Nawaz Hassan, Ibrahim Muhammad, Mahmood Abid, Kotchey Gregg P, Sanchez David V P
Department of Environmental Sciences, Government College University Faisalabad, Pakistan.
Department of Civil and Environmental Engineering, Swanson School of Engineering, University of Pittsburgh, Pittsburgh, PA, 15261, United States.
Heliyon. 2023 Oct 30;9(11):e21572. doi: 10.1016/j.heliyon.2023.e21572. eCollection 2023 Nov.
Addressing serious waterborne arsenic issues, for the first time, lanthanum-doped MOF-808 (La@MOF-808) has been developed to remove total arsenic (Total As) and arsenite [As(III)] from water. This study involves the solvothermal synthesis of La@MOF-808, its characterization via FTIR, XRD, TGA, and SEM, in which distinct physicochemical attributes were identified, and the adsorption capacity of arsenic ions. The saturated adsorption capacity of La@MOF-808 for Total As and As(III) reached 282.9 mg g and 283.5 mg g, as compared to 229.7 mg g and 239.1 mg g for pristine MOF-808, respectively. XRD and ATR-FTIR analyses underscored the central roles of electrostatic interactions and hydroxyl groups in the pollutant adsorption process. The impact of temperature, concentration, pH, and exposure duration times on adsorption performance was thoroughly investigated. The Langmuir model showed the maximum adsorption capacities (q) of La@MOF-808 was 307.7 mg g for Total As and 325.7 mg g for As(III), surpassing those of MOF-808 adsorbent, which suggests that monolayer adsorption occurred. Optimal adsorption was observed in a pH range of 2.0-7.0, and thermodynamic studies classified the process as spontaneous and endothermic. The adsorbent retains high capacity across repeated cycles, outperforming many standard adsorbents. Lanthanum doping markedly enhances MOF-808's arsenic removal, underscoring its potential for water treatment.
为了解决严重的水传播砷问题,首次开发了镧掺杂的MOF-808(La@MOF-808)以从水中去除总砷(Total As)和亚砷酸盐[As(III)]。本研究涉及La@MOF-808的溶剂热合成、通过FTIR、XRD、TGA和SEM对其进行表征,确定了其独特的物理化学属性,以及砷离子的吸附容量。La@MOF-808对总砷和As(III)的饱和吸附容量分别达到282.9 mg/g和283.5 mg/g,而原始MOF-808分别为229.7 mg/g和239.1 mg/g。XRD和ATR-FTIR分析强调了静电相互作用和羟基在污染物吸附过程中的核心作用。深入研究了温度、浓度、pH值和暴露持续时间对吸附性能的影响。Langmuir模型显示,La@MOF-808对总砷的最大吸附容量(q)为307.7 mg/g,对As(III)为325.7 mg/g,超过了MOF-808吸附剂,这表明发生了单层吸附。在pH值为2.0-7.0的范围内观察到最佳吸附,热力学研究将该过程分类为自发和吸热过程。该吸附剂在重复循环中保持高容量,优于许多标准吸附剂。镧掺杂显著提高了MOF-808的除砷能力,突出了其在水处理中的潜力。