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Effect of Thermal Stabilization on PAN-Derived Electrospun Carbon Nanofibers

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Effect of Thermal Stabilization on PAN-Derived Electrospun Carbon Nanofibers ( effect-thermal-stabilization-pan-derived-electrospun-carbon- )

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der pure CO2, considering the corresponding CO2 partial pressure an 2 e ° d Polymers 2021, 13, 4197 of the tested temperature (from 20 to 30 °C, for pure CO2 and CO2/N tively), which typically causes a decrease in the adsorption for phy [44]. Moreover, this result confirms the negligible N2 uptake in resp 9 of 13 tested conditions. Figure7.CO adsorptionisothermsof(i)CNF_230and(ii)CNF_260at20◦CinpureCO atmosphere 22 Figure 7. CO2 adsorption isotherms of (i) CNF_230 and (ii) CNF_260 at 20 and (iii) CO2/N2 selectivity test of CNF_230 mat at 30 ◦C in a simulated post-combustion flue gas phere and (iii) CO2/N2 selectivity test of CNF_230 mat at 30 °C in a simulate mixture of 20 vol.% CO2 and 80 vol.% of N2. gas mixture of 20 vol.% CO2 and 80 vol.% of N2.

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