Calcium looping technology could be one of the most efficient ways to drastically reduce the carbon footprint of cement manufacture since CaCO3 is a major component of the raw meal used to produce clinker. However, calcined raw meal can be a poor CO2 sorbent due to the fact that the formation of Ca2SiO4 (belite) causes a reduction in the amount of free CaO. Effective reaction rates for the formation of belite from both CaCO3 and CaO (i.e., after calcination) were obtained in this work for different raw meals with similar compositions but very different levels of Ca–Si aggregation. Tests carried out in thermogravimetric analyzers revealed that belite can be formed quickly, even with calcination periods of about 1 min. The 3D-diffusion model ...
In this report, the findings of experimental research regarding Calcium Looping CO2 capture for the ...
One of the main challenges for commercialising calcium looping (CaL) as a CO2 capture technology is ...
The multicycle CO2 capture performance of CaO derived from the calcination of ball-milled limestone ...
The manuscript is focused on the determination of effective reaction rates for the formation of beli...
The use of cement raw meals as sorbent precursors for CO2 capture can reinforce the synergies betwee...
11 Figures, 2 Tables.-- © 2019. This manuscript version is made available under the CC-BY-NC-ND 4.0 ...
The sulfation phenomena of raw meal materials involved in calcium looping (CaL) applications to capt...
Cement production is responsible for around 7% of the global anthropogenic carbon dioxide emissions....
Calcium looping is a promising post-combustion technology for capturing CO2 from flue gases by using...
This document reports the progress to date in the investigation of reactor components in integrated ...
The cement industry is currently responsible for approximately 5 % of the global greenhouse gas emis...
Calcium Looping (CaL) is recognized as one of the most promising emerging technology for CO2 capture...
The manuscript is focused on the investigation of the calcination kinetics of fine particles (<50 µm...
The calcium looping process (Ca-L) is a promising technology to reduce of the carbon dioxide (CO2) e...
Relatively high CO2 footprint (5 to 8% of global CO2 emission) of ordinary portland cement (OPC) is ...
In this report, the findings of experimental research regarding Calcium Looping CO2 capture for the ...
One of the main challenges for commercialising calcium looping (CaL) as a CO2 capture technology is ...
The multicycle CO2 capture performance of CaO derived from the calcination of ball-milled limestone ...
The manuscript is focused on the determination of effective reaction rates for the formation of beli...
The use of cement raw meals as sorbent precursors for CO2 capture can reinforce the synergies betwee...
11 Figures, 2 Tables.-- © 2019. This manuscript version is made available under the CC-BY-NC-ND 4.0 ...
The sulfation phenomena of raw meal materials involved in calcium looping (CaL) applications to capt...
Cement production is responsible for around 7% of the global anthropogenic carbon dioxide emissions....
Calcium looping is a promising post-combustion technology for capturing CO2 from flue gases by using...
This document reports the progress to date in the investigation of reactor components in integrated ...
The cement industry is currently responsible for approximately 5 % of the global greenhouse gas emis...
Calcium Looping (CaL) is recognized as one of the most promising emerging technology for CO2 capture...
The manuscript is focused on the investigation of the calcination kinetics of fine particles (<50 µm...
The calcium looping process (Ca-L) is a promising technology to reduce of the carbon dioxide (CO2) e...
Relatively high CO2 footprint (5 to 8% of global CO2 emission) of ordinary portland cement (OPC) is ...
In this report, the findings of experimental research regarding Calcium Looping CO2 capture for the ...
One of the main challenges for commercialising calcium looping (CaL) as a CO2 capture technology is ...
The multicycle CO2 capture performance of CaO derived from the calcination of ball-milled limestone ...