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纳米技术在可持续农业中的综合概述。

A comprehensive overview of nanotechnology in sustainable agriculture.

机构信息

Department of Allied Health Sciences, School of Health sciences and technology, University of Petroleum and Energy Studies, Dehradun, Uttarakhand 248007, India.

Materials Chemistry Department, CSIR-Institute of Minerals & Materials Technology, Bhubaneswar, Odisha 751013, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, Uttar Pradesh 201002, India.

出版信息

J Biotechnol. 2022 Aug 20;355:21-41. doi: 10.1016/j.jbiotec.2022.06.007. Epub 2022 Jun 22.

Abstract

Plant nutrition is crucial in crop productivity and providing food security to the ever-expanding population. Application of chemical/biological fertilizers and pesticides are the mainstays for any agricultural economy. However, there are unintended consequences of using chemical fertilizers and pesticides. The environment and ecological balance are adversely affected by their usage. Biofertilizers and biopesticides counter some undesired environmental effects of chemical fertilizers/pesticides; despite some drawbacks associated with their use. The recent developments in nanotechnology offer promise toward sustainable agriculture. Sustainable agriculture involves addressing the concerns about agriculture as well as the environment. This review briefs about important nanomaterials used in agriculture as nanofertilizers, nanopesticides, and a combination called nanobiofertilizers. Both nanofertilizers and nanopesticides enable slow and sustained release besides their eco-friendly nature. They can be tailored to the specific needs of to crop. Nanofertilizers also offer greater stress tolerance and, therefore, are of considerable value in the era of climate change. Furthermore, nanofertilizers/nanopesticides are applied in minute amounts, reducing transportation costs associated and thus positively affecting the economy. Their uses extend beyond such as if nanoparticles (NPs) are used at high concentrations; they affect plant pathogens adversely. Polymer-based biodegradable nanofertilizers and nanopesticides offer various benefits. There is also a dark side to the use of nanomaterials in agriculture. Nanotechnology often involves the use of metal/metal oxide nanoparticles, which might get access to human bodies leading to their accumulation through bio-magnification. Although their effects on human health are not known, NPs may reach toxic concentrations in soil and runoff into rivers, and other water bodies with their removal to become a huge economic burden. Nevertheless, a risk-benefit analysis of nanoformulations must be ensured before their application in sustainable agriculture.

摘要

植物营养对于作物生产力和为不断增长的人口提供粮食安全至关重要。化肥和农药的应用是任何农业经济的主要支柱。然而,使用化肥和农药会带来意想不到的后果。它们的使用会对环境和生态平衡产生不利影响。生物肥料和生物农药可以抵消化肥/农药的一些不良环境影响;尽管它们的使用也存在一些缺点。纳米技术的最新发展为可持续农业带来了希望。可持续农业涉及解决农业和环境问题。本综述简要介绍了农业中重要的纳米材料,如纳米肥料、纳米农药,以及称为纳米生物肥料的组合。纳米肥料和纳米农药除了具有环保性质外,还能实现缓慢和持续的释放。它们可以根据作物的特定需求进行定制。纳米肥料还提供了更大的抗胁迫能力,因此在气候变化时代具有相当大的价值。此外,纳米肥料/纳米农药的用量非常少,减少了与运输相关的成本,从而对经济产生积极影响。它们的用途不仅如此,如果纳米颗粒(NPs)以高浓度使用,它们会对植物病原体产生不利影响。基于聚合物的可生物降解纳米肥料和纳米农药提供了各种好处。纳米材料在农业中的应用也存在阴暗面。纳米技术通常涉及金属/金属氧化物纳米颗粒的使用,这些颗粒可能会进入人体,通过生物放大而积累。尽管它们对人体健康的影响尚不清楚,但 NPs 可能会在土壤中达到毒性浓度,并随着径流进入河流和其他水体,从而给经济带来巨大的负担。然而,在将纳米制剂应用于可持续农业之前,必须确保进行风险效益分析。

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