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磁性核壳型Fe_3O_4@CeO_2催化剂分解H_2O_2的性能研究 被引量:1

Study on Decomposition of H_2O_2 by Magnetic Core-shell Structured Fe_3O_4@CeO_2 Catalyst
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摘要 催化湿式过氧化氢氧化是常见的一种降解水中有机物的方法,催化剂的加入能促使H_2O_2分解产生氧化能力更强且无选择性的羟基自由基,开发出性能优异的催化剂是该方法的关键所在。采用溶剂热法制备出磁性核壳型的Fe_3O_4@Ce O_2纳米催化剂,并采用N_2吸附-脱附、磁性测试和透射电子显微镜(TEM)对制备的Fe_3O_4@Ce O_2催化剂进行表征。考查Fe_3O_4及Fe_3O_4@Ce O_2分解H_2O_2的性能,结果表明,相比Fe_3O_4,Ce O_2包覆后的Fe_3O_4@Ce O_2分解的H_2O_2效率得到了提高。 Catalytic wet peroxide oxidation has been widely used in the removal of organic pollutants in water.The addition of catalyst can promote the decomposition of H2O2 into hydroxyl radical, so catalyst plays an important role in this technology.A magnetic core-shell structured Fe3O4@ CeO2 catalyst was prepared by solvothermal method.The obtained samples were characterized by N2 adsorption -desorption magnetic measurement and transmission electron microscopy (TEM).The decomposition of H2O2 by Fe3O4 and Fe3O4@ CeO2 was investigated.The results indicated that compared to Fe3O4, Fe3O4@ CeO2 enhanced the decomposition efficiency of H2O2.
作者 龚金钗 胡梦 陈燕红 吴宗梅 官泽会 田亚兰 秦航道 GONG Jin-chai;HU Meng;CHEN Yan-hong;WU Zong-mei;GUAN Ze-hui;TIAN Ya-lan;QIN Hang-dao(School of Material and Chemical Engineering,Tongren University,Guizhou Tongren 554300,China)
出处 《广州化工》 CAS 2019年第3期41-42,49,共3页 GuangZhou Chemical Industry
关键词 磁性材料 核壳结构 CEO2 H2O2分解 magnetic material core-shell structure CeO2 H2O2 decomposition
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