碳纳米管基和活性炭基纳米复合材料去除水中氟化物和其他污染物的研究进展

Q3 Materials Science
Amanullakhan Pathan, R. Patel, C. P. Bhasin
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引用次数: 0

摘要

水是地球生态系统中最重要的组成部分,因为它是动植物生存的基础。然而,我们的供水持续受到污染。从水中去除污染物是解决水资源短缺和为所有人维持健康生态系统的关键部分。本文综述了碳纳米管/AC系列纳米吸附剂及其在去除氟化物和其他污染物方面的作用。废水处理方法有沉淀法、离子交换法、吸附法、膜过滤法等。由于吸附作用,高效、低成本、不需要昂贵基础设施的水处理技术是最优选的选择。近年来,碳族纳米材料由于其优异的表面性能、简单的定制、巨大的比表面积、结构类型的多种变化、化学稳定性、孔隙率、低密度、易于再生和可重复使用的能力而被广泛应用于吸附剂。有害污染物,如氟化物,对公众健康构成重大威胁。重金属污染的水污染是一个重大的健康问题,包括增加患癌症、贫血、致癌和儿童急性影响等疾病的机会。水中氟化物含量的增加可能导致氟中毒、关节疼痛、严重贫血和其他问题。以下综述侧重于利用碳纳米管和交流纳米颗粒消除有害污染物和氟化物的最新发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Evaluation of Carbon Nanotube-Based and Activated Carbon-Based Nanocomposites for Fluoride and other pollutant Removal from water: A Review
Water is the most critical component of the earth's ecosystem because it is fundamental to the survival of plants and animals. However, our water supply is continuously polluting. Removing contaminants from water is a crucial part of addressing water scarcity and maintaining a healthy ecosystem for all. This review focuses on adsorption and the CNTs/AC family nano adsorbents and their contribution to the removal of fluoride and other contaminants. Many types of wastewater treatment methods have been employed, including precipitation, ion-exchange, adsorption, membrane filtration, etc. A water technology with great efficiency and low cost, without requiring costly infrastructure, is the most preferred option due to adsorption. Recently, the application of carbon family nanomaterials as adsorbents has been prevalent due to their phenomenal surface properties, simple customization, immense specific surface area, numerous variations in structural type, chemical stability, porosity, low density, ease of regeneration, and the ability to be reused. Hazardous contaminants, such as fluoride, generate major public health risks. Water contamination by heavy metals provides a significant health concern, including an increased chance of getting diseases like cancer, anaemia, carcinogenic effects, and acute effects in children. The increased presence of fluoride in water could cause fluorosis, joint pain, severe anaemia, and other problems. The following review focuses on current findings regarding the utilisation of CNTs and AC nanoparticles in the elimination of harmful contaminants and fluoride.
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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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