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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Design and construction of a bifunctional magnetically recyclable 3D CoMn2O4/CF hybrid as an adsorptive photocatalyst for the effective removal of contaminants
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Design and construction of a bifunctional magnetically recyclable 3D CoMn2O4/CF hybrid as an adsorptive photocatalyst for the effective removal of contaminants

机译:双功能磁性可再循环3D COMN2O4 / CF杂交体的设计与施工,作为吸附光催化剂,用于有效去除污染物

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Herein, a magnetic microsphere CoMn2O4 (MS-CoMn2O4) with a 3D architecture was constructed directly on cellulose fiber (CF) substrates from wastepaper by a solvothermal synthesis method with further calcination treatment. The designed hybrid shows excellent dual functions including rapid catalytic oxidation of tetracycline (TC)/methylene blue (MB) and a high adsorption capacity. What's more, the hybrid is easily recycled using an external magnetic field. In comparison with that of pure MS-CoMn2O4, the enhanced adsorption ability and photocatalytic activity of MS-CoMn2O4/CFs can mainly be attributed to the introduced cellulose fiber supporter in the hybrid system. MS-CoMn2O4 incorporated CFs can improve the efficient separation of photogenerated electron-hole pairs and the transport pathway of electrons. More importantly, introduction of CFs can help to enrich and further improve the degradation efficiency of organic contaminants. The possible mechanism for the enhancement of the photocatalytic activity has been elucidated in detail. The reusability analysis revealed that the MS-CoMn2O4/CF hybrid exhibited superb cycling stability after 5 cycles. This study provides novel insights into the design and construction of high capacity sorbents as strongly adsorptive photocatalysts to perform catalytic degradation of organic contaminants.
机译:这里,通过具有进一步煅烧处理的溶剂热量合成方法直接在来自废皮的纤维素纤维(CF)基板上的磁性微球COMN2O4(MS-COMN2O4)。设计的杂种显示出优异的双重功能,包括快速催化氧化四环素(TC)/亚甲基蓝(MB)和高吸附能力。更重要的是,混合动力车易于使用外部磁场再循环。与纯MS-COMN2O4的相比,MS-COMN2O4 / CFS的增强的吸附能力和光催化活性主要可归因于杂交系统中引入的纤维素纤维支持者。 MS-COMN2O4 Incorporated CFS可以改善光生电子 - 空穴对的有效分离和电子的传输通路。更重要的是,CFS的引入可以帮助丰富和进一步提高有机污染物的降解效率。详细阐述了增强光催化活性的可能机制。可重用性分析显示,MS-COMN2O4 / CF杂种在5个循环后表现出极好的循环稳定性。本研究提供了对高容量吸附剂的设计和构建的新颖见解,这是强烈吸附的光催化剂,以进行有机污染物的催化降解。

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