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- W1966461736 abstract "Abstract This study focuses on how different regeneration conditions affect the performance of two phenol-formaldehyde resin-derived activated carbons for CO 2 capture from a high pressure CO 2 /H 2 gas stream, i.e., pre-combustion capture. Experimental work was conducted in a laboratory fixed-bed reactor where CO 2 adsorption was performed at high pressure (15 bar) and 45 °C, and CO 2 desorption was accomplished by reducing the pressure of the system to atmospheric (PSA process), or by coupling the pressure decrease with a rise in temperature (PTSA process). A commercial activated carbon (Calgon BPL) was used as a reference material for the separation process. Desorption under atmospheric pressure and heating favoured the CO 2 capture rate, extract (CO 2 ) purity and working capacity of all the adsorbents when compared to desorption under atmospheric pressure alone. However, a higher desorption temperature in the pressure and temperature swing process (150° versus 80 °C), although it enhanced the capture rate and working capacity, it did not favour the product purity or it even penalised it. The phenol-formaldehyde resin-derived activated carbons proved to perform equal or better than the reference commercial one under almost all the different regeneration conditions studied." @default.
- W1966461736 created "2016-06-24" @default.
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- W1966461736 date "2013-01-01" @default.
- W1966461736 modified "2023-09-26" @default.
- W1966461736 title "Dynamic cyclic performance of phenol-formaldehyde resin-derived carbons for pre-combustion CO2 capture: An experimental study" @default.
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- W1966461736 doi "https://doi.org/10.1016/j.egypro.2013.05.093" @default.
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