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- W3146843546 abstract "Abstract The synergistic pressure and temperature swing adsorption (SPTSA) technology is designed for purifying coalbed methane (CBM) are proposed in this work. Cyclic processes including four steps: cooling, pressurization, heating, and depressurization. Ideal adsorption solution theory (IAST) was used to evaluate the separation effect. Super activated carbons (SACs) with specific surface area exceeds 3000 m 2 g −1 were prepared and used as adsorbents. From 273 to 373 K, the adsorption selectivity ( S ) changes more than 4, while the S changes less than 2 with the pressure changes from 0.1 to 9 MPa, indicating that temperature change is more conducive to improve the CH 4 purity compared to the pressure change. However, more CH 4 purification capacity can be obtained by pressure change. In cyclic SPTSA process, the CH 4 purification capacity is generally increased by more than 30% compared with the pressure swing adsorption technology, which indicated that CH 4 separation and purification under the synergistic action of temperature and pressure is theoretically feasible and has a broad prospect in the CBM purification. © 2021 Society of Chemical Industry and John Wiley & Sons, Ltd." @default.
- W3146843546 created "2021-04-13" @default.
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- W3146843546 date "2021-04-05" @default.
- W3146843546 modified "2023-10-17" @default.
- W3146843546 title "Evaluation of separation effect for CH <sub>4</sub> enrichment from coalbed methane (CBM) under the synergistic action of temperature and pressure based on IAST theory" @default.
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- W3146843546 doi "https://doi.org/10.1002/ghg.2068" @default.
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