College of Resources and Environment, Anhui Science and Technology University, Chuzhou, 233100, Anhui, China.
Department of Ecology, School of Resources and Environmental Engineering, Anhui University Hefei, 230601, Anhui, China.
J Environ Manage. 2024 Jun;360:121178. doi: 10.1016/j.jenvman.2024.121178. Epub 2024 May 25.
Despite the widespread usage to safeguard crops and manage pests, pesticides have detrimental effects on the environment and human health. The necessity to find sustainable agricultural techniques and meet the growing demand for food production has spurred the quest for pesticide substitutes other than traditional ones. The unique qualities of nanotechnology, including its high surface area-to-volume ratio, controlled release, and better stability, have made it a promising choice for pest management. Over the past ten years, there has been a noticeable growth in the usage of nanomaterials for pest management; however, concerns about their possible effects on the environment and human health have also surfaced. The purpose of this review paper is to give a broad overview of the worldwide trends and environmental effects of using nanomaterials in place of pesticides. The various types of nanomaterials, their characteristics, and their possible application in crop protection are covered. The limits of the current regulatory frameworks for nanomaterials in agriculture are further highlighted in this review. Additionally, it describes how standard testing procedures must be followed to assess the effects of nanomaterials on the environment and human health before their commercialization. In order to establish sustainable and secure nanotechnology-based pest control techniques, the review concludes by highlighting the significance of taking into account the possible hazards and benefits of nanomaterials for pest management and the necessity of an integrated approach. It also emphasizes the importance of more investigation into the behavior and environmental fate of nanomaterials to guarantee their safe and efficient application in agriculture.
尽管农药被广泛用于保护作物和防治害虫,但它们对环境和人类健康有不利影响。为了寻找可持续的农业技术并满足不断增长的粮食生产需求,人们迫切需要寻找除传统农药以外的替代品。纳米技术具有高比表面积-体积比、可控释放和更好的稳定性等独特性质,使其成为害虫管理的一种有前途的选择。在过去的十年中,纳米材料在害虫管理中的应用明显增加;然而,人们对其可能对环境和人类健康产生的影响也表示担忧。本文的目的是广泛概述全球范围内用纳米材料替代农药的趋势和环境影响。本文涵盖了各种类型的纳米材料、它们的特性以及它们在作物保护中的可能应用。本文还进一步强调了现行农业纳米材料监管框架的局限性。此外,本文还描述了在纳米材料商业化之前,必须遵循标准测试程序来评估其对环境和人类健康的影响。为了建立基于可持续和安全的纳米技术的害虫防治技术,本文最后强调了在害虫管理中考虑纳米材料的潜在危害和益处以及采用综合方法的重要性。本文还强调了进一步研究纳米材料的行为和环境归宿的重要性,以确保其在农业中的安全和有效应用。