环境科学
土壤肥力
作物产量
农业
背景(考古学)
粮食安全
农业生态系统
营养物
农业工程
土壤水分
农学
工程类
化学
土壤科学
生态学
地理
有机化学
考古
生物
作者
Ali Murad Jakhar,Irfan Aziz,Abdul Rasheed Kaleri,Maria Hasnain,Ghulam Haider,Jiahua Ma,Zainul Abideen
出处
期刊:NanoImpact
[Elsevier]
日期:2022-07-01
卷期号:27: 100411-100411
被引量:102
标识
DOI:10.1016/j.impact.2022.100411
摘要
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.
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