahanta Saurov, Ray Manjit Kumar, Khan Maryam, Baek Kwang-Hyun, Chakrabartty Ishani
Department of Botany, School of Biological Sciences, University of Science and Technology Meghalaya (USTM), 9th Mile, Techno City, Baridua, Ri-Bhoi 793101, Meghalaya, India.
Department of Biotechnology, Yeungnam University, Gyeongsan 38541, Gyeongbuk, Korea.
Plants (Basel). 2022 Sep 30;11(19):2587. doi: 10.3390/plants11192587.
The widespread use of fertilizers is a result of the increased global demand for food. The commonly used chemical fertilizers may increase plant growth and output, but they have deleterious effects on the soil, the environment, and even human health. Therefore, nanofertilizers are one of the most promising solutions or substitutes for conventional fertilizers. These engineered materials are composed of nanoparticles containing macro- and micronutrients that are delivered to the plant rhizosphere in a regulated manner. In nanofertilizers, the essential minerals and nutrients (such as N, P, K, Fe, and Mn) are bonded alone or in combination with nano-dimensional adsorbents. This review discusses the development of nanotechnology-based smart and efficient agriculture using nanofertilizers that have higher nutritional management, owing to their ability to increase the nutrient uptake efficiency. Additionally, the synthesis and mechanism of action of the nanofertilizers are discussed, along with the different types of fertilizers that are currently available. Furthermore, sustainable agriculture can be realised by the targeted delivery and controlled release of nutrients through the application of nanoscale active substances. This paper emphasises the successful development and safe application of nanotechnology in agriculture; however, certain basic concerns and existing gaps in research need to be addressed and resolved.
化肥的广泛使用是全球粮食需求增加的结果。常用的化学肥料可能会促进植物生长并提高产量,但它们会对土壤、环境乃至人类健康产生有害影响。因此,纳米肥料是传统肥料最有前景的解决方案或替代品之一。这些工程材料由含有大量和微量营养素的纳米颗粒组成,这些纳米颗粒以可控方式输送到植物根际。在纳米肥料中,必需的矿物质和养分(如氮、磷、钾、铁和锰)单独或与纳米级吸附剂结合。本综述讨论了基于纳米技术的智能高效农业的发展,这种农业使用纳米肥料,由于其提高养分吸收效率的能力,具有更高的营养管理水平。此外,还讨论了纳米肥料的合成和作用机制,以及目前可用的不同类型肥料。此外,通过应用纳米级活性物质实现养分的靶向输送和控释,可以实现可持续农业。本文强调了纳米技术在农业中的成功发展和安全应用;然而,某些基本问题和现有研究差距需要得到解决。