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- W3044246871 abstract "Semi-coke-based activated carbons (SACs) were prepared using semi-coke powders as raw materials. They were modified by organic reagents (benzene, methyl benzoate, and ethyl acetate), low-temperature plasma (CH4 and N2 atmosphere), and organic reagent-low temperature plasma synergistic methods. FT-IR analysis showed that the corresponding functional groups were introduced to the surface of the SACs and the absorption peak intensities of the corresponding functional groups were enhanced via low-temperature plasma treatment. Low-temperature N2 adsorption tests showed that the organic reagent played an important role for regulated mesopores of the SACs. The adsorption capacities of the SACs for CH4 and N2 were measured via static volumetric method, and their separation factors of the CH4/N2 were calculated, in which the biggest separation factor (5.08) of CH4/N2 was obtained from the SAC-ben-P-N2, which was synergistic modified by benzene and low-temperature plasma (N2 atmosphere) and its breakthrough time of methane was 93 s. The biggest breakthrough time of methane (112 s) was acquired from the SAC-ben, which was modified by benzene and its separation factor of CH4/N2 was 4.87." @default.
- W3044246871 created "2020-07-29" @default.
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- W3044246871 date "2020-09-01" @default.
- W3044246871 modified "2023-10-17" @default.
- W3044246871 title "Surface modification on semi-coke-based activated carbon for enhanced separation of CH4/N2" @default.
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- W3044246871 doi "https://doi.org/10.1016/j.cherd.2020.07.025" @default.
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