Waste heat recovery in CO2 compression
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- Type
- article
- Published
- 2014-11-01
- Cited by
- 42
- References
- 28
- OpenAlex
- https://openalex.org/W31721460
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:107825319
Keywords
Exergy, Organic Rankine cycle, Waste heat, Greenhouse gas, Waste management
References
- Capturing COsub 2: gas compression vs. liquefaction
- Near-Zero Emissions Oxy-Combustion Flue Gas Purification
- Fundamentals of Engineering Thermodynamics
- Integrating MEA Regeneration with CO2 Compression and Peaking to Reduce CO2 Capture Costs
- Techno-Economic Models for Carbon Dioxide Compression, Transport, and Storage & Correlations for Estimating Carbon Dioxide Density and Viscosity
- Integration of power plant and amine scrubbing to reduce CO2 capture costs
- Transmission of CO2-Safety and Economic Considerations
- Gas conditioning—The interface between CO2 capture and transport
- An Introduction to Fluid Mechanics
- Optimization of intercooling compression in CO2 capture systems
- A modeling software linking approach for the analysis of an integrated reforming combined cycle with hot potassium carbonate CO[subscript 2] capture
- Exergy Analysis of an Industrial Waste Heat Recovery Based Cogeneration Cycle for Combined Production of Power and Refrigeration
- Technico-Economical Evaluation of CO 2 Transport in an Adsorbed Phase
- Fundamentals of exergy analysis, entropy generation minimization, and the generation of flow architecture
- Novel Concepts for the Compression of Large Volumes of Carbon Dioxide
- Optimization of pipeline transport for CO2 sequestration
- Performance analysis and optimization of organic Rankine cycle (ORC) for waste heat recovery
- A quantitative comparison of gas turbine cycles with CO2 capture
- Determination of energy and exergy of waste heat in the industry of the Basque country
- On the recovery of LNG physical exergy by means of a simple cycle or a complex system
Cited by
- Utilization of heat recovered from compressed gases in an oxy-combustion power unit to power the Organic Rankine Cycle module
- Simulation and assessment of an integrated acid gas removal process with higher CO2 capture rate
- Evaluation of the cost of using power plant reject heat in low-temperature district heating and cooling networks
- The misselhorn cycle: batch-evaporation process for efficient low-temperature waste heat recovery
- Thermal performance analysis of Brayton cycle with waste heat recovery boiler for diesel engines of offshore oil production facilities
- Minimizing the Energy and Economic Penalty of CCS Power Plants Through Waste Heat Recovery Systems
- A proposed coal-to-methanol process with CO2 capture combined Organic Rankine Cycle (ORC) for waste heat recovery
- Impact of stream impurities on compressor power requirements for CO2 pipeline transportation
- Application of organic Rankine cycle in integration of thermal power plant with post-combustion CO2 capture and compression
- Carbon capture and storage (CCS): the way forward
- Retrofitting the Regulated Power Plant: Optimizing Energy Allocation to Electricity Generation, Water Treatment, and Carbon Capture Processes at Coal-Fired Generating Facilities
- Thermoeconomic analysis of a CO2 compression system using waste heat into the regenerative organic Rankine cycle
- A comparison of the energy consumption for CO2 compression process alternatives
- A call to (green) arms: a rallying cry for green chemistry and engineering for CO2 capture, utilisation and storage
- Process optimization and working fluid mixture design for organic Rankine cycles (ORCs) recovering compression heat in oxy-combustion power plants
- Dynamic simulations of carbon dioxide pipeline transportation for the purpose of carbon capture and storage
- Multistage compression and transient flow in CO₂ pipelines with line packing
- Optimization of the Energy Consumption of a Carbon Capture and Sequestration Related Carbon Dioxide Compression Processes
- Thermo- economic evaluation of 300 MW coal based oxy-fuel power plant integrated with organic Rankine cycle
- Study of Temperature Effects on Economic Performance of CO2 Enhanced Shale Gas Recovery
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