引用本文: | 梁大鑫,张巨擘,郑恺,邸明宇,郭元茹,王威.磁性Fe3O4微球的溶剂热法合成及光芬顿性能优化[J].哈尔滨工业大学学报,2017,49(8):90.DOI:10.11918/j.issn.0367-6234.201701056 |
| LIANG Daxin,ZHANG Jubo,ZHENG Kai,DI Mingyu,GUO Yuanru,WANG Wei.Solvothermal synthesis of magnetic Fe3O4 nanospheres and the optimization of the photo-Fenton reaction performance[J].Journal of Harbin Institute of Technology,2017,49(8):90.DOI:10.11918/j.issn.0367-6234.201701056 |
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摘要: |
为探究Fe3O4微球的光芬顿性能, 在200 ℃条件下, 利用溶剂热法成功制备出具有较好分散性、平均粒径(200±0.5) nm的Fe3O4微球, 并通过对其原料配比的探究进行样品优化.该合成方法所制备出的Fe3O4微球在Photo-Fenton降解亚甲基蓝方面有优秀的性能, 降解率达95%甚至以上.此外, Fe3O4微球具有易回收的优点, 仅利用磁场即可将其分离, 且回收率超过85%甚至90%.利用回收后的Fe3O4微球探究其重复利用率, 结果表明, 重复利用过程中样品催化降解效率与第一次使用时几乎相同.本研究探究了该样品降解亚甲基蓝的最佳反应条件, 其中当反应体系中加入15 mL过氧化氢且为酸性环境下降解效率达到最大
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关键词: 磁性 Fe3O4微球 光芬顿降解 溶剂热 |
DOI:10.11918/j.issn.0367-6234.201701056 |
分类号:O643.3 |
文献标识码:A |
基金项目:黑龙江省自然科学基金(LC201406); 黑龙江省博士后资助经费(LBH-Z13001) |
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Solvothermal synthesis of magnetic Fe3O4 nanospheres and the optimization of the photo-Fenton reaction performance |
LIANG Daxin1,ZHANG Jubo1,ZHENG Kai1,DI Mingyu1,GUO Yuanru1,WANG Wei2
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(1.College of Materials Science and Engineering, Northeast Forestry University, Harbin 150040, China; 2.State Key Laboratory of Urban Water Resources and Water Environment(Harbin Institute of Technology), Harbin 150090, China)
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Abstract: |
In order to study photo-Fenton performance of Fe3O4 nanospheres, monodispersed Fe3O4 nanospheres with a mean diameter of 200 nm were successfully synthesized by a solvothermal method at 200 ℃. As-synthesized Fe3O4 nanospheres show excellent photo-Fenton efficiency on the degradation of methylene blue(MB), and the degradation rate was over 95%. Besides, the catalyst was easy to recycle with only a piece of magnet, and the recovery rate can be more than 85%. Moreover, the catalyst can be regenerated with the ultrasonic treatment, and the degradation performance almost remains unchanged. In addition, the degradation efficiency varies with the amount of hydrogen peroxide applied and the pH value of the reaction system. After intensive investigation, the reaction efficiency performs best with 15 mL hydrogen peroxide added in acid atmosphere.
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Key words: magnetic Fe3O4 nanospheres photo-Fenton degradation solvothermal |