Nanofertilizers: The Next Generation of Agrochemicals for Long-Term Impact on Sustainability in Farming Systems

A. Gade, Pramod Ingle, Utkarsha Nimbalkar, M. Rai, R. Raut, M. Vedpathak, Pratik K. Jagtap, K. Abd-Elsalam
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引用次数: 1

Abstract

The microflora of the soil is adversely affected by chemical fertilizers. Excessive use of chemical fertilizers has increased crop yield dramatically at the cost of soil vigor. The pH of the soil is temporarily changed by chemical fertilizers, which kill the beneficial soil microflora and can cause absorption stress on crop plants. This leads to higher dosages during the application, causing groundwater leaching and environmental toxicity. Nanofertilizers (NFs) reduce the quantity of fertilizer needed in agriculture, enhance nutrient uptake efficiency, and decrease fertilizer loss due to runoff and leaching. Moreover, NFs can be used for soil or foliar applications and have shown promising results in a variety of plant species. The main constituents of nanomaterials are micro- and macronutrient precursors and their properties at the nanoscale. Innovative approaches to their application as a growth promoter for crops, their modes of application, and the mechanism of absorption in plant tissues are reviewed in this article. In addition, the review analyzes potential shortcomings and future considerations for the commercial agricultural application of NFs.
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纳米肥料:对农业系统可持续性长期影响的新一代农用化学品
土壤中的微生物群受到化肥的不利影响。化肥的过度使用以土壤活力为代价,极大地提高了作物产量。化肥会暂时改变土壤的pH值,这会杀死有益的土壤微生物群,并对作物植物造成吸收压力。这导致在应用过程中较高的剂量,造成地下水浸出和环境毒性。纳米肥料(NFs)减少了农业所需的肥料数量,提高了养分吸收效率,并减少了径流和淋滤造成的肥料损失。此外,NFs可用于土壤或叶面应用,并在多种植物物种中显示出良好的效果。纳米材料的主要成分是微量和宏量营养素前体及其在纳米尺度上的性质。本文综述了其作为作物生长促进剂的新方法、应用模式以及在植物组织中的吸收机制。此外,本文还分析了NFs在农业商业化应用中可能存在的不足和未来需要考虑的问题。
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