Lithium silicate (Li4SiO4) material can be applied for CO2 capture in energy production processes, such as hydrogen plants, based on sorption-enhanced reforming and fossil fuel-fired power plants, which has attracted research interests of many researchers. However, CO2 absorption performance of Li4SiO4 material prepared by the traditional solid-state reaction method is unsatisfactory during the absorption/regeneration cycles. Improving CO2 absorption capacity and cyclic stability of Li4SiO4 material is a research highlight during the energy production processes. The state-of-the-art kinetic and quantum mechanical studies on the preparation and CO2 absorption process of Li4SiO4 material are summarized, and the recent studies on the effects o...
Lithium orthosilicate (Li4SiO4) is an attractive high-temperature CO2 sorbent (>650 ??C) because ...
Lithium orthosilicate (Li4SiO4) represents a potential class of high-temperature sorbents for CO2 ca...
The application of a CO2 sorbent which releases CO2 at a lower temperature than calcium oxide is of ...
The aim of this research work is to optimize the synthesis of Li4SiO4 by a solid state method to max...
A series of Li4SiO4 was synthesized using LiNO3 and six different silicon precursors. The precipitat...
The aim of this research work is to optimize the synthesis of Li4SiO4 by solid state method to maxim...
7 figures, 2 tables.Lithium-based sorbents are considered as promising candidates for post-combustio...
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 silicates have attracted great attention in recent years due to their potential use as high-...
Li4SiO4 is acknowledged as a promising sorbent candidate in high-temperature CO2 adsorption. However...
10 Figuras, 1 TablaThis study investigates CO2 capture on in-house-prepared Li4SiO4, a commercial Li...
5 Figures, 4 Tables.-- © 2018. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
CO2 adsorption is an important approach to control the excessive CO2 emission from energy and indust...
Lithium orthosilicate (Li4SiO4) is an attractive high-temperature CO2 sorbent (>650 ??C) because ...
Lithium orthosilicate (Li4SiO4) represents a potential class of high-temperature sorbents for CO2 ca...
The application of a CO2 sorbent which releases CO2 at a lower temperature than calcium oxide is of ...
The aim of this research work is to optimize the synthesis of Li4SiO4 by a solid state method to max...
A series of Li4SiO4 was synthesized using LiNO3 and six different silicon precursors. The precipitat...
The aim of this research work is to optimize the synthesis of Li4SiO4 by solid state method to maxim...
7 figures, 2 tables.Lithium-based sorbents are considered as promising candidates for post-combustio...
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 silicates have attracted great attention in recent years due to their potential use as high-...
Li4SiO4 is acknowledged as a promising sorbent candidate in high-temperature CO2 adsorption. However...
10 Figuras, 1 TablaThis study investigates CO2 capture on in-house-prepared Li4SiO4, a commercial Li...
5 Figures, 4 Tables.-- © 2018. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
CO2 adsorption is an important approach to control the excessive CO2 emission from energy and indust...
Lithium orthosilicate (Li4SiO4) is an attractive high-temperature CO2 sorbent (>650 ??C) because ...
Lithium orthosilicate (Li4SiO4) represents a potential class of high-temperature sorbents for CO2 ca...
The application of a CO2 sorbent which releases CO2 at a lower temperature than calcium oxide is of ...