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Physicochemical properties and desulfurization activities of metal oxide/biomass-based activated carbons prepared by blending method

机译:混合法制备的金属氧化物/生物质基活性炭的理化性质和脱硫活性

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Column activated carbons were prepared from walnut shell chars and transition metal oxide powders (i.e. Co2O3, Ni2O3, CuO and V2O5) with blending method. Samples were characterized by N2 adsorption-desorption, X-ray diffraction, X-ray photoelectron spectroscopy and Fourier-transform infrared spectroscopy. The texture properties of all modified activated carbons with metal oxides dosage of <5 wt% did not change evidently. The basic functionalities of these activated carbons increased relative to blank carbon. Moreover, metal species with different oxidation states coexisted on the modified activated carbons. The optimal dosage of all metal oxides was 2 wt%. The sulfur capacities of these modified activated carbons were 7.7-46.0 % higher than that of blank activated carbon and the highest occurred for V2O5 modified activated carbon. The improved desulfurization performance was mainly attributed to the higher catalytic activity of the active metal oxides formed in the presence of O2 during the desulfurization process.
机译:由核桃壳炭和过渡金属氧化物粉末(即Co2O3,Ni2O3,CuO和V2O5)混合制备柱状活性炭。通过N 2吸附-解吸,X射线衍射,X射线光电子能谱和傅立叶变换红外光谱对样品进行表征。小于5 wt%的金属氧化物的所有改性活性炭的织构特性没有明显变化。这些活性炭的基本功能相对于空白碳有所增加。此外,具有不同氧化态的金属物质共存于改性活性炭上。所有金属氧化物的最佳剂量为2重量%。这些改性活性炭的硫容量比空白活性炭高7.7-46.0%,最高的是V2O5改性活性炭。脱硫性能的提高主要归因于在脱硫过程中在O2存在下形成的活性金属氧化物的较高催化活性。

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