The model and mechanism of adsorptive technologies for wastewater containing fluoride: A review

吸附 弗伦德利希方程 氟化物 废水 离子交换 朗缪尔吸附模型 朗缪尔 过程(计算) 材料科学 工艺工程 化学 化学工程 生化工程 计算机科学 无机化学 环境科学 环境工程 离子 有机化学 工程类 操作系统
作者
Zhen Zeng,Qian Li,Jia Yan,Lei Huang,Samuel Raj Babu Arulmani,Hongguo Zhang,Shaojian Xie,Wenghong Sio
出处
期刊:Chemosphere [Elsevier BV]
卷期号:340: 139808-139808 被引量:62
标识
DOI:10.1016/j.chemosphere.2023.139808
摘要

With the continuous development of society, industrialization, and human activities have been producing more and more pollutants. Fluoride discharge is one of the main causes of water pollution. This review summarizes various commonly used and effective fluoride removal technologies, including ion exchange technology, electrochemical technology, coagulation technology, membrane treatment, and adsorption technology, and points out the outstanding advantages of adsorption technology. Various commonly used fluoride removal techniques as well as typical adsorbent materials have been discussed in published papers, however, the relationship between different adsorbent materials and adsorption models has rarely been explored, therefore, this paper categorizes and summarizes the various models involved in static adsorption, dynamic adsorption, and electrosorption fluoride removal processes, such as pseudo-first-order and pseudo-second-order kinetic models, Langmuir and Freundlich isotherm models, Thomas and Clark dynamic adsorption models, including the mathematical equations of the corresponding models and the significance of the models are also comprehensively summarized. Furthermore, this comprehensive discussion delves into the fundamental adsorption mechanisms, quantification of maximum adsorption capacity, evaluation of resistance to anion interference, and assessment of adsorption regeneration performance exhibited by diverse adsorption materials. The selection of the best adsorption model not only predicts the adsorption performance of the adsorbent but also provides a better description and understanding of the details of each part of the adsorption process, which facilitates the adjustment of experimental conditions to optimize the adsorption process. This review may provide some guidance for the development of more cost-effective adsorbent materials and adsorption processes in the future.
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