International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by fossil fuel combustion, has led to concerns about global warming. A technology that could possibly contribute to reducing carbon dioxide emissions is the in-situ mineral sequestration (long term geological storage) or the ex-situ mineral sequestration (controlled industrial reactors) of CO2. In the present study, we propose to use coal combustion fly-ash, an industrial waste that contains about 4.1 wt.% of lime (CaO), to sequester carbon dioxide by aqueous carbonation. The carbonation reaction was carried out in two successive chemical reactions, first, the irreversible hydration of lime. CaO + H2O → Ca(OH)2 second, the spontaneous carbonation...
Thesis by publication."This thesis is presented in fulfilment of the requirement for the degree of D...
CO2 capturing, transport and sequestration by pressurized water dissolution and reacting by nat- ura...
International audienceThe global warming of Earth's near-surface, air and oceans in recent decades i...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
Carbonation of industrial wastes rich in earth-alkali oxides is found to have a significant potentia...
Carbon dioxide (CO2) as the most vital greenhouse gas in the earth’s atmosphere plays a major role i...
Mineral carbonation, involving reactions of alkaline earth oxides with CO2, has received great atten...
Carbonation of industrial wastes rich in earth-alkali oxides is found to have a significant potentia...
The increasing atmospheric carbon dioxide (CO2) concentration, mainly caused by fossil fuel combusti...
Carbonation of industrial wastes rich in earth-alkali oxides is found to have a significant potentia...
Thesis by publication."This thesis is presented in fulfilment of the requirement for the degree of D...
CO2 capturing, transport and sequestration by pressurized water dissolution and reacting by nat- ura...
International audienceThe global warming of Earth's near-surface, air and oceans in recent decades i...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
International audienceThe increasing CO2 concentration in the Earth's atmosphere, mainly caused by f...
Carbonation of industrial wastes rich in earth-alkali oxides is found to have a significant potentia...
Carbon dioxide (CO2) as the most vital greenhouse gas in the earth’s atmosphere plays a major role i...
Mineral carbonation, involving reactions of alkaline earth oxides with CO2, has received great atten...
Carbonation of industrial wastes rich in earth-alkali oxides is found to have a significant potentia...
The increasing atmospheric carbon dioxide (CO2) concentration, mainly caused by fossil fuel combusti...
Carbonation of industrial wastes rich in earth-alkali oxides is found to have a significant potentia...
Thesis by publication."This thesis is presented in fulfilment of the requirement for the degree of D...
CO2 capturing, transport and sequestration by pressurized water dissolution and reacting by nat- ura...
International audienceThe global warming of Earth's near-surface, air and oceans in recent decades i...