School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China.
Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou 510006, China.
Int J Environ Res Public Health. 2022 Sep 1;19(17):10897. doi: 10.3390/ijerph191710897.
Efficient removal of arsenic in wastewater is of fundamental importance due to the increasingly severe arsenic pollution. In this study, a new composite adsorbent (FeO@ZIF-8) for As(V) removal from wastewater was synthesized by encapsulating magnetic FeO nanoparticles into metal organic frameworks. In order to evaluate the feasibility of FeO@ZIF-8 as an adsorbent for As(V) removal, the adsorption properties of FeO@ZIF-8 were systematically explored by studying the effects of dosage, pH, adsorption isotherm, kinetics, and thermodynamics. Additionally, the characterization of FeO@ZIF-8 before and after adsorption was analyzed thoroughly using various tests including SEM-EDS, XPS, BET, XRD, TG, FTIR, and the properties and arsenic removal mechanism of the FeO@ZIF-8 were further studied. The results showed that the FeO@ZIF-8 has a specific surface area of 316 m/g and has excellent adsorption performance. At 25 °C, the initial concentration of arsenic was 46.916 mg/L, and pH 3 was the optimum condition for the FeO@ZIF-8 to adsorb arsenic. When the dosage of the FeO@ZIF-8 was 0.60 g/L, the adsorption of arsenic by the FeO@ZIF-8 can reach 76 mg/g, and the removal rate can reach 97.20%. The adsorption process of arsenic to the FeO@ZIF-8 can be well described by the Langmuir isotherm model and the second-order kinetic equation. At pH 3 and temperature 298 K, the maximum adsorption capacity of arsenic by the FeO@ZIF-8 was 116.114 mg/g. Through the analysis of thermodynamic parameters, it is proved that the adsorption process of arsenic by the FeO@ZIF-8 is a spontaneous endothermic reaction. The FeO@ZIF-8 has broad prospects for removing As(V) pollution in wastewater, because of its strong adsorption capacity, good water stability, and easy preparation.
由于砷污染日益严重,高效去除废水中的砷至关重要。本研究通过将磁性 FeO 纳米粒子封装到金属有机骨架中,合成了一种新型的用于从废水中去除 As(V)的复合吸附剂(FeO@ZIF-8)。为了评估 FeO@ZIF-8 作为去除 As(V)的吸附剂的可行性,通过研究剂量、pH 值、吸附等温线、动力学和热力学的影响,系统地探索了 FeO@ZIF-8 的吸附性能。此外,还通过 SEM-EDS、XPS、BET、XRD、TG、FTIR 等多种测试对吸附前后的 FeO@ZIF-8 进行了深入分析,并进一步研究了 FeO@ZIF-8 的性质和砷去除机理。结果表明,FeO@ZIF-8 的比表面积为 316 m/g,具有优异的吸附性能。在 25°C 下,砷的初始浓度为 46.916mg/L,pH 为 3 时是 FeO@ZIF-8 吸附砷的最佳条件。当 FeO@ZIF-8 的用量为 0.60g/L 时,FeO@ZIF-8 对砷的吸附量可达 76mg/g,去除率可达 97.20%。砷在 FeO@ZIF-8 上的吸附过程可以很好地用 Langmuir 等温模型和二级动力学方程来描述。在 pH 为 3、温度为 298K 时,FeO@ZIF-8 对砷的最大吸附容量为 116.114mg/g。通过热力学参数分析,证明了砷在 FeO@ZIF-8 上的吸附过程是一个自发的吸热反应。FeO@ZIF-8 具有去除废水中 As(V)污染的广阔前景,因为它具有较强的吸附能力、良好的水稳定性和易于制备。