Sirjan School of Medical Sciences, Sirjan, Iran.
Student Research Committee, Sirjan School of Medical Sciences, Sirjan, Iran.
Sci Rep. 2022 Nov 8;12(1):18990. doi: 10.1038/s41598-022-21551-3.
In the present study, the magnetic NH-MIL-101(Al)/chitosan nanocomposite (MIL/Cs@FeO NCs) was synthesized and used in the removal of azithromycin (AZT) from an aqueous solution for the first time. The as-synthesized MIL/Cs@FeO NCs was characterized by SEM, TEM, XRD, FTIR, BET, and VSM techniques. The effect of various key factors in the AZT adsorption process was modeled and optimized using response surface methodology based on central composite design (RSM-CCD). The low value of p-value (1.3101e-06) and RSD (1.873) parameters, along with the coefficient of determination > 0.997 implied that the developed model was well fitted with experimental data. Under the optimized conditions, including pH: 7.992, adsorbent dose: 0.279 g/L, time: 64.256 min and AZT concentration: 10.107 mg/L, removal efficiency and AZT adsorption capacity were obtained as 98.362 ± 3.24% and 238.553 mg/g, respectively. The fitting of data with the Langmuir isotherm (R: 0.998, X: 0.011) and Pseudo-second-order kinetics (R: 0.999, X: 0.013) showed that the adsorption process is monolayer and chemical in nature. ΔH° > 0, ΔS° > 0, and ∆G° < 0 indicated that AZT removal was spontaneous and endothermic in nature. The effect of Magnesium on AZT adsorption was more complicated than other background ions. Reuse of the adsorbent in 10 consecutive experiments showed that removal efficiency was reduced by about 30.24%. The performance of MIL/Cs@FeO NCs under real conditions was also tested and promising results were achieved, except in the treatment of AZT from raw wastewater.
在本研究中,首次合成了磁性 NH-MIL-101(Al)/壳聚糖纳米复合材料(MIL/Cs@FeO NCs),并将其用于从水溶液中去除阿奇霉素(AZT)。采用 SEM、TEM、XRD、FTIR、BET 和 VSM 技术对合成的 MIL/Cs@FeO NCs 进行了表征。利用基于中心复合设计(RSM-CCD)的响应面法对 AZT 吸附过程中的各种关键因素进行了建模和优化。低值的 p 值(1.3101e-06)和 RSD(1.873)参数,以及大于 0.997 的确定系数表明,所开发的模型与实验数据拟合良好。在优化条件下,包括 pH:7.992、吸附剂剂量:0.279 g/L、时间:64.256 min 和 AZT 浓度:10.107 mg/L,获得的去除效率和 AZT 吸附容量分别为 98.362 ± 3.24%和 238.553 mg/g。数据与 Langmuir 等温线(R:0.998,X:0.011)和拟二级动力学(R:0.999,X:0.013)的拟合表明,吸附过程是单层和化学性质的。ΔH°>0、ΔS°>0 和 ∆G°<0 表明 AZT 的去除是自发的和吸热的。镁对 AZT 吸附的影响比其他背景离子更为复杂。在 10 次连续实验中重复使用吸附剂,去除效率降低了约 30.24%。还测试了 MIL/Cs@FeO NCs 在实际条件下的性能,除了在处理原废水的 AZT 方面取得了有希望的结果外。