A comparison of the energy consumption for CO2 compression process alternatives
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Summary
The main finding is that the performance advantages claimed for improved CO2 compression process schemes are often optimistic because the based-line scheme compared against is not well optimized.
- Type
- article
- Published
- 2018-06-01
- Cited by
- 41
- References
- 28
- Access
- Open access
- OpenAlex
- https://openalex.org/W2883585997
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:149934234
Keywords
Energy consumption, Process (computing), Consumption (sociology), Compression (physics), Energy (signal processing)
References
- Waste heat recovery in CO2 compression
- Study on a novel process for CO2 compression and liquefaction integrated with the refrigeration process
- A review of absorption refrigeration technologies
- A New Equation of State for Carbon Dioxide Covering the Fluid Region from the Triple‐Point Temperature to 1100 K at Pressures up to 800 MPa
- Gas conditioning—The interface between CO2 capture and transport
- Optimization of intercooling compression in CO2 capture systems
- Working fluids for high-temperature organic Rankine cycles
- A novel methodology for comparing CO2 capture options for natural gas-fired combined cycle plants
- A comparison of the process integration of shockwave CO2 compression with conventional turbo machinery into PCC power station design
- Evaluation of SPUNG* and Other Equations of State for Use in Carbon Capture and Storage Modelling
- Comparison of equations-of-state with P-ρ-T experimental data of binary mixtures rich in CO2 under the conditions of pipeline transport
- The outlook for improved carbon capture technology
- Development of CO2 liquefaction cycles for CO2 sequestration
- Addressing technology uncertainties in power plants with post-combustion capture
- Reassessing the Efficiency Penalty from Carbon Capture in Coal-Fired Power Plants.
- Application of organic Rankine cycle in integration of thermal power plant with post-combustion CO2 capture and compression
Cited by
- Optimization of the Energy Consumption of a Carbon Capture and Sequestration Related Carbon Dioxide Compression Processes
- Techno-economic evaluation of carbon capture technologies integrated to flexible renewable energy system
- Optimization of the CO2 Liquefaction Process-Performance Study with Varying Ambient Temperature
- Carbon dioxide storage through mineral carbonation
- Sustainable Milling of Ti-6Al-4V: Investigating the Effects of Milling Orientation, Cutter′s Helix Angle, and Type of Cryogenic Coolant
- Comparison of different CO2 liquefaction processes and exergoeconomic evaluation of integrated CO2 liquefaction and absorption refrigeration system
- Sustainable hole-making in a titanium alloy using throttle and evaporative cryogenic cooling and micro-lubrication
- Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction
- A comparative study of modified Linde and cryogenic cooling for CO2 separation
- Techno-Economics Optimization of H2 and CO2 Compression for Renewable Energy Storage and Power-to-Gas Applications
- Generalized penalties and standard efficiencies of carbon capture and storage processes
- Catalytic Transesterification of Coconut Oil in Biodiesel Production: A Review
- Source-to-sink efficiency of blue and green district heating and hydrogen-based heat supply systems
- Life Cycle Assessment (LCA) upon the production chain of a powder containing modified olive leaves’ extract
- Energy comparison of sequential and integrated CO2 capture and electrochemical conversion
- CO2 entrapment using 1–hexyl‐3–methyl‐imidazolium room temperature ionic liquids with multi-walled carbon nanotubes
- Carbon Sequestration: The Ignored Promise of the Non-Utilization of Carbon Route
- Emerging concepts in intermediate carbon dioxide emplacement to support carbon dioxide removal
- Turbomachinery for Carbon Dioxide Transport and Storage
- Thermochemical batteries using metal carbonates: A review of heat storage and extraction
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