Du Xiaosen, Liu Jin, Liu Qing, Li Guiju, Jiang Yongqing, Zhang Yaxin
College of Marine and Environmental Sciences, Tianjin University of Science & Technology, Tianjin, 300457, People's Republic of China.
Key Laboratory of Marine Resource Chemistry and Food Technology (TUST), Ministry of Education, Tianjin, 300457, People's Republic of China.
Environ Sci Pollut Res Int. 2023 Apr;30(16):46574-46586. doi: 10.1007/s11356-023-25477-9. Epub 2023 Jan 31.
Micro-electrolysis is a pretreatment technology for difficult-to-biodegrade wastewater. In this study, a chemical displacement method was used to load copper on the surface of sponge iron (s-Fe), and then it was mixed with activated carbon and other components to obtain a multi-element micro-electrolytic filler (OMEF). Through BET, SEM, XRD, XPS, and FT-IR characterization and analysis, OMEF was proved to have a specific surface area of 88.374 m/g, C-C, C-O, C = O, O-C = O, and other functional groups and FeC, MnO and other active materials. The removal mechanism of organic pollutants in wastewater by OMEF could be due to the galvanic reaction, direct reduction of Fe, oxidation of Fe, catalytic oxidation of Cu and Mn, and co-precipitation of adsorption. The coupling of the micro-electrolysis and biological methods proved that OMEF had excellent application efficiency. The results indicated that the COD removal rates of OMEF and commercial fillers reached 88.39% and 48.02%, respectively, and the B/C reached 0.74 and 0.3. OMEF showed a better performance. The reusability of the OMEF filler was measured to ensure that the B/C was maintained at around 0.5 during 5 cycles. Kinetic analysis showed that the degradation data of methyl orange (MO) and the removal data of COD obeyed pseudo-second-order kinetics. Moreover, it can further broaden the pH range of treated wastewater and increase the oxidation rate. This new strategy has brought potential enlightenment for the development of high-efficiency wastewater pretreatment using new micro-electrolysis materials. The excellent performance of OMEF micro-electrolytic filler in pretreatment indicated its potential for industrial application.
微电解是一种针对难生物降解废水的预处理技术。在本研究中,采用化学置换法将铜负载在海绵铁(s-Fe)表面,然后与活性炭等组分混合,得到一种多元素微电解填料(OMEF)。通过BET、SEM、XRD、XPS和FT-IR表征与分析,证明OMEF具有88.374 m²/g的比表面积、C-C、C-O、C=O、O-C=O等官能团以及FeC、MnO等活性物质。OMEF对废水中有机污染物的去除机制可能归因于电化学反应、Fe的直接还原、Fe的氧化、Cu和Mn的催化氧化以及吸附共沉淀。微电解与生物方法的耦合证明OMEF具有优异的应用效果。结果表明,OMEF和商业填料的COD去除率分别达到88.39%和48.02%,B/C分别达到0.74和0.3。OMEF表现出更好的性能。对OMEF填料的可重复使用性进行了测定,以确保在5个循环中B/C保持在0.5左右。动力学分析表明,甲基橙(MO)的降解数据和COD的去除数据符合准二级动力学。此外,它可以进一步拓宽处理废水的pH范围并提高氧化速率。这种新策略为使用新型微电解材料开发高效废水预处理带来了潜在的启示。OMEF微电解填料在预处理中的优异性能表明了其工业应用潜力。