Characterization of an Iron-Copper Bimetallic Metal-Organic Framework for Adsorption of Methyl Orange in Aqueous Solution.

IF 2.3 3区 化学 Q3 CHEMISTRY, ANALYTICAL Journal of Analytical Methods in Chemistry Pub Date : 2023-01-01 DOI:10.1155/2023/9985984
Xiuzhen Yang, Changye Wang, Bin Zhou, Shuangchan Cheng
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Abstract

Iron-based organic frame material MIL-53 (Fe) was synthesized by the hydrothermal method with Cu2+ incorporated to obtain bimetallic composite MIL-53 (Fe, Cu). The structure and morphology of the material were characterized by SEM, XRD, BET, FTIR, XPS, and zeta potential. The adsorption performance of MIL-53 (Fe, Cu) on methyl orange was tested under a variety of conditions, including the effects of pH and material dosage, by the static adsorption test. The results show that under the condition of pH = 7, a temperature of 30°C, and an adsorbent dosage of 20 mg, the removal rate of MIL-53 (Fe, Cu) for methyl orange can reach more than 96% within 4 h, and the maximum adsorption capacity after fitting by the thermodynamic model can reach 294.43 mg/g, showing the excellent adsorption performance of MIL-53 (Fe, Cu) on methyl orange. In addition, by exploring the adsorption mechanism of MIL-53 (Fe, Cu) on methyl orange, it is found that the adsorption of MIL-53 (Fe, Cu) on methyl orange depends on chemical adsorption, as evidenced by combining Fe3+ and Cu2+ in the material with methyl orange molecules to form complexes to achieve adsorption. While the specific surface area of the material had no obvious effect on adsorption, the effects of pH, temperature, and concentration were explored. At a pH of 6.5, greater adsorption occurred at higher temperatures, as determined by thermodynamic model fitting, as well as with higher initial methyl orange molecule concentration.

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铁-铜双金属-有机骨架对甲基橙的吸附性能研究。
采用水热法合成铁基有机骨架材料MIL-53 (Fe),并加入Cu2+,得到双金属复合材料MIL-53 (Fe, Cu)。采用SEM、XRD、BET、FTIR、XPS和zeta电位对材料的结构和形貌进行了表征。通过静态吸附试验,考察了MIL-53 (Fe, Cu)在pH、材料用量等多种条件下对甲基橙的吸附性能。结果表明,在pH = 7、温度为30℃、吸附剂用量为20 mg的条件下,MIL-53 (Fe, Cu)对甲基橙的去除率在4 h内可达到96%以上,经热力学模型拟合后的最大吸附量可达294.43 mg/g,显示了MIL-53 (Fe, Cu)对甲基橙的优异吸附性能。此外,通过探索MIL-53 (Fe, Cu)在甲基橙上的吸附机理,发现MIL-53 (Fe, Cu)在甲基橙上的吸附依赖于化学吸附,通过将材料中的Fe3+和Cu2+与甲基橙分子结合形成配合物来实现吸附。材料的比表面积对吸附无明显影响,考察了pH、温度、浓度等因素对吸附的影响。根据热力学模型拟合,在pH为6.5时,温度越高,甲基橙初始分子浓度越高,吸附量越大。
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来源期刊
Journal of Analytical Methods in Chemistry
Journal of Analytical Methods in Chemistry CHEMISTRY, ANALYTICAL-ENGINEERING, CIVIL
CiteScore
4.80
自引率
3.80%
发文量
79
审稿时长
6-12 weeks
期刊介绍: Journal of Analytical Methods in Chemistry publishes papers reporting methods and instrumentation for chemical analysis, and their application to real-world problems. Articles may be either practical or theoretical. Subject areas include (but are by no means limited to): Separation Spectroscopy Mass spectrometry Chromatography Analytical Sample Preparation Electrochemical analysis Hyphenated techniques Data processing As well as original research, Journal of Analytical Methods in Chemistry also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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