CO2 capture from flue gas using a sodium-based solid sorbent was investigated in a bubbling fluidized-bed reactor. Carbonation and regeneration temperature on CO2 removal was determined. The extent of the chemical reactivity after carbonation or regeneration was characterized via 13C NMR. In addition, the physical properties of the sorbent such as pore size, pore volume, and surface area after carbonation or regeneration were measured by gas adsorption method (BET). With water vapor pretreatment, near complete CO2 removal was initially achieved and maintained for about 1-2 min at 50 ??C with 2 s gas residence time, while without proper water vapor pretreatment CO2 removal abruptly decreased from the beginning. Carbonation was effective at t...
본 연구에서는 전력연구원으로부터 공급받은 건식 흡수제인 sorbA를 이용하여 기포 유동층 반응기에서 CO2 흡수 반응 특성을 살펴보았다. sorbA는 CO2 흡수를 위한 탄산나트륨...
The most commonly used commercial technology for post-combustion CO2 capture for existing power plan...
Nowadays, the world is facing severe climate change due to the rapid increase in the world populatio...
We investigated the effects of carbonation and regeneration temperature on the C O2 capture characte...
A bubbling fluidized bed reactor was used to study CO2 capture from flue gas by using a potassium-ba...
Laboratory studies were conducted to investigate dry, regenerable, alkali carbonate-based sorbents f...
One of the advanced concepts for capturing CO(2) is an absorption process that utilizes dry regenera...
Regenerable sorbents based on sodium carbonate (Na{sub 2}CO{sub 3}) can be used to separate carbon d...
CO2 capture and storage (CCS) has received significant attention recently and is recognized as an im...
The dry sorbent CO2 capture process is an advanced concept to efficiently remove CO2 from flue gas w...
A novel liquid impregnated solid sorbent was developed for CO2 removal in the temperature range of a...
AbstractCarbon dioxide capture and storage (CCS) is anticipated to be an important component of redu...
Carbon dioxide emission from fossil fuel combustion and its impact on global warming is one of the m...
AbstractKorea Institute of Energy Research (KIER) and Korea Electric Power Research Institute (KEPRI...
AbstractDry regenerable sorbent technology is one of the emerging technologies as a cost-effective a...
본 연구에서는 전력연구원으로부터 공급받은 건식 흡수제인 sorbA를 이용하여 기포 유동층 반응기에서 CO2 흡수 반응 특성을 살펴보았다. sorbA는 CO2 흡수를 위한 탄산나트륨...
The most commonly used commercial technology for post-combustion CO2 capture for existing power plan...
Nowadays, the world is facing severe climate change due to the rapid increase in the world populatio...
We investigated the effects of carbonation and regeneration temperature on the C O2 capture characte...
A bubbling fluidized bed reactor was used to study CO2 capture from flue gas by using a potassium-ba...
Laboratory studies were conducted to investigate dry, regenerable, alkali carbonate-based sorbents f...
One of the advanced concepts for capturing CO(2) is an absorption process that utilizes dry regenera...
Regenerable sorbents based on sodium carbonate (Na{sub 2}CO{sub 3}) can be used to separate carbon d...
CO2 capture and storage (CCS) has received significant attention recently and is recognized as an im...
The dry sorbent CO2 capture process is an advanced concept to efficiently remove CO2 from flue gas w...
A novel liquid impregnated solid sorbent was developed for CO2 removal in the temperature range of a...
AbstractCarbon dioxide capture and storage (CCS) is anticipated to be an important component of redu...
Carbon dioxide emission from fossil fuel combustion and its impact on global warming is one of the m...
AbstractKorea Institute of Energy Research (KIER) and Korea Electric Power Research Institute (KEPRI...
AbstractDry regenerable sorbent technology is one of the emerging technologies as a cost-effective a...
본 연구에서는 전력연구원으로부터 공급받은 건식 흡수제인 sorbA를 이용하여 기포 유동층 반응기에서 CO2 흡수 반응 특성을 살펴보았다. sorbA는 CO2 흡수를 위한 탄산나트륨...
The most commonly used commercial technology for post-combustion CO2 capture for existing power plan...
Nowadays, the world is facing severe climate change due to the rapid increase in the world populatio...