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1-4 z 4 emploisHollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process
Hollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process Increasing emissions of greenhouse gases, of which carbon dioxide (CO2 ) accounts for around 65% (Bains, P. in 2017), contribute massively to global warming. In order to limit these emissions, it is nece...
Hollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process (Basé à Nancy)
Hollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process Increasing emissions of greenhouse gases, of which carbon dioxide (CO2 ) accounts for around 65% (Bains, P. in 2017), contribute massively to global warming. In order to limit these emissions, it is nece...
Hollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process (Basé à Nancy)
Hollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process Increasing emissions of greenhouse gases, of which carbon dioxide (CO2 ) accounts for around 65% (Bains, P. in 2017), contribute massively to global warming. In order to limit these emissions, it is nece...
Hollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process (Basé à Nancy)
Hollow-fiber membrane contactors for CO2 capture: design of a hydrodynamically optimized process Increasing emissions of greenhouse gases, of which carbon dioxide (CO2 ) accounts for around 65% (Bains, P. in 2017), contribute massively to global warming. In order to limit these emissions, it is nece...