AbstractDue to growing concern about climate change and global warming, new ways must be developed to reduce CO2 emissions in atmosphere. Incinerator ash produced in municipal treatment facilities and marble-dust produced during marble cutting process are alkaline wastes. This paper examines the carbon mineral sequestration potential of mixing alkaline wastes in two soil samples in accelerated carbonation conditions. Six different percentages of alkaline wastes in 20g sample were used. Batch reactor conditions were maintained at 40°C, relative humidity 60-70% and CO2 flow-rate of 10 litres-a-minute. Optimum water content was found by carrying out experiments on a sample with 7 different water-to-solid ratio (0, 0.2, 0.4, 0.6, 0.8, 1 and 1.2...
In this experimental study we evaluated the application of an accelerated carbonation treatment on ...
Mitigating global climate change is probably the largest environmental challenge of our age. Althoug...
ABSTRACT: The availability of industrial alkalinity sources is investigated to determine their poten...
Since the beginning of the industrial revolution, the anthropogenic emissions of carbon dioxide, whi...
Mineral carbonation of alkaline wastes can contribute to the sequestration of carbon dioxide (CO2). ...
Alkaline industrial residues can be suitable materials for carbon dioxide sequestration through mine...
Mineral CO2 sequestration, i.e., carbonation of alkaline silicate Ca/Mg minerals, analogous to natur...
Mineral carbonation, involving reactions of alkaline earth oxides with CO2, has received great atten...
International audienceThe global warming of Earth's near-surface, air and oceans in recent decades i...
Carbon dioxide mineral sequestration with steelmaking slag is a promising method for reducing carbon...
The steady increase of carbon dioxide (CO2) emissions to the atmosphere is considered the main respo...
Alkaline wastes have been the focus of many studies as they act as CO2 sinks and have the potential ...
Alkaline wastes have been the focus of many studies as they act as CO2 sinks and have the potential ...
The necessity to develop and invest in carbon capture technologies that can minimize the amount of C...
Carbon sequestration through the formation of carbonates is a potential means to reduce CO 2 emissio...
In this experimental study we evaluated the application of an accelerated carbonation treatment on ...
Mitigating global climate change is probably the largest environmental challenge of our age. Althoug...
ABSTRACT: The availability of industrial alkalinity sources is investigated to determine their poten...
Since the beginning of the industrial revolution, the anthropogenic emissions of carbon dioxide, whi...
Mineral carbonation of alkaline wastes can contribute to the sequestration of carbon dioxide (CO2). ...
Alkaline industrial residues can be suitable materials for carbon dioxide sequestration through mine...
Mineral CO2 sequestration, i.e., carbonation of alkaline silicate Ca/Mg minerals, analogous to natur...
Mineral carbonation, involving reactions of alkaline earth oxides with CO2, has received great atten...
International audienceThe global warming of Earth's near-surface, air and oceans in recent decades i...
Carbon dioxide mineral sequestration with steelmaking slag is a promising method for reducing carbon...
The steady increase of carbon dioxide (CO2) emissions to the atmosphere is considered the main respo...
Alkaline wastes have been the focus of many studies as they act as CO2 sinks and have the potential ...
Alkaline wastes have been the focus of many studies as they act as CO2 sinks and have the potential ...
The necessity to develop and invest in carbon capture technologies that can minimize the amount of C...
Carbon sequestration through the formation of carbonates is a potential means to reduce CO 2 emissio...
In this experimental study we evaluated the application of an accelerated carbonation treatment on ...
Mitigating global climate change is probably the largest environmental challenge of our age. Althoug...
ABSTRACT: The availability of industrial alkalinity sources is investigated to determine their poten...