Journal of Inorganic Materials ›› 2016, Vol. 31 ›› Issue (6): 613-620.DOI: 10.15541/jim20150542
• Orginal Article • Previous Articles Next Articles
HU Xiao-Dan, ZHOU Zhi-Wei, ZHANG Wei, ZHANG Xiao-Hong, ZHANG Hai-Qian
Received:
2015-11-02
Revised:
2016-02-22
Published:
2016-06-20
Online:
2016-05-19
Supported by:
CLC Number:
HU Xiao-Dan, ZHOU Zhi-Wei, ZHANG Wei, ZHANG Xiao-Hong, ZHANG Hai-Qian. Heterogeneous Fenton Reaction for Degradation of Ofloxacin with Magnetic CeO2/Fe3O4[J]. Journal of Inorganic Materials, 2016, 31(6): 613-620.
FC1 | FC2 | FC3 | FC4 | |
---|---|---|---|---|
Fe(wt%) | 80.52 | 57.73 | 50.53 | 43.16 |
Ce(wt%) | 4.44 | 7.81 | 27.29 | 28.10 |
CeO2: Fe3O4 (mol:mol) | 0.066 | 0.162 | 0.647 | 0.780 |
Table 1 Element weight percent of CeO2/Fe3O4 samples
FC1 | FC2 | FC3 | FC4 | |
---|---|---|---|---|
Fe(wt%) | 80.52 | 57.73 | 50.53 | 43.16 |
Ce(wt%) | 4.44 | 7.81 | 27.29 | 28.10 |
CeO2: Fe3O4 (mol:mol) | 0.066 | 0.162 | 0.647 | 0.780 |
R2 | Fe3O4 | FC1 | FC2 | FC3 | FC4 |
---|---|---|---|---|---|
Zero | 0.938825 | 0.916653 | 0.890551 | 0.845094 | 0.727916 |
First | 0.982795 | 0.958715 | 0.977587 | 0.992056 | 0.991458 |
Second | 0.927562 | 0.96293 | 0.873888 | 0.739858 | 0.616759 |
Table 2 Correlation coefficent of zero, first and second-order kinetic fitting
R2 | Fe3O4 | FC1 | FC2 | FC3 | FC4 |
---|---|---|---|---|---|
Zero | 0.938825 | 0.916653 | 0.890551 | 0.845094 | 0.727916 |
First | 0.982795 | 0.958715 | 0.977587 | 0.992056 | 0.991458 |
Second | 0.927562 | 0.96293 | 0.873888 | 0.739858 | 0.616759 |
[1] | HE XIUTING, WANG ZHAOHUI, NIE XIANGPING, et al.Residues of fluoroquinolones in marine aquaculture environment of the Pearl River Delta, South China.Environmental Geochemistry and Health, 2012, 34(3): 323-335. |
[2] | KIM SANG D., CHO JAEWEON, KIM IN S, et al.Occurrence and removal of pharmaceuticals and endocrine disruptors in South Korean surface, drinking, and waste waters.Water Research, 2007, 41(5): 1013-1021. |
[3] | PI YUNQING, FENG JINGLAN, SONG MENGKE, et al.Degradation potential of ofloxacin and its resulting transformation products during Fenton oxidation process. Chinese Science Bulletin, 2014, 59(21): 2618-2624. |
[4] | OLIVEIRA LUIZ C, RIOS RACHEL V R A, FABRIS JOSE´ D, et al. Clay-iron oxide magnetic composites for the adsorption of contaminants in water.Applied Clay Science, 2003, 22(4): 169-177. |
[5] | ANDREOZZI ROBERTO, CANTERINO MARISA, CAPRIO VINCENZO, et al.Use of an amorphous iron oxide hydrated as catalyst for hydrogen peroxide oxidation of ferulic acid in water.Journal of Hazardous Materials, 2008, 152(2): 870-875. |
[6] | YEH C KUEI-JYUM, HSU CHI-YU, CHIU C H, et al. Reaction efficiencies and rate constants for the goethite-catalyzed Fenton- like reaction of NAPL-form aromatic hydrocarbons and chloroethylenes.Journal of Hazardous Materials, 2008, 151(2/3): 562-569. |
[7] | WANG YANBIN, ZHAO HONGYING, ZHAO GUOHUA, et al.Iron compound-based heterogeneous Fenton catalytic oxidation technology.Progress in Chemistry, 2013, 25(8): 1246-1259. |
[8] | LIOU MING-JER, LU MING-CHUN.Catalytic degradation of explosives with goethite and hydrogen peroxide.Journal of Hazardous Materials, 2008, 151(2/3): 540-546. |
[9] | CHI YONGZHI, XI YULAN, LI X, et al.Preparation of a supported Fe/Ce/zeolite Fenton-like catalyst and its performance.Chinese Journal of Environmental Engineering, 2012, 6(9): 3068-3072. |
[10] | GE LIN, ZANG CHENGJIE, CHEN FENG.The enhanced Fenton- like catalytic performance of PdO/CeO2 for the degradation of acid orange 7 and salicylic acid.Chinese Journal of Catalysis, 2015, 36(3): 314-321. |
[11] | MI EUN IM, DE PHAM-CONG, JI YOON KIM, et al.Enhanced electrochemical performance of template-free carbon-coated iron(II, III) oxide hollow nanofibers as anode material for lithium- ion batteries.Journal of Power Sources, 2015, 284: 392-399. |
[12] | WANG YOU-FA, WU ZHOU-LI, LI WEN-RUN, et al.Spectroscopic properties of cerium doped YVO4 crystals and analysis on valence state of cerium ion.Acta Phys. Sin., 2012, 61(22): 228105. |
[13] | ANDREOLI S, DEORSOLA F A, PIRONE R.MnOx-CeO2 catalysts synthesized by solution combustion synthesis for the low temperature NH3-SCR.Catalysis Today, 2015, 253: 199-206. |
[14] | HE JIE, YANG XIAO-FANG, ZHANG WEI-JUN, et al.Catalyzed oxidation of catechol by the heterogeneous Fenton-like reaction of nano-Fe3O4-H2O2 system.Environmental Science, 2013, 34(5): 1773-1781. |
[15] | BOKARE ALOK D, CHOI WONYONG.Review of iron-free Fenton-like systems for activating H2O2 in advanced oxidation processes.Journal of Hazardous Materials, 2014, 275: 121-135. |
[16] | SHAO XIAOMEI, CHEN LING, LIU DEQI, et al.Research on influencing factors of the availably utilized ratios of H2O2 in Fenton reaction at room temperature.Environmental Science and Management, 2009, 34(3): 51-55. |
[17] | WU QINGQIONG, DING CHUYUN, QIU MUQING.A Comparative Study of Decolorization of the Azo Dye by Fenton and Fenton-like reaction. Conference on Environmental Pollution and Public Health(CEPPH2011), China, 2011, 984-987. |
[18] | LI WEIGUANG, WANG YONG, IRINI ANGELIDAKI.Effect of pH and H2O2 dosage on catechol oxidation in nano-Fe3O4 catalyzing UV-Fenton and identification of reactive oxygen species.Chemical Engineering Journal, 2014, 244: 1-8. |
[19] | LAMBA RANDEEP, UMAR AHMAD, MEHTA SURINDER KUMAR, et al.CeO2-ZnO hexagonal nanodisks: efficient material for the degradation of direct blue 15 dye and its simulated dye bath effluent under solar light.Journal of Alloys and Compounds, 2015, 620: 67-73. |
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