A series of Li4SiO4 was synthesized using LiNO3 and six different silicon precursors. The precipitated-silica-derived Li4SiO4 presented the highest CO2 capacity in a 10 h sorption test, and ZSM-5-derived Li4SiO4 demonstrated the most rapid CO2 sorption. The CO2 sorption kinetics predominantly followed the nucleation mode and could be accurately described by the Avrami-Erofeev model. The Avrami-Erofeev model provided an in-depth analysis of correlation between sorption performance and material properties. Both the nucleation speed and nucleation dimensionality affected the overall sorption kinetics. The kinetics and pore-size distribution suggest that the sorption kinetics was dependent on the quantity of ∼4 nm-pores which favors nucleation ...
This Thesis investigates the production of novel lithium orthosilicate based materials to be used fo...
The application of a CO2 sorbent which releases CO2 at a lower temperature than calcium oxide is of ...
In this study, lithium orthosilicate-based pellets were developed and characterized as potential reg...
The present study investigated the CO2 sorption mechanism on lithium orthosilicate (Li4SiO4) doped w...
A series of lithium silicates with improved CO2 sorption capacity were successfully synthesized usin...
A series of lithium silicates with improved CO2 sorption capacity were successfully synthesized usin...
Lithium orthosilicate (Li4SiO4) is one of the most promising materials for CO 2 capture from flue ga...
Lithium orthosilicate (Li4SiO4) represents a potential class of high-temperature sorbents for CO2 ca...
Li4SiO4 is acknowledged as a promising sorbent candidate in high-temperature CO2 adsorption. However...
The purpose of the thesis is to synthesize solid sorbents for CO2 capture at high temperature. The m...
Lithium orthosilicate (Li4SiO4) is an attractive high-temperature CO2 sorbent (>650 ??C) because ...
5 Figures, 4 Tables.-- © 2018. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
K-doped lithium silicates were synthesized as CO2 sorbents using rice husks as silica source. Two di...
Lithium orthosilicate (Li4SiO4) is considered as one of the promising material for high temperature ...
Lithium silicate (Li4SiO4) material can be applied for CO2 capture in energy production processes, s...
This Thesis investigates the production of novel lithium orthosilicate based materials to be used fo...
The application of a CO2 sorbent which releases CO2 at a lower temperature than calcium oxide is of ...
In this study, lithium orthosilicate-based pellets were developed and characterized as potential reg...
The present study investigated the CO2 sorption mechanism on lithium orthosilicate (Li4SiO4) doped w...
A series of lithium silicates with improved CO2 sorption capacity were successfully synthesized usin...
A series of lithium silicates with improved CO2 sorption capacity were successfully synthesized usin...
Lithium orthosilicate (Li4SiO4) is one of the most promising materials for CO 2 capture from flue ga...
Lithium orthosilicate (Li4SiO4) represents a potential class of high-temperature sorbents for CO2 ca...
Li4SiO4 is acknowledged as a promising sorbent candidate in high-temperature CO2 adsorption. However...
The purpose of the thesis is to synthesize solid sorbents for CO2 capture at high temperature. The m...
Lithium orthosilicate (Li4SiO4) is an attractive high-temperature CO2 sorbent (>650 ??C) because ...
5 Figures, 4 Tables.-- © 2018. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
K-doped lithium silicates were synthesized as CO2 sorbents using rice husks as silica source. Two di...
Lithium orthosilicate (Li4SiO4) is considered as one of the promising material for high temperature ...
Lithium silicate (Li4SiO4) material can be applied for CO2 capture in energy production processes, s...
This Thesis investigates the production of novel lithium orthosilicate based materials to be used fo...
The application of a CO2 sorbent which releases CO2 at a lower temperature than calcium oxide is of ...
In this study, lithium orthosilicate-based pellets were developed and characterized as potential reg...