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Novel process for producing hierarchical carbide derived carbon monolith and low carbon ferromanganese from high carbon ferromanganese

机译:由高碳铁锰生产分层碳化物衍生的碳单块和低碳铁锰的新方法

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In this work, remelted high carbon ferromanganese was chosen as a consumable anode to produce porous carbon monolith and low carbon ferromanganese at the same time by molten salt electrolysis. During potentiostatic electrolysis, the anode fed manganese ions and iron ions into molten salts, with porous carbon left at the anode and ferromanganese deposited on the cathode. The anode residue was characterized by X-ray diffraction, scanning electron microscopy, Raman spectrum and transmission electron microscopy. Results indicated that this type of porous carbon material with a high degree of graphitization has a multimodal pore system consisting of micropores, mesopores and macropores, which is hierarchical carbide derived carbon (CDC). The anode and cathode current efficiencies are estimated to be at least 92% and 80%, respectively. All results implied that it is feasible to prepare carbide derived carbon monoliths with a hierarchical pore structure and low carbon ferromanganese simultaneously by molten salt electrolysis.
机译:在这项工作中,选择重熔的高碳铁锰作为可消耗阳极,以通过熔融盐电解同时生产多孔碳单块和低碳铁锰。在恒电位电解过程中,阳极将锰离子和铁离子送入熔融盐中,多孔碳留在阳极,铁锰沉积在阴极上。通过X射线衍射,扫描电子显微镜,拉曼光谱和透射电子显微镜对阳极残余物进行表征。结果表明,这种具有高度石墨化程度的多孔碳材料具有由微孔,中孔和大孔组成的多峰孔隙系统,这是分层的碳化物衍生碳(CDC)。阳极和阴极电流效率分别估计至少为92%和80%。所有结果表明,通过熔融盐电解同时制备具有分级孔结构和低碳铁锰的碳化物衍生碳单块是可行的。

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