Calcining magnesite slag to capture CO2 is a new and simple method of processing CO2 and magnesite slag simultaneously. In this work, the CO2 capture capacity by calcined magnesite slag in wet flue gas simulated by adding water vapour was investigated. The magnesite slag exhibits excellent CO2 adsorption performance, with 3.01 mmol/g CO2 adsorption capacity, which is reduced to 2.18 mmol/g after 8 cycles and is obvious superior to magnesite. The structure and characterization of the magnesite slag are examined by XRF, FT-IR, TGDSC, XRD, CO2-TPD and BET. It can be confirmed by X-ray fluorescence analysis that the key component of magnesite slag is MgSiO3 and MgCO3. The results of this work indicate that the magnesite slag is an available ads...
Although Iron and steel industry is essential for the development of society, the industry is respon...
The application of accelerated carbonation to sequester CO2 in Waelz slag, a by-product from metallu...
MgO-based adsorbents were prepared by controlling the temperature of magnesite calcination, and the ...
We investigate the performance of steel slag during the carbonation-calcination looping as a potenti...
In this paper, the authors investigated the correlation between slag chemistry and CO2 binding capac...
Steel slag CO2 sequestration helps mitigate global warming and decrease the stockpile of steel slag ...
CO2 mineralization in slag has gained significant attention since it occurs with minimal human inter...
Ladle furnace slag (LFS) is a by-product of the steel industry and is difficult to be reused due to ...
Steel slag is a by-product of steelmaking which has emerged as a potential CO2 sequestration materia...
Due to increasing emissions of greenhouse gases into the atmosphere number of methods are being prop...
AbstractThis study was focused on carbonation of waste materials having low water-solubility in whic...
Alkaline industrial residues can be suitable materials for carbon dioxide sequestration through mine...
The objectives of this study are to synthesis EAF steel slag derived adsorbent for CO2 adsorption, t...
Mineral CO2 sequestration, i.e., carbonation of alkaline silicate Ca/Mg minerals, analogous to natur...
This paper examines the main results of an accelerated carbonation treatment applied to different ty...
Although Iron and steel industry is essential for the development of society, the industry is respon...
The application of accelerated carbonation to sequester CO2 in Waelz slag, a by-product from metallu...
MgO-based adsorbents were prepared by controlling the temperature of magnesite calcination, and the ...
We investigate the performance of steel slag during the carbonation-calcination looping as a potenti...
In this paper, the authors investigated the correlation between slag chemistry and CO2 binding capac...
Steel slag CO2 sequestration helps mitigate global warming and decrease the stockpile of steel slag ...
CO2 mineralization in slag has gained significant attention since it occurs with minimal human inter...
Ladle furnace slag (LFS) is a by-product of the steel industry and is difficult to be reused due to ...
Steel slag is a by-product of steelmaking which has emerged as a potential CO2 sequestration materia...
Due to increasing emissions of greenhouse gases into the atmosphere number of methods are being prop...
AbstractThis study was focused on carbonation of waste materials having low water-solubility in whic...
Alkaline industrial residues can be suitable materials for carbon dioxide sequestration through mine...
The objectives of this study are to synthesis EAF steel slag derived adsorbent for CO2 adsorption, t...
Mineral CO2 sequestration, i.e., carbonation of alkaline silicate Ca/Mg minerals, analogous to natur...
This paper examines the main results of an accelerated carbonation treatment applied to different ty...
Although Iron and steel industry is essential for the development of society, the industry is respon...
The application of accelerated carbonation to sequester CO2 in Waelz slag, a by-product from metallu...
MgO-based adsorbents were prepared by controlling the temperature of magnesite calcination, and the ...