Department of Biology and Evolution of Marine Organisms, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121 Napoli, Italy.
Department of Physical, Earth and Environmental Sciences, University of Siena, Via Mattioli 4, 53100 Siena, Italy.
Biomolecules. 2021 Mar 16;11(3):441. doi: 10.3390/biom11030441.
In recent years, the application of engineered nanomaterials (ENMs) in environmental remediation gained increasing attention. Due to their large surface area and high reactivity, ENMs offer the potential for the efficient removal of pollutants from environmental matrices with better performances compared to conventional techniques. However, their fate and safety upon environmental application, which can be associated with their release into the environment, are largely unknown. It is essential to develop systems that can predict ENM interactions with biological systems, their overall environmental and human health impact. Until now, Life-Cycle Assessment (LCA) tools have been employed to investigate ENMs potential environmental impact, from raw material production, design and to their final disposal. However, LCA studies focused on the environmental impact of the production phase lacking information on their environmental impact deriving from in situ employment. A recently developed eco-design framework aimed to fill this knowledge gap by using ecotoxicological tools that allow the assessment of potential hazards posed by ENMs to natural ecosystems and wildlife. In the present review, we illustrate the development of the eco-design framework and review the application of ecotoxicology as a valuable strategy to develop ecosafe ENMs for environmental remediation. Furthermore, we critically describe the currently available ENMs for marine environment remediation and discuss their pros and cons in safe environmental applications together with the need to balance benefits and risks promoting an environmentally safe nanoremediation (ecosafe) for the future.
近年来,工程纳米材料(ENMs)在环境修复中的应用受到了越来越多的关注。由于其较大的表面积和较高的反应活性,与传统技术相比,ENMs 具有从环境基质中高效去除污染物的潜力。然而,其在环境应用中的命运和安全性,可能与其在环境中的释放有关,这在很大程度上是未知的。开发能够预测 ENM 与生物系统相互作用、对环境和人类健康整体影响的系统至关重要。到目前为止,生命周期评估(LCA)工具已被用于研究 ENMs 的潜在环境影响,从原材料生产、设计到最终处置。然而,LCA 研究侧重于生产阶段的环境影响,缺乏关于其从现场使用中产生的环境影响的信息。最近开发的生态设计框架旨在通过使用生态毒理学工具来填补这一知识空白,这些工具可以评估 ENMs 对自然生态系统和野生动物构成的潜在危害。在本综述中,我们说明了生态设计框架的开发,并回顾了将生态毒理学作为一种有价值的策略来开发用于环境修复的生态安全 ENMs 的应用。此外,我们批判性地描述了目前可用于海洋环境修复的 ENMs,并讨论了它们在安全环境应用中的优缺点,以及需要平衡利益和风险,为未来的环境安全纳米修复(生态安全)提供支持。