Carbon dioxide (CO 2 ) capture using magnesium oxide (MgO)-based adsorbents at intermediate temperatures has been regarded as a very prospective technology for their relatively high adsorption capacity, low cost, and wide availability. During the past few years, great effort has been devoted to the fabrication of molten salts-modified MgO-based adsorbents. The extraordinary progress achieved by coating with molten salts greatly promotes the CO 2 capture capacity of MgO-based adsorbents. Therefore, we feel it necessary to deliver a timely review on this type of CO 2 capturing materials, which will benefit the researchers working in both academic and industrial areas. In this work, we classified the molten salts-modified MgO adsorbents into...
This work focused on enhancing the CO2 capture kinetics of magnesite-derived MgO via alkali nitrate ...
Absorption and desorption of carbon dioxide on Na{sub 2}CO{sub 3}-promoted MgO have been studied at ...
MgO-based materials possess favorable thermodynamic properties that enable them to be used as CO2 so...
Carbon dioxide (CO 2 ) capture using magnesium oxide (MgO)-based adsorbents at intermediate temperat...
CO2 capture and storage from both power generation and industrial activity is a central strategy for...
Stated in the Paris Agreement, utilization of Carbon Capture and Storage (CCS) technologies are an e...
Carbon Capture in Molten Salts (CCMS) is an absorption-based method of separating CO2 from a flue ga...
CO2 capture using alkali metal salt (AMS)-promoted MgO-based sorbents at intermediate temperatures (...
As a potential candidate for precombustion CO2 capture at intermediate temperatures (200-400 °C), Mg...
The establishment of advanced CO2 capture, utilization, and storage (CCUS) technology is a crucial c...
Regenerable high capacity CO<sub>2</sub> sorbents are desirable for the establishment of widespread ...
The development of efficient low cost CO2 capture systems is a critical challenge for mitigating cli...
none6simixedAlessandro Dal Pozzo, Margarita Rekhtina, Andaç Armutlulu, Paula M. Abdala, Christoph R....
We report a systematic investigation on the high-pressure CO2 capture performance of molten salts-pr...
Molten salt [MNO3/NO2 (M = Li, Na, and K)]-promoted MgO composite-type CO2 adsorbents with high capa...
This work focused on enhancing the CO2 capture kinetics of magnesite-derived MgO via alkali nitrate ...
Absorption and desorption of carbon dioxide on Na{sub 2}CO{sub 3}-promoted MgO have been studied at ...
MgO-based materials possess favorable thermodynamic properties that enable them to be used as CO2 so...
Carbon dioxide (CO 2 ) capture using magnesium oxide (MgO)-based adsorbents at intermediate temperat...
CO2 capture and storage from both power generation and industrial activity is a central strategy for...
Stated in the Paris Agreement, utilization of Carbon Capture and Storage (CCS) technologies are an e...
Carbon Capture in Molten Salts (CCMS) is an absorption-based method of separating CO2 from a flue ga...
CO2 capture using alkali metal salt (AMS)-promoted MgO-based sorbents at intermediate temperatures (...
As a potential candidate for precombustion CO2 capture at intermediate temperatures (200-400 °C), Mg...
The establishment of advanced CO2 capture, utilization, and storage (CCUS) technology is a crucial c...
Regenerable high capacity CO<sub>2</sub> sorbents are desirable for the establishment of widespread ...
The development of efficient low cost CO2 capture systems is a critical challenge for mitigating cli...
none6simixedAlessandro Dal Pozzo, Margarita Rekhtina, Andaç Armutlulu, Paula M. Abdala, Christoph R....
We report a systematic investigation on the high-pressure CO2 capture performance of molten salts-pr...
Molten salt [MNO3/NO2 (M = Li, Na, and K)]-promoted MgO composite-type CO2 adsorbents with high capa...
This work focused on enhancing the CO2 capture kinetics of magnesite-derived MgO via alkali nitrate ...
Absorption and desorption of carbon dioxide on Na{sub 2}CO{sub 3}-promoted MgO have been studied at ...
MgO-based materials possess favorable thermodynamic properties that enable them to be used as CO2 so...