A novel hybrid concept is proposed, combining Pd-alloy membrane and low temperature separation technology, to produce pure H2 from gasified coal and capture the main part of the generated CO2. 75% of the H2 produced from gasification and water-gas shift is separated from the shifted syngas through H2-selective Pd-alloy membranes. After water removal, the H2-depleted, CO2-rich retentate stream is compressed and cooled, after which CO2 is condensed out at a purity level of ∼99%. The “waste” volatiles from the low-temperature CO2 separation constitute a low heating value syngas that is burnt in a gas turbine. The gas turbine with a steam bottoming cycle generates a surplus of electricity that could be employed for H2 liquefaction. Altogether, ...
AbstractIn this presentation, the opportunities for pre-combustion capture of fuel gas at a world-sc...
Strong dependency on fossil fuels and the associated price and supply chain risk increase the need ...
AbstractIn the European FP6 research project CACHET palladium-based hydrogen membrane reactors for p...
This paper summarizes a series of studies examining the prospective performance and cost of faciliti...
AbstractIn this work we investigate the proof of concept of metal (Cobalt) doped silica membranes fo...
AbstractTo facilitate the use of hydrogen in integrated gasification combined-cycle applications, hy...
Pre-combustion capture of carbon dioxide requires the industrial separation of carbon dioxide from h...
This study focuses on the application of Pd-based membranes for CO[subscript 2] capture in coal fuel...
To alleviate the pressing problem of greenhouse gas emissions, the development and deployment of sus...
The CO2 capture in Integrated Gasification Combined Cycle (IGCC) plants causes a significant increas...
The paper reviews the merits of the main types of coal and lignite based gasifiers and examines in d...
International audienceThe design of an energy efficient CO2 capture unit is of great importance for ...
Gasification of coal when associated with carbon dioxide capture and sequestration has the potential...
Gas Technology Institute is developing a novel concept of membrane gasifier for high efficiency, cle...
This two-part paper investigates performances, costs and prospects of using commercially ready techn...
AbstractIn this presentation, the opportunities for pre-combustion capture of fuel gas at a world-sc...
Strong dependency on fossil fuels and the associated price and supply chain risk increase the need ...
AbstractIn the European FP6 research project CACHET palladium-based hydrogen membrane reactors for p...
This paper summarizes a series of studies examining the prospective performance and cost of faciliti...
AbstractIn this work we investigate the proof of concept of metal (Cobalt) doped silica membranes fo...
AbstractTo facilitate the use of hydrogen in integrated gasification combined-cycle applications, hy...
Pre-combustion capture of carbon dioxide requires the industrial separation of carbon dioxide from h...
This study focuses on the application of Pd-based membranes for CO[subscript 2] capture in coal fuel...
To alleviate the pressing problem of greenhouse gas emissions, the development and deployment of sus...
The CO2 capture in Integrated Gasification Combined Cycle (IGCC) plants causes a significant increas...
The paper reviews the merits of the main types of coal and lignite based gasifiers and examines in d...
International audienceThe design of an energy efficient CO2 capture unit is of great importance for ...
Gasification of coal when associated with carbon dioxide capture and sequestration has the potential...
Gas Technology Institute is developing a novel concept of membrane gasifier for high efficiency, cle...
This two-part paper investigates performances, costs and prospects of using commercially ready techn...
AbstractIn this presentation, the opportunities for pre-combustion capture of fuel gas at a world-sc...
Strong dependency on fossil fuels and the associated price and supply chain risk increase the need ...
AbstractIn the European FP6 research project CACHET palladium-based hydrogen membrane reactors for p...