Key Laboratory of Beijing on Regional Air Pollution Control, Department of Environmental Science, Beijing University of Technology, Beijing 100124, China.
Department of Chemistry and Chemical Engineering, Beijing University of Technology, Beijing 100124, China.
J Hazard Mater. 2022 Feb 5;423(Pt B):127181. doi: 10.1016/j.jhazmat.2021.127181. Epub 2021 Sep 12.
As anthropogenic antibiotics, quinolones, e.g., ofloxacin have adverse impacts on ecological systems and human heaths. The removal of quinolones is of great importance, and adsorption techniques have been widely used to remove this hazardous contaminant. However, a robust and easy-operating adsorbent is still emergently required due to the complex chemical structure of quinolones. In this study, we successfully synthesized the promising metallic carbons (MCs) containing carbon nanotubes and cobalt nanoparticles by carbonizing Zn/Co-ZIF at 900 °C. Three different molar ratios of Co and Zn were applied to optimize the adsorption capacity on ofloxacin (OFL). Results showed MC with molar ratio of Co and Zn at 3:1 (Co-CNT/NPC) achieved the maximal adsorption capacity to 118.3 mg g. Its adsorption performance was satisfied in the pH range from 5 to 9 and ionic strengths at 0.01 M. The main mechanisms for these adsorptions were identified as electrostatic attraction, metal coordination and π-π EDA. Removal efficiencies of quinolones higher than 68 mg g indicated the strong feasibility of this adsorbent for wastewater treatments. The regeneration of Co-CNT/NPC at 600 °C allowed its at least 4-time reusability and its magnetic property enabled external magnets to recycle it from real environments.
作为人为抗生素,喹诺酮类药物(例如氧氟沙星)会对生态系统和人类健康产生不良影响。去除喹诺酮类药物非常重要,吸附技术已被广泛用于去除这种危险污染物。然而,由于喹诺酮类药物的复杂化学结构,仍然迫切需要一种坚固且易于操作的吸附剂。在这项研究中,我们通过在 900°C 下碳化 Zn/Co-ZIF 成功合成了含有碳纳米管和钴纳米粒子的有前途的金属碳(MC)。应用三种不同的 Co 和 Zn 摩尔比来优化对氧氟沙星(OFL)的吸附能力。结果表明,Co 和 Zn 的摩尔比为 3:1(Co-CNT/NPC)的 MC 达到了 118.3mg/g 的最大吸附容量。其吸附性能在 pH 值为 5 至 9 和离子强度为 0.01 M 的范围内令人满意。这些吸附的主要机制被确定为静电吸引、金属配位和 π-π EDA。喹诺酮类药物的去除效率高于 68mg/g 表明这种吸附剂对于废水处理具有很强的可行性。在 600°C 下再生 Co-CNT/NPC 允许其至少重复使用 4 次,并且其磁性使得可以使用外部磁铁从实际环境中回收它。