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纳米农药在推进害虫管理以实现可持续农业和环境服务方面的前景与挑战

Prospects and challenges of nanopesticides in advancing pest management for sustainable agricultural and environmental service.

作者信息

Zainab Rida, Hasnain Maria, Ali Faraz, Abideen Zainul, Siddiqui Zamin Shaheed, Jamil Farrukh, Hussain Murid, Park Young-Kwon

机构信息

Department of Applied Biology, College of Sciences, University of Sharjah, Sharjah, P.O. Box 2727, United Arab Emirates; Department of Biotechnology, Lahore College for Women University, Lahore, Pakistan.

Department of Biotechnology, Lahore College for Women University, Lahore, Pakistan.

出版信息

Environ Res. 2024 Nov 15;261:119722. doi: 10.1016/j.envres.2024.119722. Epub 2024 Aug 2.

Abstract

The expanding global population and the use of conventional agrochemical pesticides have led to the loss of crop yield and food shortages. Excessive pesticide used in agriculture risks life forms by contaminating soil and water resources, necessitating the use of nano agrochemicals. This article focuses on synthesis moiety and use of nanopesticides for enhanced stability, controlled release mechanisms, improved efficacy, and reduced pesticide residue levels. The current literature survey offered regulatory frameworks for commercial deployment of nanopesticides and evaluated societal and environmental impacts. Various physicochemical and biological processes, especially microorganisms and advanced oxidation techniques are important in treating pesticide residues through degradation mechanisms. Agricultural waste could be converted into nanofibers for sustainable composites production, new nanocatalysts, such as N-doped TiO and bimetallic nanoparticles for advancing pesticide degradation. Microbial and enzyme methods have been listed as emerging nanobiotechnology tools in achieving a significant reduction of chlorpyrifos and dimethomorph for the management of pesticide residues in agriculture. Moreover, cutting-edge biotechnological alternatives to conventional pesticides are advocated for promoting a transition towards more sustainable pest control methodologies. Application of nanopesticides could be critical in addressing environmental concern due to its increased mobility, prolonged persistence and ecosystem toxicity. Green synthesis of nanopesticides offers solutions to environmental risks associated and using genetic engineering techniques may induce pest and disease resistance for agricultural sustainability. Production of nanopesticides from biological sources is necessary to develop and implement comprehensive strategies to uphold agricultural productivity while safeguarding environmental integrity.

摘要

全球人口不断增长以及传统农用化学农药的使用导致了作物产量损失和粮食短缺。农业中过度使用农药会因污染土壤和水资源而危及生命形式,因此有必要使用纳米农用化学品。本文重点关注纳米农药的合成部分及其在增强稳定性、控释机制、提高功效和降低农药残留水平方面的应用。当前的文献调查提供了纳米农药商业部署的监管框架,并评估了其社会和环境影响。各种物理化学和生物过程,特别是微生物和高级氧化技术,在通过降解机制处理农药残留方面很重要。农业废弃物可以转化为纳米纤维用于可持续复合材料生产,新型纳米催化剂,如氮掺杂二氧化钛和双金属纳米颗粒,可用于促进农药降解。微生物和酶法已被列为新兴的纳米生物技术工具,可在农业中显著减少毒死蜱和烯酰吗啉的残留量以管理农药残留。此外,提倡采用前沿生物技术替代传统农药,以促进向更可持续的害虫防治方法过渡。由于纳米农药流动性增加、持久性延长和具有生态系统毒性,其应用在解决环境问题方面可能至关重要。纳米农药的绿色合成提供了应对相关环境风险的解决方案,使用基因工程技术可能会诱导害虫和疾病抗性以实现农业可持续性。从生物源生产纳米农药对于制定和实施全面战略以维持农业生产力同时保障环境完整性是必要的。

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