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纳米农用化学品作为农药替代品:前景与风险

Nano-Agrochemicals as Substitutes for Pesticides: Prospects and Risks.

作者信息

Ali Shehbaz, Ahmad Naveed, Dar Mudasir A, Manan Sehrish, Rani Abida, Alghanem Suliman Mohammed Suliman, Khan Khalid Ali, Sethupathy Sivasamy, Elboughdiri Noureddine, Mostafa Yasser S, Alamri Saad A, Hashem Mohamed, Shahid Muhammad, Zhu Daochen

机构信息

Biofuels Institute, School of Emergency Management, School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang 212013, China.

Joint Center for Single Cell Biology, Shanghai Collaborative Innovation Center of Agri-Seeds, School of Agriculture and Biology, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.

出版信息

Plants (Basel). 2023 Dec 29;13(1):109. doi: 10.3390/plants13010109.

Abstract

This review delves into the mesmerizing technology of nano-agrochemicals, specifically pesticides and herbicides, and their potential to aid in the achievement of UN SDG 17, which aims to reduce hunger and poverty globally. The global market for conventional pesticides and herbicides is expected to reach USD 82.9 billion by 2027, growing 2.7% annually, with North America, Europe, and the Asia-Pacific region being the biggest markets. However, the extensive use of chemical pesticides has proven adverse effects on human health as well as the ecosystem. Therefore, the efficacy, mechanisms, and environmental impacts of conventional pesticides require sustainable alternatives for effective pest management. Undoubtedly, nano-agrochemicals have the potential to completely transform agriculture by increasing crop yields with reduced environmental contamination. The present review discusses the effectiveness and environmental impact of nanopesticides as promising strategies for sustainable agriculture. It provides a concise overview of green nano-agrochemical synthesis and agricultural applications, and the efficacy of nano-agrochemicals against pests including insects and weeds. Nano-agrochemical pesticides are investigated due to their unique size and exceptional performance advantages over conventional ones. Here, we have focused on the environmental risks and current state of nano-agrochemicals, emphasizing the need for further investigations. The review also draws the attention of agriculturists and stakeholders to the current trends of nanomaterial use in agriculture especially for reducing plant diseases and pests. A discussion of the pros and cons of nano-agrochemicals is paramount for their application in sustainable agriculture.

摘要

本综述深入探讨了纳米农用化学品这一迷人技术,特别是杀虫剂和除草剂,以及它们在助力实现联合国可持续发展目标17方面的潜力,该目标旨在全球范围内减少饥饿和贫困。预计到2027年,传统农药和除草剂的全球市场规模将达到829亿美元,年增长率为2.7%,北美、欧洲和亚太地区是最大的市场。然而,化学农药的广泛使用已被证明对人类健康以及生态系统有不利影响。因此,传统农药的功效、作用机制和环境影响需要可持续的替代方案来进行有效的害虫管理。毫无疑问,纳米农用化学品有潜力通过提高作物产量并减少环境污染来彻底变革农业。本综述讨论了纳米农药作为可持续农业的有前景策略的有效性和环境影响。它简要概述了绿色纳米农用化学品的合成及农业应用,以及纳米农用化学品对包括昆虫和杂草在内的害虫的防治效果。纳米农用化学品农药因其独特的尺寸和优于传统农药的卓越性能优势而受到研究。在此,我们重点关注了纳米农用化学品的环境风险和现状,强调了进一步研究的必要性。该综述还提请农业工作者和利益相关者关注纳米材料在农业中的当前使用趋势,特别是在减少植物病虫害方面。讨论纳米农用化学品的利弊对于它们在可持续农业中的应用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aff3/10780915/19fc31fd7f25/plants-13-00109-g001.jpg

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