Adsorption of fluoride to UiO-66-NH2 in water: Stability, kinetic, isotherm and thermodynamic studies

被引:270
|
作者
Lin, Kun-Yi Andrew [1 ]
Liu, Yu-Ting [2 ]
Chen, Shen-Yi [1 ]
机构
[1] Natl Chung Hsing Univ, Dept Environm Engn, Taichung 40227, Taiwan
[2] Natl Chung Hsing Univ, Dept Soil & Environm Sci, Taichung 40227, Taiwan
关键词
Metal organic frameworks; Fluoride; UiO-66-NH2; X-ray adsorption; METAL-ORGANIC FRAMEWORKS; DRINKING-WATER; NEUTRAL RED; REMOVAL; DEFLUORIDATION; PRECIPITATION;
D O I
10.1016/j.jcis.2015.08.061
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
To provide safe drinking water, fluoride in water must be removed and adsorption processes appear to be the most widely used method. Metal organic frameworks (MOFs) represent a new class of adsorbents that have been used in various adsorption applications. To study the adsorption mechanism of fluoride to MOFs in water and obtain related adsorption parameters, we synthesized a zirconium-based MOF with a primary amine group on its ligand, named UiO-66-NH2. The kinetics, adsorption isotherm and thermodynamics of fluoride adsorption to UiO-66-NH2 were investigated. The crystalline structure of UiO-66NH(2) remained intact and the local structure of zirconium in UiO-66-NH2 did not change significantly after being exposed to fluoride. The kinetics of the fluoride adsorption in UiO-66-NH2 could be well represented by the pseudo second order rate law. The enthalpy of the adsorption indicates that the F- adsorption to UiO-66-NH2 was classified as a physical adsorption. However, the comparison between the adsorption capacities of UiO-66-NH2 and UiO-66 suggests that the fluoride adsorption to UiO-66-NH2 might primarily involve a strong interaction between F- and the metal site. The fluoride adsorption capacity of UiO-66-NH2 was found to decrease when pH > 7. While the presence of chloride/bromide ions did not noticeably change the adsorption capacity of UiO-66-NH2, the ionic surfactants slightly affected the adsorption capacity of UiO-66-NH2. These findings provide insights to further optimize the adsorption process for removal of fluoride using zirconium-based MOFs. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:79 / 87
页数:9
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