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纳米颗粒在可持续农业中的应用:新兴机遇。

Nanoparticles in sustainable agriculture: An emerging opportunity.

机构信息

Department of Research & Development, Biotechnology, Uttaranchal University, Uttarakhand 248007, India.

Department of Botany and Environment Studies, DAV University, Jalandhar, Punjab 144001, India.

出版信息

J Control Release. 2021 Jan 10;329:1234-1248. doi: 10.1016/j.jconrel.2020.10.051. Epub 2020 Oct 27.

Abstract

Conventional agriculture often relies on bulky doses of fertilizers and pesticides that have adversely affected the living beings as well as the ecosystems. As a basic tenet of sustainable agriculture, minimum agrochemicals should be used so that the environment can be protected and various species can be conserved. Further, sustainable agriculture should be a low input system, where the production costs are lower and net returns are higher. The application of nanotechnology in agriculture can significantly enhance the efficiency of agricultural inputs and thus it offers a significant way to maintain sustainable development of agroecosystems via nanoparticles. In this regard, nano-plant growth promoters, nanopesticides, nanofertilizers, nano-herbicides, agrochemical encapsulated nanocarrier systems etc. have been developed for the potential applications in agriculture. These can have great benefits for agriculture, including higher production of crops, inhibition of plant pathogens, removal of unwanted weeds and insects with lesser cost, energy and waste production. However, there are several concerns related to the use of nanoparticles in agriculture. These include the approaches for synthesis, their mechanisms of penetration to applied surfaces and the risks involved. Though, advent of new technologies has significantly improved the synthesis and application of nanomaterials in agriculture, there are many uncertainties regarding nano-synthesis, their way of utilization, uptake and internalization inside the crop cells. Therefore, an elaborate investigation is required for deciphering the engineered nanomaterials, assessing their mechanistic application and agroecological toxicity. Hence, this review is aimed to critically highlight the NPs material application and points towards the vital gaps in the use of nanotechnology for sustainable agriculture.

摘要

传统农业通常依赖大量的化肥和农药,这些化肥和农药不仅对生物,而且对生态系统都产生了不利影响。作为可持续农业的基本原则,应尽量减少使用农用化学品,以保护环境和保护各种物种。此外,可持续农业应该是一种低投入的系统,生产成本较低,净回报较高。纳米技术在农业中的应用可以显著提高农业投入的效率,因此,通过纳米颗粒为维持农业生态系统的可持续发展提供了一种重要途径。在这方面,已经开发出了纳米植物生长促进剂、纳米农药、纳米肥料、纳米除草剂、农用化学品封装纳米载体系统等,用于农业中的潜在应用。这些应用可以为农业带来巨大的好处,包括提高作物产量、抑制植物病原体、以较低的成本、能源和废物生产去除不需要的杂草和昆虫。然而,纳米颗粒在农业中的应用存在一些相关的问题。这些问题包括合成方法、它们向应用表面的渗透机制以及所涉及的风险。尽管新技术的出现极大地改善了纳米材料在农业中的合成和应用,但对于纳米合成、它们的利用方式、在作物细胞内的吸收和内化方式仍存在许多不确定性。因此,需要进行详细的研究以阐明工程纳米材料,并评估其在农业中的机械应用和生态毒性。因此,本文旨在批判性地强调纳米材料的应用,并指出纳米技术在可持续农业中的应用存在的重要差距。

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