Biofabricated nanomaterials in sustainable agriculture: insights, challenges and prospects

农业 纳米材料 纳米技术 可持续农业 材料科学 工程伦理学 可持续发展 业务 环境规划 政治学 环境科学 工程类 地理 考古 法学
作者
Pratikhya Mohanty,Puneet Kumar Singh,Basundhara Lenka,T. K. Adhya,Suresh K. Verma,Zobia Ayreen,Shilpita Patro,Biplab Sarkar,Ranjan K. Mohapatra,Snehasish Mishra
出处
期刊:Biofabrication [IOP Publishing]
卷期号:16 (4): 042003-042003 被引量:2
标识
DOI:10.1088/1758-5090/ad60f7
摘要

Abstract One ever-evolving and ever-demanding critical human endeavour is the provision of food security for the growing world population. This can be done by adopting sustainable agriculture through horizontal (expanding the arable land area) and vertical (intensifying agriculture through sound technological approaches) interventions. Customized formulated nanomaterials have numerous advantages. With their specialized physico-chemical properties, some nanoparticulated materials improve the plant’s natural development and stress tolerance and some others are good nanocarriers. Nanocarriers in agriculture often coat chemicals to form composites having utilities with crop productivity enhancement abilities, environmental management (such as ecotoxicity reduction ability) and biomedicines (such as the ability to control and target the release of useful nanoscale drugs). Ag, Fe, Zn, TiO 2 , ZnO, SiO 2 and MgO nanoparticles (NPs), often employed in advanced agriculture, are covered here. Some NPs used for various extended purposes in modern farming practices, including disease diagnostics and seed treatment are also covered. Thus, nanotechnology has revolutionized agrotechnology, which holds promise to transform agricultural (ecosystems as a whole to ensure food security in the future. Considering the available literature, this article further probes the emergent regulatory issues governing the synthesis and use of nanomaterials in the agriculture sector. If applied responsibly, nanomaterials could help improve soil health. This article provides an overview of the nanomaterials used in the distribution of biomolecules, to aid in devising a safer and eco-friendly sustainable agriculture strategy. Through this, agri-systems that depend on advanced farming practices might function more effectively and enhance agri-productivity to meet the food demand of the rising world population.
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