CO2 capture from flue gas by two successive VPSA units using 13XAPG
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- Type
- article
- Published
- 2012-10-05
- Cited by
- 65
- References
- 31
- OpenAlex
- https://openalex.org/W1987920651
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94508430
Keywords
Flue gas, Adsorption, Carbon dioxide, Chemistry, Air separation
References
- Concentration and recovery of carbon dioxide from flue gas by pressure swing adsorption
- Principles of adsorption and adsorption processes : By D. M. Ruthven; published by John Wiley and Sons Ltd., Chichester, 1984; 433 pp.
- EFFECT OF FLUID DISPERSION COEFFICIENTS ON PARTICLE-TO-FLUID MASS TRANSFER COEFFICIENTS IN PACKED BEDS. CORRELATION OF SHERWOOD NUMBERS
- Greenhouse gas mitigation technology: An overview of the CO2 capture and sequestration studies and further activities of the IEA Greenhouse Gas R&D Programme
- The Properties of Gases and Liquids
- Enrichment of heavy water in rotated wired concentric-tube thermal diffusion columns
- Optimization of a Pressure-Swing Adsorption Process Using Zeolite 13X for CO2 Sequestration
- Superstructure-based optimal synthesis of pressure swing adsorption cycles for precombustion CO2 capture
- Evaluation of dual-bed pressure swing adsorption for CO2 recovery from boiler exhaust gas
- Experimental study of simultaneous removal and concentration of CO2 by an improved pressure swing adsorption process
- Separation of CO2 from Flue Gas: A Review
- Multi-bed Vacuum Pressure Swing Adsorption for carbon dioxide capture from flue gas
- Technology for removing carbon dioxide from power plant flue gas by the physical adsorption method
- Comparison of Activated Carbon and Zeolite 13X for CO2 Recovery from Flue-Gas by Pressure Swing Adsorption
- Experimental and modeling investigation on post-combustion carbon dioxide capture using zeolite 13X-APG by hybrid VTSA process
- Capture of CO2 from flue gas streams with zeolite 13X by vacuum-pressure swing adsorption
- Experimental Investigation on CO2 Post−Combustion Capture by Indirect Thermal Swing Adsorption Using 13X and 5A Zeolites
- Cycle development and design for CO2 capture from flue gas by vacuum swing adsorption.
- Heavy reflux PSA cycles for CO2 recovery from flue gas: Part I. Performance evaluation
- Heat transfer in packed beds
Cited by
- Effects of feed gas concentration, temperature and process parameters on vacuum swing adsorption performance for CO2 capture
- Evaluation of carbon dioxide–nitrogen separation through fixed bed measurements and simulations
- Properties of carbon dioxide absorption and reduction by sodium borohydride under atmospheric pressure
- Carbon dioxide and nitrogen adsorption on porous copolymers of divinylbenzene and acrylic acid
- Simulation der prozessinternen Rückgewinnung von Adsorptionswärmen durch Latentwärmespeicher
- CO2 Capture from Flue Gas in an Existing Coal-Fired Power Plant by Two Successive Pilot-Scale VPSA Units
- Emerging CO2 capture systems
- Strategies for CO2 capture from different CO2 emission sources by vacuum swing adsorption technology
- Model-Based Approach for the Evaluation of Materials and Processes for Post-Combustion Carbon Dioxide Capture from Flue Gas by PSA/VSA Processes
- Separation of CO2/N2 mixture by vacuum pressure swing adsorption (VPSA) using zeolite 13X type and carbon molecular sieve adsorbents
- Tuning the Adsorption Properties of Zeolites as Adsorbents for CO2 Separation: Best Compromise between the Working Capacity and Selectivity
- Optimization of Two-Stage Pressure/Vacuum Swing Adsorption with Variable Dehydration Level for Postcombustion Carbon Capture
- Enrichment of ventilation air methane by adsorption with displacement chromatography technology: Experiment and numerical simulation
- Absorption of carbon dioxide by hydrogen donor under atmospheric pressure
- Adsorptive cyclic purification process for CO2 mixtures captured from coal power plants
- Exergy analyses of the oxygen blast furnace with top gas recycling process
- An Integrated Two-Stage P/VSA Process for Postcombustion CO2 Capture Using Combinations of Adsorbents Zeolite 13X and Mg-MOF-74
- Thermodynamic assessment of the swing adsorption reactor cluster (SARC) concept for post-combustion CO2 capture
- Adsorptive Separation of CO2 from Flue Gas by Temperature Swing Adsorption Processes
- Binary and ternary adsorption equilibria for CO2/CH4/N2 mixtures on Zeolite 13X beads from 273 to 333 K and pressures to 900 kPa
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