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基于碳纳米管的纳米复合材料在环境修复中的应用:类型与应用概述及其矛盾的双面效应分析

Carbon-Nanotube-Based Nanocomposites in Environmental Remediation: An Overview of Typologies and Applications and an Analysis of Their Paradoxical Double-Sided Effects.

作者信息

Alfei Silvana, Zuccari Guendalina

机构信息

Department of Pharmacy (DIFAR), University of Genoa, Viale Cembrano, 4, 16148 Genoa, Italy.

Laboratory of Experimental Therapies in Oncology, IRCCS Istituto Giannina Gaslini, Via G. Gaslini 5, 16147 Genoa, Italy.

出版信息

J Xenobiot. 2025 May 21;15(3):76. doi: 10.3390/jox15030076.

Abstract

Incessant urbanization and industrialization have resulted in several pollutants being increasingly produced and continuously discharged into the environment, altering its equilibrium, with a high risk for living organisms' health. To restore it, new advanced materials for remediating gas streams, polluted soil, water, wastewater, groundwater and industrial waste are continually explored. Carbon-based nanomaterials (CNMs), including quantum dots, nanotubes, fullerenes and graphene, have displayed outstanding effectiveness in the decontamination of the environment by several processes. Carbon nanotubes (CNTs), due to their nonpareil characteristics and architecture, when included in absorbents, filter membranes, gas sensors, etc., have significantly improved the efficiency of these technologies in detecting and/or removing inorganic, organic and gaseous xenobiotics and pathogens from air, soil and aqueous matrices. Moreover, CNT-based membranes have displayed significant potential for efficient, fast and low-energy water desalination. However, despite CNTs serving as very potent instruments for environmental detoxification, their extensive utilization could, paradoxically, be highly noxious to the environment and, therefore, humans, due to their toxicity. The functionalization of CNTs (F-CNTs), in addition to further enhancing their absorption capacity and selectivity, has increased their hydrophilicity, thus minimizing their toxicity and carcinogenic effects. In this scenario, this review aims to provide evidence of both the enormous potential of CNTs in sustainable environmental remediation and the concerning hazards to the environment and living organisms that could derive from their extensive and uncontrolled utilization. To this end, an introduction to CNTs, including their eco-friendly production from biomass, is first reported. Several literature reports on CNTs' possible utilization for environmental remediation, their potential toxicity due to environmental accumulation and the challenges of their regeneration are provided using several reader-friendly tools, to better capture readers' attention and make reading easier.

摘要

持续的城市化和工业化导致多种污染物不断产生并持续排放到环境中,改变了环境的平衡,对生物体健康构成了高风险。为了恢复环境平衡,人们不断探索用于修复气流、污染土壤、水、废水、地下水和工业废物的新型先进材料。碳基纳米材料(CNMs),包括量子点、纳米管、富勒烯和石墨烯,已通过多种工艺在环境净化方面展现出卓越的效果。碳纳米管(CNTs)因其无与伦比的特性和结构,当被纳入吸收剂、滤膜、气体传感器等中时,显著提高了这些技术从空气、土壤和水相基质中检测和/或去除无机、有机和气态外源性物质及病原体的效率。此外,基于碳纳米管的膜在高效、快速和低能耗海水淡化方面显示出巨大潜力。然而,尽管碳纳米管是环境解毒的有力工具,但矛盾的是,由于其毒性,它们的广泛使用可能对环境以及人类造成极大危害。碳纳米管的功能化(F-CNTs)除了进一步提高其吸附能力和选择性外,还增加了其亲水性,从而将其毒性和致癌作用降至最低。在这种情况下,本综述旨在提供证据,证明碳纳米管在可持续环境修复方面的巨大潜力,以及其广泛且无节制使用可能对环境和生物体造成的相关危害。为此,首先介绍了碳纳米管,包括其从生物质中绿色生产的方法。使用多种便于读者理解的工具,提供了几篇关于碳纳米管在环境修复方面可能的应用、由于环境积累导致的潜在毒性以及其再生挑战的文献报告,以便更好地吸引读者的注意力并使阅读更轻松。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8966/12101166/efdb54b01cb1/jox-15-00076-g001.jpg

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