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农业纳米技术:传统和基于纳米的农用化学品对非靶标水生生物毒性的比较。

Nanotechnology in agriculture: Comparison of the toxicity between conventional and nano-based agrochemicals on non-target aquatic species.

机构信息

Department of Biological Sciences, University of Alberta, 11455 Saskatchewan Drive, Edmonton, Alberta T6G 2E9, Canada.

Department of Biological Sciences, University of Alberta, 11455 Saskatchewan Drive, Edmonton, Alberta T6G 2E9, Canada; National Institute for Nanotechnology, 11421 Saskatchewan Drive, Edmonton, Alberta T6G 2M9, Canada; Director of Office of Environmental Nanosafety, University of Alberta, Canada.

出版信息

J Hazard Mater. 2022 Oct 5;439:129559. doi: 10.1016/j.jhazmat.2022.129559. Epub 2022 Jul 8.

Abstract

Increased crop production is necessary to keep up with rising food demand. However, conventional agricultural practices and agrochemicals are unable to sustain further increases without serious risk of adverse environmental consequences. The implementation of nanotechnology in agriculture practices has been increasing in recent years and has shown tremendous potential to boost crop production. The rapid growth in development and use of nano-agrochemicals in agriculture will inevitably result in more chemicals reaching water bodies. Some unique properties of nanoformulations may also alter the toxicity of the AI on aquatic organisms when compared to their conventional counterparts. Results from studies on conventional formulations may not properly represent the toxicity of new nanoformulations in the aquatic environment. As a result, current guidelines derived from conventional formulations may not be suitable to regulate those newly developed nanoformulations. Current knowledge on the toxicity of nano-agrochemicals on aquatic organisms is limited, especially in an ecologically relevant setting. This review complies and analyzes 18 primary studies based on 7 criteria to provide a comprehensive analysis of the available toxicity information of nano-agrochemicals and their conventional counterparts on aquatic organisms. Our analysis demonstrates that the overall toxicity of nano-agrochemicals on non-target aquatic species is significantly lower as compared to conventional counterparts. However, further dividing formulations into three categories (organic, bulk and ionic) shows that some nanoformulations can be more toxic when compared to bulk materials but less toxic as compared to ionic formulations while organic nanopesticides do not show a general trend in overall toxicity. Moreover, our analysis reveals the limitations of current studies and provides recommendations for future toxicity studies to ensure the effective and sustainable application of nano-agrochemicals, which will be beneficial to both the agrochemical industry and regulatory agencies alike.

摘要

为了满足不断增长的粮食需求,增加作物产量是必要的。然而,传统的农业实践和农用化学品如果不冒严重的环境负面影响风险,就无法再持续增加。近年来,纳米技术在农业实践中的应用不断增加,显示出巨大的潜力来提高作物产量。纳米农用化学品在农业中的快速发展和使用将不可避免地导致更多的化学物质进入水体。与传统制剂相比,纳米制剂的一些独特性质也可能改变 AI 对水生生物的毒性。对常规制剂进行的研究结果可能无法正确代表新纳米制剂在水生环境中的毒性。因此,目前从常规制剂中得出的准则可能不适合管制新开发的纳米制剂。目前对水生生物纳米农用化学品毒性的了解有限,特别是在生态相关环境中。本综述根据 7 个标准对 18 项主要研究进行了综述和分析,为纳米农用化学品及其常规对应物对水生生物的毒性提供了全面的分析。我们的分析表明,与传统对应物相比,纳米农用化学品对非目标水生物种的整体毒性明显较低。然而,进一步将制剂分为三类(有机、块状和离子型)表明,与块状材料相比,一些纳米制剂可能更有毒,但与离子型制剂相比毒性较低,而有机纳米农药在整体毒性方面没有表现出一般趋势。此外,我们的分析揭示了现有研究的局限性,并为未来的毒性研究提供了建议,以确保纳米农用化学品的有效和可持续应用,这将有利于农用化学品行业和监管机构。

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