Huang Yangbo, Guan Zeyu, Li Qiang, Li Qian, Xia Dongsheng
School of Environmental Engineering, Wuhan Textile University Wuhan Hubei 430073 China
Engineering Research Center for Clean Production of Textile Dyeing and Printing, Ministry of Education, Wuhan Textile University Wuhan Hubei 430073 China.
RSC Adv. 2023 Jun 12;13(25):17436-17448. doi: 10.1039/d3ra01291c. eCollection 2023 Jun 5.
Catalytic ceramic membranes (CMs) integrated with different metal oxides were designed and fabricated by an impregnation-sintering method. The characterization results indicated that the metal oxides (CoO, MnO, FeO and CuO) were uniformly anchored around the AlO particles of the membrane basal materials, which could provide a large number of active sites throughout the membrane for the activation of peroxymonosulfate (PMS). The performance of the CMs/PMS system was evaluated by filtrating a phenol solution under different operating conditions. All the four catalytic CMs showed desirable phenol removal efficiency and the performance was in order of CoCM, MnCM, FeCM and CuCM. Moreover, the low metal ion leaching and high catalytic activity even after the 6th run revealed the good stability and reusability of the catalytic CMs. Quenching experiments and electron paramagnetic resonance (EPR) measurements were conducted to discuss the mechanism of PMS activation in the CMs/PMS system. The reactive oxygen species (ROS) were supposed to be SO˙ and O in the CoCM/PMS system, O and O˙ in the MnCM/PMS system, SO˙ and ·OH in the FeCM/PMS system, and SO˙ in the CuCM/PMS system, respectively. The comparative study on the performance and mechanism of the four CMs provides a better understanding of the integrated PMS-CMs behaviors.
采用浸渍烧结法设计并制备了负载不同金属氧化物的催化陶瓷膜(CMs)。表征结果表明,金属氧化物(CoO、MnO、FeO和CuO)均匀地锚定在膜基材料的AlO颗粒周围,这可以在整个膜中提供大量的活性位点用于活化过一硫酸盐(PMS)。通过在不同操作条件下过滤苯酚溶液来评估CMs/PMS体系的性能。所有四种催化CMs均表现出理想的苯酚去除效率,性能顺序为CoCM、MnCM、FeCM和CuCM。此外,即使在第6次运行后,金属离子的低浸出率和高催化活性也表明了催化CMs具有良好的稳定性和可重复使用性。进行了猝灭实验和电子顺磁共振(EPR)测量,以探讨CMs/PMS体系中PMS的活化机理。在CoCM/PMS体系中,活性氧物种(ROS)推测为SO˙和O,在MnCM/PMS体系中为O和O˙,在FeCM/PMS体系中为SO˙和·OH,在CuCM/PMS体系中为SO˙。对四种CMs的性能和机理进行比较研究,有助于更好地理解PMS-CMs的综合行为。