Journal of Liaoning Petrochemical University
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Preparation of Nickel Ferrite Composite Oxide with Combustion and Its Photocatalytic Application

Li Xiuping, Yuan Zhe, Gong Xiaojie, Xia Baosen, Zhang Xuanrui, Zhao Rongxiang
Abstract628)      PDF (2963KB)(384)      

In this paper, ascorbic acid as combustion agent, composite oxides of nickel ferrite were prepared by combustion method. The optimal molar ratio of ferric nitrate to nickel nitrate was determined by XRD. The UV absorbance properties of composite were analyzed by UV spectra. The morphology of composites was characterized by scanning electron microscopy. The photocatalytic properties were studied using methylene blue as the degradation substrate and composite as catalyst. The experiment showed important effect of amount of catalyst, the pH value of the solution, the amount of hydrogen peroxide and irradiation time of the photocatalyst. The optimal photocatalytic condition is: dose of catalyst 20 mg, pH at 6, and hydrogen peroxide 6 mL. The results indicate that the nickel ferrite with molar ratio of nickel nitrate, ferric nitrateand ascorbic acid of 1:2:1 is photocatalytic effective under UV and visible light. Moreover, the nickel ferrite with molar ratio of nickel nitrate, ferric nitrateand ascorbic acid of 2:1:1 and 1:3:1 are photocatalytic effective under UV light.

2016, 36 (2): 9-12. DOI: 10.3696/j.issn.1672-6952.2016.02.003
Research on Synthesis and the Photocatalytic Degradation of Rhodanmine B of MIL53(Fe)
Lu Yuanyuan, Zhang Dan, Zhang Jing,Gong Xiaojie, Song Jia
Abstract624)      PDF (2564KB)(506)      
In this paper, MIL53(Fe) was prepared by solvothermal method under different sythetic conditions. The phase structure of samples were characterized by XRD, the morphology and particle size of samples were obtained by SEM, the ultraviolet visible light absorption of samples were explored by UVvis and the band gap energy of samples were calculated from the absorption data. The photocatalytic activities of the samples on Rhodanmine B degradation were investigated. The results show different photocatalytic effects for the samples prepared under different synthetic condition. Accordingly, photocatalytic effect of samples can be controlled through the variation of different synthetic conditions.
2015, 35 (5): 1-4. DOI: 10.3969/j.issn.1672-6952.2015.05.001