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使用 ZIF-67 衍生的 CoO/C 复合材料作为催化剂对诺氟沙星进行催化臭氧化。

Catalytic ozonation of norfloxacin using CoO/C composite derived from ZIF-67 as catalyst.

机构信息

Laboratory of Environmental Technology, INET, Tsinghua University, Beijing, 100084, China.

Laboratory of Environmental Technology, INET, Tsinghua University, Beijing, 100084, China; Dasheng Electron Accelerator Device Co., Ltd., China Guangdong Nuclear Group, Suzhou, Jiangsu, 215214, China.

出版信息

Chemosphere. 2021 Feb;265:129047. doi: 10.1016/j.chemosphere.2020.129047. Epub 2020 Nov 20.

Abstract

In this study, CoO-carbon composite was synthesized by calcined metal organic framework (MOF) ZIF-67 and used as efficient catalysts for ozonation of norfloxacin (NOF). The MOF-derived CoO-C composite remained similar polyhedrons structure of ZIF-67, suggesting that CoO was well-dispersed in CoO-C composite. Furthermore, a larger amount of surface carbon-oxygen functional groups were distributed on CoO-C composite, which resulted in the diversification of active sites for catalytic ozonation reaction. NOF degradation and mineralization could be effectively enhanced in CoO-C/O process. Moreover, NOF mineralization by catalytic ozonation strongly depended on the solution pH, while other operational conditions, such as O concentration and catalyst dosage had not obvious influence on it. CoO-C composite could significantly accelerate O decomposition to produce active free radicals (such as •OH), which enhanced the mineralization of NOF. The possible catalytic mechanism of CoO-C composite was proposed. Additionally, after five consecutive use of CoO-C composite in catalytic ozonation process, there was no obvious decrease in TOC removal efficiency, indicating a stable performance of CoO-C composite, which was suitable for the catalytic ozonation for wastewater treatment.

摘要

在这项研究中,通过煅烧金属有机骨架(MOF)ZIF-67 合成了 CoO-碳复合材料,并将其用作诺氟沙星(NOF)臭氧化的高效催化剂。MOF 衍生的 CoO-C 复合材料保持了 ZIF-67 的相似多面体结构,表明 CoO 在 CoO-C 复合材料中得到了很好的分散。此外,更多的表面碳氧官能团分布在 CoO-C 复合材料上,这导致了催化臭氧化反应的活性位点多样化。在 CoO-C/O 过程中,可以有效地增强 NOF 的降解和矿化。此外,催化臭氧化法对 NOF 的矿化强烈依赖于溶液 pH 值,而其他操作条件,如 O3 浓度和催化剂用量对其没有明显影响。CoO-C 复合材料可以显著加速 O3 的分解,产生活性自由基(如•OH),从而增强 NOF 的矿化。提出了 CoO-C 复合材料的可能催化机制。此外,在催化臭氧化过程中连续使用 CoO-C 复合材料五次后,TOC 去除效率没有明显下降,表明 CoO-C 复合材料具有稳定的性能,适用于催化臭氧化处理废水。

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