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纳米农药环境可持续性的生态毒理学及监管方面

Ecotoxicological and regulatory aspects of environmental sustainability of nanopesticides.

作者信息

Grillo Renato, Fraceto Leonardo F, Amorim Mónica J B, Scott-Fordsmand Janeck James, Schoonjans Reinhilde, Chaudhry Qasim

机构信息

Department of Physics and Chemistry, São Paulo State University (UNESP), Avenida Brasil, 56, Centro, 15385-000 Ilha Solteira, SP, Brazil.

Department of Environmental Engineering, São Paulo State University (UNESP), Avenida Três de Março, 511, Alto da Boa Vista, 18087-180 Sorocaba, SP, Brazil.

出版信息

J Hazard Mater. 2021 Feb 15;404(Pt A):124148. doi: 10.1016/j.jhazmat.2020.124148. Epub 2020 Oct 2.

Abstract

Recent years have seen the development of various colloidal formulations of pesticides and other agrochemicals aimed at use in sustainable agriculture. These formulations include inorganic, organic or hybrid particulates, or nanocarriers composed of biodegradable polymers, that can provide a better control of the release of active ingredients. The very small particle sizes and high surface areas of nanopesticides may however also lead to some unintended (eco)toxicological effects due to the way in which they interact with the target and non-target species and the environment. The current level of knowledge on ecotoxicological effects of nanopesticides is scarce, especially in regard to the fate and behaviour of such formulations in the environment. Nanopesticides will however have to cross a stringent regulatory scrutiny before marketing in most countries for health and environmental risks under a range of regulatory frameworks that require pre-market notification, risk assessment and approval, followed by labelling, post-market monitoring and surveillance. This review provides an overview of the key regulatory and ecotoxicological aspects relating to nanopesticides that will need to be considered for environmentally-sustainable use in agriculture.

摘要

近年来,各种用于可持续农业的农药和其他农用化学品的胶体配方得到了发展。这些配方包括无机、有机或混合颗粒,或由可生物降解聚合物组成的纳米载体,它们可以更好地控制活性成分的释放。然而,由于纳米农药与目标和非目标物种以及环境相互作用的方式,其非常小的粒径和高比表面积也可能导致一些意想不到的(生态)毒理学效应。目前关于纳米农药生态毒理学效应的知识水平稀缺,特别是关于此类配方在环境中的归宿和行为。然而,在大多数国家,纳米农药在一系列要求上市前通知、风险评估和批准,随后进行标签、上市后监测和监督的监管框架下,因健康和环境风险而在上市前必须经过严格的监管审查。本综述概述了与纳米农药相关的关键监管和生态毒理学方面,这些方面是农业环境可持续利用需要考虑的。

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