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利用混合 MOF 双金属 Fe/Ni 纳米粒子吸附和类芬顿氧化废水中的氧氟沙星。

Adsorption and fenton-like oxidation of ofloxacin in wastewater using hybrid MOF bimetallic Fe/Ni nanoparticles.

机构信息

Fujian Key Laboratory of Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Fujian Normal University, Fuzhou, 350007, Fujian Province, China.

Environmental Contaminants Group, Future Industries Institute, University of South Australian, Mawson Lakes, SA, 5095, Australia.

出版信息

Chemosphere. 2022 Nov;307(Pt 2):135936. doi: 10.1016/j.chemosphere.2022.135936. Epub 2022 Aug 5.

Abstract

Since ofloxacin (OFX) is one of many common antibiotics, which effluxes into aquatic environment in relatively high concentration, it has become of significant environmental concern due to the potential for increased antibiotic resistance. In this study, an innovative functional Fe/Ni@ZIF-8 composite was successfully used for the Fenton-like oxidation of OFX, with a OFX removal efficiency >98% under optimal conditions. FTIR analysis confirmed that OFX removal occurred via adsorption to Fe/Ni@ZIF-8 by a combination of π-π bond intercalation and electrostatic interaction, while XPS revealed that the Fe/Ni NPs in Fe/Ni@ZIF-8 were also involved in oxidation. Furthermore, LC-MS analysis identified the presence of several OFX degradation products post exposure, which indicted that Fe/Ni NPs in Fe/Ni@ZIF-8 reacted with HO to form •OH, leading to Fenton-like oxidation of OFX. Thus overall, OFX removal by Fe/Ni@ZIF-8 involved both adsorption to ZIF-8 and Fenton-like oxidation by Fe/Ni NPs. A synergistic mechanism for OFX removal by Fe/Ni@ZIF-8 was thus proposed. The removal efficiency of the synthesized catalysts remained high (above 65%) even after a 5th reuse cycle, which reflected the high stability of Fe/Ni@ZIF-8. Overall, this study demonstrated that Fe/Ni@ZIF-8 had significant potential for the removal of OFX from wastewaters with a removal efficiency >90%.

摘要

由于氧氟沙星(OFX)是许多常见抗生素之一,且在相对较高的浓度下会流出到水生态环境中,因此由于抗生素耐药性增加的可能性,它已成为一个受到关注的重要环境问题。在这项研究中,成功地使用了一种创新的功能化 Fe/Ni@ZIF-8 复合材料用于 OFX 的类 Fenton 氧化,在最佳条件下 OFX 的去除效率>98%。FTIR 分析证实 OFX 的去除是通过π-π键插入和静电相互作用的组合吸附到 Fe/Ni@ZIF-8 上发生的,而 XPS 表明 Fe/Ni@ZIF-8 中的 Fe/Ni NPs 也参与了氧化。此外,LC-MS 分析表明暴露后存在几种 OFX 降解产物,这表明 Fe/Ni@ZIF-8 中的 Fe/Ni NPs 与 HO 反应形成•OH,导致 OFX 的类 Fenton 氧化。因此,总体而言,Fe/Ni@ZIF-8 对 OFX 的去除涉及到 ZIF-8 的吸附和 Fe/Ni NPs 的类 Fenton 氧化。因此,提出了一种 Fe/Ni@ZIF-8 去除 OFX 的协同机制。即使经过 5 次重复使用循环,合成催化剂的去除效率仍保持在 65%以上,这反映了 Fe/Ni@ZIF-8 的高稳定性。总体而言,这项研究表明 Fe/Ni@ZIF-8 具有从废水中去除 OFX 的巨大潜力,去除效率>90%。

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