Arab Negar, Derakhshani Reza, Sayadi Mohammad Hossein
Department of Environmental Engineering, Faculty of Natural Resources and Environment, University of Birjand, Birjand 9717434765, Iran.
Department of Geology, Shahid Bahonar University of Kerman, Kerman 7616913439, Iran.
Toxics. 2024 Apr 23;12(5):306. doi: 10.3390/toxics12050306.
Contamination of groundwater with fluoride represents a significant global issue, with high concentrations posing serious public health threats. While fluoride is a critical element in water, excessive levels can be detrimental to human health and potentially life-threatening. Addressing the challenge of removing fluoride from underground water sources via nanotechnological approaches is a pressing concern in environmental science. To collate relevant information, extensive literature searches were conducted across multiple databases, including Google Scholar, PubMed, Scopus, Web of Science, the American Chemical Society, Elsevier, Springer, and the Royal Society of Chemistry. VOS Viewer software version 1.6.20 was employed for a systematic review. This article delivers an exhaustive evaluation of various groundwater fluoride removal techniques, such as adsorption, membrane filtration, electrocoagulation, photocatalysis, and ion exchange. Among these, the application of nanoparticles emerges as a notable method. The article delves into nano-compounds, optimizing conditions for the fluoride removal process and benchmarking their efficacy against other techniques. Studies demonstrate that advanced nanotechnologies-owing to their rapid reaction times and potent oxidation capabilities-can remove fluoride effectively. The implementation of nanotechnologies in fluoride removal not only enhances water quality but also contributes to the safeguarding of human health.
地下水中的氟污染是一个重大的全球性问题,高浓度的氟会对公众健康构成严重威胁。虽然氟是水中的一种关键元素,但过量的氟会对人体健康有害,甚至可能危及生命。通过纳米技术方法解决从地下水源中去除氟的挑战是环境科学中一个紧迫的问题。为了整理相关信息,我们在多个数据库中进行了广泛的文献检索,包括谷歌学术、PubMed、Scopus、科学网、美国化学学会、爱思唯尔、施普林格和皇家化学学会。我们使用VOS Viewer软件1.6.20版本进行系统综述。本文对各种地下水除氟技术进行了详尽的评估,如吸附、膜过滤、电凝聚、光催化和离子交换。其中,纳米颗粒的应用是一种值得注意的方法。本文深入探讨了纳米化合物,优化了氟去除过程的条件,并将其功效与其他技术进行了比较。研究表明,先进的纳米技术因其快速的反应时间和强大的氧化能力,可以有效地去除氟。纳米技术在氟去除中的应用不仅提高了水质,也有助于保障人类健康。