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Nanopesticides: Guiding Principles for Regulatory Evaluation of Environmental Risks

机译:纳米农药:环境风险监管评估的指导原则

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摘要

Nanopesticides or nano plant protection products represent an emerging technological development that, in relation to pesticide use, could offer a range of benefits including increased efficacy, durability, and a reduction in the amounts of active ingredients that need to be used. A number of formulation types have been suggested including emulsions (e.g., nanoemulsions), nanocapsules (e.g., with polymers), and products containing pristine engineered nanoparticles, such as metals, metal oxides, and nanoclays. The increasing interest in the use of nanopesticides raises questions as to how to assess the environmental risk of these materials for regulatory purposes. Here, the current approaches for environmental risk assessment of pesticides are reviewed and the question of whether these approaches are fit for purpose for use on nanopesticides is addressed. Potential adaptations to existing environmental risk assessment tests and procedures for use with nanopesticides are discussed, addressing aspects such as analysis and characterization, environmental fate and exposure assessment, uptake by biota, ecotoxicity, and risk assessment of nanopesticides in aquatic and terrestrial ecosystems. Throughout, the main focus is on assessing whether the presence of the nanoformulation introduces potential differences relative to the conventional active ingredients. The proposed changes in the test methodology, research priorities, and recommendations would facilitate the development of regulatory approaches and a regulatory framework for nanopesticides.
机译:纳米农药或纳米植物保护产品代表了一项新兴的技术发展,与农药的使用有关,可以提供一系列好处,包括提高功效,持久性以及减少所需使用的活性成分的量。已经提出了许多制剂类型,包括乳剂(例如,纳米乳剂),纳米胶囊(例如,具有聚合物)以及含有原始工程化的纳米颗粒的产品,例如金属,金属氧化物和纳米粘土。对使用纳米农药的兴趣日益浓厚,引发了有关如何出于监管目的评估这些材料的环境风险的问题。在此,回顾了目前农药环境风险评估的方法,并探讨了这些方法是否适合用于纳米农药的问题。讨论了对现有环境风险评估测试和与纳米农药一起使用的程序的潜在适应措施,涉及诸如分析和表征,环境归宿和暴露评估,生物体吸收,生态毒性以及水生和陆地生态系统中纳米农药的风险评估等方面。贯穿整个过程,主要重点是评估纳米制剂的存在是否相对于常规活性成分引入了潜在的差异。测试方法,研究重点和建议的拟议变更将促进纳米农药的管理方法和管理框架的发展。

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