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煤基磁性活性炭的制備

Preparation of magnetic coal-based activated carbon

  • 摘要: 以大同煙煤為原料、Fe3O4作為添加劑,催化制備了煤基磁性活性炭(MCAC).利用氮氣吸附等溫線表征了MCAC的孔隙結構,并考察了其吸附性能(碘值、亞甲蘭值)和磁學性能.結果表明,Fe3O4對MCAC孔隙的產生具有催化作用,有利于活性炭中孔的形成和發育.其中添加10% Fe3O4的MCAC中孔率高達76.0%.MCAC與普通活性炭(AC-0)相比,碘吸附值明顯降低,而亞甲蘭吸附值顯著提高.添加7% Fe3O4的MCAC,其碘值降低了25.5%,亞甲蘭值提高了79.9%.添加適量的Fe3O4制備的MCAC具有較高的比飽和磁化強度和磁導率.Fe3O4質量分數為4%和10%時,所得MCAC的比飽和磁化強度分別是AC-0的24.4倍和44.5倍.

     

    Abstract: Magnetic coal-based activated carbons (MCAC) were prepared from Datong bituminous coal in the presence of different amounts of Fe3O4. Their pore structures were characterized by N2 adsorption isotherm, and their iodine value, methylene blue value and magnetic properties were determined. The results show that Fe3O4 in the raw material is of importance to mesopores formation, and the ratio of mesopore volume reaches up to 76.0% when the mass fraction of Fe3O4 in the raw material is 10%. The iodine value decreases by 25.5% and the methylene blue value increases by 79.9% for the activated carbon with 7% Fe3O4 compared with common activated carbon without additives. A proper amount of Fe3O4 in the raw material makes it possible to grant the activated carbon with a higher magnetism and a bigger magnetoconductivity:MCACs derived from the raw materials containing 4% Fe3O4 and 7% Fe3O4 possess the magnetizations greater than common activated carbon by 24.4 times and 44.5 times, respectively.

     

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