Cryogenic carbon capture (CCC) is a potential technological solution to reduce CO2 emissions and achieve the needed environmental targets. CCC provides a relatively compact solution to industries where more mature technologies would have difficulty scaling down economically. However, there is a lack of research on frost formation of CO2 within packed bed systems, despite the influence of the CO2 frost layer on thermal conductivity leading to excessive cooling costs. Understanding the rate of CO2 frost growth and accumulation within a packed bed is critical to the design of the capture column. Therefore, real-time quantitative imaging becomes increasingly desirable to study the CO2 frost formation during cryogenic carbon capture, but it may ...
This paper presented a method for real-time cross-sectional imaging and holdup measurement of gas-li...
This study reports the first investigation of using a ceramic-carbonate dual-phase membrane to elect...
Dealing with pressurized releases of CO2 from Carbon Capture and Storage systems is of topical inter...
Cryogenic carbon capture (CCC) is a potential technological solution to reduce CO2 emissions and ach...
This study examines a novel cryogenic post-combustion capture process, based on a moving bed of cold...
Climate change is commonly acknowledged as a result of increased greenhouse gas levels in the atmosp...
In this work, the feasibility of a novel method of cryogenic carbon capture based on carbon dioxide ...
This work expands upon previous work on a moving bed cryogenic carbon capture (CCC). Cryogenic carbo...
An experimental study has been conducted to investigate the parameters affecting the cryodeposition ...
Carbon capture and storage (CCS) is generally considered as one of the necessary methods to mitigate...
Carbon Capture and Storage (CCS) is seen as a key strategy on the path to net-zero emission. Measure...
Carbon capture and storage (CCS) offers a possible solution to curb the CO2 emissions from stationar...
Moving bed heat exchangers (MBHE)s are used in industrial applications including waste heat recovery...
Our ever-increasing interest in economic growth is leading the way to the decline of natural resourc...
This paper presented a method for real-time cross-sectional imaging and holdup measurement of gas-li...
This study reports the first investigation of using a ceramic-carbonate dual-phase membrane to elect...
Dealing with pressurized releases of CO2 from Carbon Capture and Storage systems is of topical inter...
Cryogenic carbon capture (CCC) is a potential technological solution to reduce CO2 emissions and ach...
This study examines a novel cryogenic post-combustion capture process, based on a moving bed of cold...
Climate change is commonly acknowledged as a result of increased greenhouse gas levels in the atmosp...
In this work, the feasibility of a novel method of cryogenic carbon capture based on carbon dioxide ...
This work expands upon previous work on a moving bed cryogenic carbon capture (CCC). Cryogenic carbo...
An experimental study has been conducted to investigate the parameters affecting the cryodeposition ...
Carbon capture and storage (CCS) is generally considered as one of the necessary methods to mitigate...
Carbon Capture and Storage (CCS) is seen as a key strategy on the path to net-zero emission. Measure...
Carbon capture and storage (CCS) offers a possible solution to curb the CO2 emissions from stationar...
Moving bed heat exchangers (MBHE)s are used in industrial applications including waste heat recovery...
Our ever-increasing interest in economic growth is leading the way to the decline of natural resourc...
This paper presented a method for real-time cross-sectional imaging and holdup measurement of gas-li...
This study reports the first investigation of using a ceramic-carbonate dual-phase membrane to elect...
Dealing with pressurized releases of CO2 from Carbon Capture and Storage systems is of topical inter...