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环境金属和类金属污染物对植物和人类健康的影响:探索纳米修复方法。

Effects of environmental metal and metalloid pollutants on plants and human health: exploring nano-remediation approach.

作者信息

Rajput Priyadarshani, Singh Abhishek, Agrawal Shreni, Ghazaryan Karen, Rajput Vishnu D, Movsesyan Hasmik, Mandzhieva Saglara, Minkina Tatiana, Alexiou Athanasios

机构信息

Academy of Biology and Biotechnology, Southern Federal University, Rostov-On-Don, Russia.

Faculty of Biology, Yerevan State University, 0025, Yerevan, Armenia.

出版信息

Stress Biol. 2024 May 23;4(1):27. doi: 10.1007/s44154-024-00156-y.

Abstract

Metal and metalloid pollutants severely threatens environmental ecosystems and human health, necessitating effective remediation strategies. Nanoparticle (NPs)-based approaches have gained significant attention as promising solutions for efficient removing heavy metals from various environmental matrices. The present review is focused on green synthesized NPs-mediated remediation such as the implementation of iron, carbon-based nanomaterials, metal oxides, and bio-based NPs. The review also explores the mechanisms of NPs interactions with heavy metals, including adsorption, precipitation, and redox reactions. Critical factors influencing the remediation efficiency, such as NPs size, surface charge, and composition, are systematically examined. Furthermore, the environmental fate, transport, and potential risks associated with the application of NPs are critically evaluated. The review also highlights various sources of metal and metalloid pollutants and their impact on human health and translocation in plant tissues. Prospects and challenges in translating NPs-based remediation from laboratory research to real-world applications are proposed. The current work will be helpful to direct future research endeavors and promote the sustainable implementation of metal and metalloid elimination.

摘要

金属和类金属污染物严重威胁着环境生态系统和人类健康,因此需要有效的修复策略。基于纳米颗粒(NPs)的方法作为从各种环境基质中高效去除重金属的有前景的解决方案而受到了广泛关注。本综述聚焦于绿色合成纳米颗粒介导的修复,例如铁、碳基纳米材料、金属氧化物和生物基纳米颗粒的应用。该综述还探讨了纳米颗粒与重金属相互作用的机制,包括吸附、沉淀和氧化还原反应。系统研究了影响修复效率的关键因素,如纳米颗粒的尺寸、表面电荷和组成。此外,还对纳米颗粒应用所涉及的环境归宿、迁移以及潜在风险进行了严格评估。该综述还强调了金属和类金属污染物的各种来源及其对人类健康的影响以及在植物组织中的转运。提出了将基于纳米颗粒的修复从实验室研究转化为实际应用的前景和挑战。当前的工作将有助于指导未来的研究工作,并促进金属和类金属去除的可持续实施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3952/11111642/c87ad8618616/44154_2024_156_Fig1_HTML.jpg

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