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含氟废水吸附技术的模型和机理:综述。

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

机构信息

School of Environmental Science and Engineering, Guangzhou University, Guangzhou, 510006, China.

School of Environmental Science and Engineering, Guangzhou University, Guangzhou, 510006, China.

出版信息

Chemosphere. 2023 Nov;340:139808. doi: 10.1016/j.chemosphere.2023.139808. Epub 2023 Aug 15.

Abstract

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.

摘要

随着社会的不断发展,工业化和人类活动产生的污染物越来越多。氟化物排放是水污染的主要原因之一。本综述总结了各种常用且有效的除氟技术,包括离子交换技术、电化学技术、混凝技术、膜处理和吸附技术,并指出了吸附技术的突出优势。已在已发表的论文中讨论了各种常用的除氟技术以及典型的吸附剂材料,但很少探讨不同吸附剂材料与吸附模型之间的关系,因此,本文对静态吸附、动态吸附和电吸附除氟过程中涉及的各种模型进行了分类和总结,如伪一级和伪二级动力学模型、Langmuir 和 Freundlich 等温吸附模型、Thomas 和 Clark 动态吸附模型,包括相应模型的数学方程式和模型的意义也进行了全面总结。此外,本文还深入探讨了各种吸附材料的基本吸附机理、最大吸附容量的定量、阴离子干扰阻力的评估以及吸附再生性能的评估。选择最佳的吸附模型不仅可以预测吸附剂的吸附性能,还可以更好地描述和理解吸附过程的各个部分的细节,从而便于调整实验条件以优化吸附过程。本文的综述可能为未来开发更具成本效益的吸附剂材料和吸附工艺提供一些指导。

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