Removing carbon dioxide from industrial effluents (i.e. flue gas) via solid sorbents is a potential greenhouse gas mitigation strategy. Lithium orthosilicate (Li4SiO4) is one of the most promising materials for CO2 capture at high temperature (500-700 °C). In this study, the non-hydrolytic sol-gel technique was used to synthesized Li4SiO4 nanoparticles for improving lithium silicate features as solid sorbent for carbon dioxide. The CO2 sorption properties of the obtained nanoparticles were investigated by using a thermal gravimetric analyzer (TGA) in a controlled gas flow environment at CO2 partial pressure of 0.6 atm and at 700 °C. Li4SiO4 nanoparticles with average diameter less than 100 nm aggregated in clusters less than 500 nm were o...
Lithium silicates have attracted great attention in recent years due to their potential use as high-...
We report on the synthesis of nanocrystalline lithium silicate by coupling of sol–gel method in reve...
AbstractHigh temperature CO2 separation is effective for the efficient CO2 reduction. Li4SiO4 is one...
Lithium orthosilicate (Li4SiO4) represents a potential class of high-temperature sorbents for CO2 ca...
Since the CO2 separation is the first and most energy intensive step of carbon capture and storage (...
The purpose of the thesis is to synthesize solid sorbents for CO2 capture at high temperature. The m...
Lithium orthosilicate (Li4SiO4) is known to be a high temperature CO2 capture material. This work wa...
In this study, high-temperature CO2 capture by solid sorbent based on lithium orthosilicate (Li4SiO4...
In this study, lithium orthosilicate-based pellets were developed and characterized as potential reg...
The effective capturing of carbon dioxide using regenerable high capacity sorbents is a prerequisite...
Platelet-shaped lithium orthosilicate particles synthesized by a sol–gel approach employing the prec...
5 Figures, 4 Tables.-- © 2018. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
A series of Li4SiO4 was synthesized using LiNO3 and six different silicon precursors. The precipitat...
Lithium orthosilicate (Li4SiO4) is one of the most promising materials for CO 2 capture from flue ga...
The aim of this research work is to optimize the synthesis of Li4SiO4 by a solid state method to max...
Lithium silicates have attracted great attention in recent years due to their potential use as high-...
We report on the synthesis of nanocrystalline lithium silicate by coupling of sol–gel method in reve...
AbstractHigh temperature CO2 separation is effective for the efficient CO2 reduction. Li4SiO4 is one...
Lithium orthosilicate (Li4SiO4) represents a potential class of high-temperature sorbents for CO2 ca...
Since the CO2 separation is the first and most energy intensive step of carbon capture and storage (...
The purpose of the thesis is to synthesize solid sorbents for CO2 capture at high temperature. The m...
Lithium orthosilicate (Li4SiO4) is known to be a high temperature CO2 capture material. This work wa...
In this study, high-temperature CO2 capture by solid sorbent based on lithium orthosilicate (Li4SiO4...
In this study, lithium orthosilicate-based pellets were developed and characterized as potential reg...
The effective capturing of carbon dioxide using regenerable high capacity sorbents is a prerequisite...
Platelet-shaped lithium orthosilicate particles synthesized by a sol–gel approach employing the prec...
5 Figures, 4 Tables.-- © 2018. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
A series of Li4SiO4 was synthesized using LiNO3 and six different silicon precursors. The precipitat...
Lithium orthosilicate (Li4SiO4) is one of the most promising materials for CO 2 capture from flue ga...
The aim of this research work is to optimize the synthesis of Li4SiO4 by a solid state method to max...
Lithium silicates have attracted great attention in recent years due to their potential use as high-...
We report on the synthesis of nanocrystalline lithium silicate by coupling of sol–gel method in reve...
AbstractHigh temperature CO2 separation is effective for the efficient CO2 reduction. Li4SiO4 is one...