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Oxyfuel Combustion CO2 Capture, SOUTHEAST UNIV 08-02-2017, SOUTH CHINA…
Oxyfuel Combustion
CO2 Capture
An oxy-combustion turboexpander process is integrated to produce an enriched carbon dioxide product stream by combusting a compressed synthetic air stream. The compressed air stream contains an oxygen-enriched stream and a carbon dioxide recycle stream.
An integrated power generation system is proposed that combines solar energy with coal gasification and supercritical carbon dioxide technology
The system for producing carbon-neutral gas involves an oxy-combustion unit that burns hydrocarbon fuel with oxygen from an electrolysis unit to produce electricity and carbon dioxide.
Oxygen-enriched combustion boiler with chemical-looping air separation improves power generation efficiency and CO2 capture
A power generation system can be created by combining partial oxygen-enriched combustion of a calcium-based chain and CO2 trapping
Partial oxy-combustion-calcium looping hybridization used for CO2 capture in waste-to-energy power plants
Oxygen carrier-aided oxy-fuel combustion (OCAC) technology in oxy-fuel combustion for carbon capture improves the utilization of O2, leading to reduced energy consumption from the air separation unit (ASU).
Copper-Cobalt-Aluminum-Oxide mixed oxides are used in the purification of carbon dioxide from oxycombustion process exhaust feed.
A dual-phase oxygen transport membrane comprises 40NSFO–60CNO prepared using a simple one-pot EDTA–citric sol–gel method. The membrane is reduction-tolerant, CO2-stable, and exhibits high oxygen permeation fluxes
There is ahigh potential for commercializing gas-fired chemical looping combustion that uses a supercritical CO2 cycle
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