吸附
单层
化学工程
比表面积
复合数
吸热过程
三元运算
纳米复合材料
溶剂热合成
材料科学
选择性
介孔材料
放热反应
朗缪尔
纳米颗粒
朗缪尔吸附模型
多孔性
化学
磁性纳米粒子
核化学
土霉素
中心组合设计
等温过程
多孔介质
三元数制
色谱法
纳米材料
响应面法
有机化学
废水
作者
Vu Pham,Van‐Dat Doan,Teh C. Ho,Van Cuong Nguyen
出处
期刊:ACS omega
[American Chemical Society]
日期:2025-09-10
卷期号:10 (37): 42791-42805
被引量:1
标识
DOI:10.1021/acsomega.5c05119
摘要
This study reports the design and solvothermal synthesis of a novel ternary nanocomposite named UiO-66/Fe3O4@CNCs. The material was developed for the selective adsorption and magnetic recovery of oxytetracycline (OTC) from water. The composite combines three functional components. CNCs derived from Neptunia oleracea serve as a fibrous scaffold. Fe3O4 nanoparticles provide magnetic separation, while UiO-66 contributes high surface area and active binding sites as a porous MOF. The Fe3O4@CNCs hybrid was prefunctionalized with mercaptoacetic acid to enhance interfacial interactions and promote uniform UiO-66 crystallization, yielding a well-defined core-shell porous architecture. The resulting UiO-66/Fe3O4@CNCs composite exhibited a high specific surface area (360.68 ± 1.82 m2/g), mesoporous structure (2-14 nm), and excellent magnetic responsiveness. Under optimized conditions (pH 6, 303 K), the composite demonstrated a maximum OTC adsorption capacity of 48.55 mg/g. Kinetic analysis followed a pseudo-second-order model, confirming chemisorption. Langmuir isotherm fitting (R 2 = 0.9932) indicated a monolayer capacity of 110.13 mg/g, with uniform and high-affinity sites. Thermodynamic parameters (ΔG < 0, ΔH = -62.32 kJ/mol, ΔS = -168.06 J/mol·K) confirmed the spontaneous and exothermic nature of the process. The composite also showed high selectivity for OTC compared to other antibiotics. It retained good adsorption performance after several reuse cycles. These findings highlight the potential of UiO-66/Fe3O4@CNCs as a sustainable, efficient, and recyclable adsorbent platform for emerging contaminant removal in wastewater treatment.
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