School of Life Sciences and Engineering, Southwest University of Science and Technology, Mianyang Sichuan 621010, China; Institute of Plant Sciences, University of Sindh, Jamshoro, Pakistan.
Dr. Muhammad Ajmal Khan Institute of Sustainable Halophyte Utilization, University of Karachi, Karachi 75270, Pakistan.
NanoImpact. 2022 Jul;27:100411. doi: 10.1016/j.impact.2022.100411. Epub 2022 Jul 6.
Excessive use of synthetic fertilizers cause economic burdens, increasing soil, water and atmospheric pollution. Nano-fertilizers have shown great potential for their sustainable uses in soil fertility, crop production and with minimum or no environmental tradeoffs. Nano-fertilizers are of submicroscopic sizes, have a large surface area to volume ratio, can have nutrient encapsulation, and greater mobility hence they may increase plant nutrient access and crop yield. Due to these properties, nano-fertilizers are regarded as deliverable 'smart system of nutrients'. However, the problems in the agroecosystem are broader than existing developments. For example, nutrient delivery in different physicochemical properties of soils, moisture, and other agro-ecological conditions is still a challenge. In this context, the present review provides an overview of various uses of nanotechnology in agriculture, preference of nano-fertilizers over the conventional fertilizers, nano particles formation, mobility, and role in heterogeneous soils, with special emphasis on the development and use of chitosan-based nano-fertilizers.
过度使用合成肥料会造成经济负担,增加土壤、水和大气污染。纳米肥料在土壤肥力、作物生产方面具有可持续利用的巨大潜力,且几乎没有或没有环境权衡。纳米肥料的亚微观尺寸、大的表面积与体积比、可以进行养分包裹、具有更好的流动性,因此可以增加植物养分的获取和作物产量。由于这些特性,纳米肥料被视为可交付的“智能养分系统”。然而,农业生态系统中的问题比现有发展更为广泛。例如,在不同的土壤理化性质、水分和其他农业生态条件下输送养分仍然是一个挑战。在这种情况下,本综述概述了纳米技术在农业中的各种用途,纳米肥料相对于传统肥料的优势,纳米颗粒的形成、迁移及其在非均质地 壤中的作用,特别强调壳聚糖基纳米肥料的开发和使用。