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使用 CoFeO 改性蒙脱石粘土和金属-有机骨架增强氟化物去除。

Enhanced fluoride removal using montmorillonite clay modified with CoFeO and metal-organic frameworks.

机构信息

Chongqing Industry Polytechnic College, Chongqing, 401120, China.

出版信息

Environ Res. 2024 Oct 1;258:119389. doi: 10.1016/j.envres.2024.119389. Epub 2024 Jun 13.

DOI:10.1016/j.envres.2024.119389
PMID:38879110
Abstract

The use of modified clays can play an effective role as an effective adsorbent in removing fluoride (Flu) ions from water and aqueous solutions. In the present research, montmorillonite clay (MMt) was modified using CoFeO magnetic particles and Al-Fe fumarate metal-organic framework (Al-Fe Fum) and was utilized as an efficient adsorbent for removing Flu from aqueous solution. The properties of MMt and MMt/CoFeO/Al-Fe Fum samples were investigated using different techniques. The results showed that with the modification of MMt using CoFeO magnetic particles and the metal-organic framework of Al-Fe Fum, the BET surface has increased notably from 13.217 to 365.80 m/g. To investigate the effect of independent variables and their interaction on the efficiency of the Flu adsorption, response surface method-central compound design (RSM-CCD) was served. Based on the results of ANOVA, the F-value and p-value parameters for the desired model were determined to be 783.09 and < 0.0001, respectively, which confirms the success and high ability of the model. The number of R, adjusted R, and Predicted R for adsorption of Flu ion was determined to be 0.998, 0.997, and 0.995, respectively, which shows that the proposed regression model can describe the process of adsorption and interaction between variables well. Compared to other kinetic models, the pseudo 2nd order kinetic model has a greater ability to describe the Flu adsorption behavior. The R parameter value determined that the Freundlich isotherm model has a suitable ability to investigate the isotherm behavior and confirms the effect of heterogeneous surfaces in the process. Generally, the outcomes signified that the MMt and MMt/CoFeO/Al-Fe Fum samples can be reused several times in the process of Flu adsorption, while the efficiency is more than 90%.

摘要

改性粘土可作为有效吸附剂,在去除水中和水溶液中的氟离子(Flu)方面发挥有效作用。在本研究中,蒙脱土(MMt)用 CoFeO 磁性粒子和 Al-Fe 富马酸盐金属有机骨架(Al-Fe Fum)进行改性,并用作从水溶液中去除 Flu 的有效吸附剂。使用不同技术研究了 MMt 和 MMt/CoFeO/Al-Fe Fum 样品的性质。结果表明,通过 CoFeO 磁性粒子和 Al-Fe Fum 金属有机骨架对 MMt 进行改性,BET 表面从 13.217 显著增加到 365.80 m/g。为了研究独立变量及其相互作用对 Flu 吸附效率的影响,采用响应面法-中心复合设计(RSM-CCD)。根据方差分析的结果,确定所需模型的 F 值和 p 值参数分别为 783.09 和<0.0001,这证明了模型的成功和高能力。Flu 离子吸附的 R、调整 R 和预测 R 的数量分别确定为 0.998、0.997 和 0.995,这表明所提出的回归模型可以很好地描述吸附过程和变量之间的相互作用。与其他动力学模型相比,拟二级动力学模型更能描述 Flu 吸附行为。R 参数值确定了 Freundlich 等温线模型具有合适的能力来研究等温线行为,并证实了在该过程中异质表面的作用。总体而言,结果表明,在 Flu 吸附过程中,MMt 和 MMt/CoFeO/Al-Fe Fum 样品可以重复使用多次,效率超过 90%。

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