Alkaline wastes have been the focus of many studies as they act as CO2 sinks and have the potential to offset emissions from mining and steelmaking industries. Passive carbonation of alkaline wastes mimics natural silicate weathering and provides a promising alternative pathway for CO2 capture and storage as carbonates, requiring marginal human intervention when compared to ex-situ carbonation. This review summarizes the extant research that has investigated the passive carbonation of alkaline wastes, namely ironmaking and steelmaking slag, mine tailings and demolition wastes, over the past two decades. Here we report different factors that affect passive carbonation to address challenges that this process faces and to identify possible sol...
The steady increase of carbon dioxide (CO2) emissions to the atmosphere is considered the main respo...
Legacy iron (Fe) and steel wastes have been identified as a significant source of silicate minerals,...
Carbonation of industrial alkaline residues can be used as a CO2 sequestration technology to reduce ...
Alkaline wastes have been the focus of many studies as they act as CO2 sinks and have the potential ...
Mitigating global climate change is probably the largest environmental challenge of our age. Althoug...
Besides producing a substantial portion of anthropogenic CO2 emissions, the industrial sector also g...
Mineral carbonation of alkaline wastes can contribute to the sequestration of carbon dioxide (CO2). ...
AbstractDue to growing concern about climate change and global warming, new ways must be developed t...
ABSTRACT: The availability of industrial alkalinity sources is investigated to determine their poten...
Steel slag is a by-product of steelmaking which has emerged as a potential CO2 sequestration materia...
The necessity to develop and invest in carbon capture technologies that can minimize the amount of C...
Since the beginning of the industrial revolution, the anthropogenic emissions of carbon dioxide, whi...
peer reviewedMineral carbonation is a carbon utilisation technology in which an alkaline material re...
Besides producing a substantial portion of anthropogenic CO2 emissions, the industrial sector also g...
AbstractAround two billion tonnes of alkaline residues are produced globally each year by industries...
The steady increase of carbon dioxide (CO2) emissions to the atmosphere is considered the main respo...
Legacy iron (Fe) and steel wastes have been identified as a significant source of silicate minerals,...
Carbonation of industrial alkaline residues can be used as a CO2 sequestration technology to reduce ...
Alkaline wastes have been the focus of many studies as they act as CO2 sinks and have the potential ...
Mitigating global climate change is probably the largest environmental challenge of our age. Althoug...
Besides producing a substantial portion of anthropogenic CO2 emissions, the industrial sector also g...
Mineral carbonation of alkaline wastes can contribute to the sequestration of carbon dioxide (CO2). ...
AbstractDue to growing concern about climate change and global warming, new ways must be developed t...
ABSTRACT: The availability of industrial alkalinity sources is investigated to determine their poten...
Steel slag is a by-product of steelmaking which has emerged as a potential CO2 sequestration materia...
The necessity to develop and invest in carbon capture technologies that can minimize the amount of C...
Since the beginning of the industrial revolution, the anthropogenic emissions of carbon dioxide, whi...
peer reviewedMineral carbonation is a carbon utilisation technology in which an alkaline material re...
Besides producing a substantial portion of anthropogenic CO2 emissions, the industrial sector also g...
AbstractAround two billion tonnes of alkaline residues are produced globally each year by industries...
The steady increase of carbon dioxide (CO2) emissions to the atmosphere is considered the main respo...
Legacy iron (Fe) and steel wastes have been identified as a significant source of silicate minerals,...
Carbonation of industrial alkaline residues can be used as a CO2 sequestration technology to reduce ...