A novel method to synthesize nesquehonite, MgCO3·. 3H2O, via reaction of a flux of gaseous CO2 with Mg chloride solution at ambient conditions, performed using a reactor, is here described. The reaction rate of the process is rapid, with deposition of abundant carbonate in few minutes. The results of a multi-disciplinary methodology, including SEM-EDAX, XRD,. ICP-AES and thermal analysis, suggest that the application of our method at industrial scale can be considered. Moreover, the. possibility to involve in the process saline wastewater as source of. Mg makes the method a promising complementary solution in the sequestration of anthropogenic CO2 at the expense of saline wastewater
AbstractCO2 mineral sequestration, a.k.a. mineral carbonation offers an alternative to “conventional...
In this work a novel strategy for bio-methane production and magnesium chloride waste valorization i...
Avoiding CO2 emissions to the atmosphere by its safe and permanent storage is required for all optio...
A novel method to synthesize nesquehonite, MgCO3·. 3H2O, via reaction of a flux of gaseous CO2 with ...
A novel method to synthesize nesquehonite, MgCO 3 3H 2O, via reaction of a flux of gaseous CO 2 with...
In this paper is reported a novel method to synthesize nesquehonite, MgCO3-3H(2)O, via reaction of a...
In this article we report the progress made in CO2 sequestration research via formation of synthetic...
The process developed for carbon dioxide sequestration utilizes a slurry of water mixed with olivine...
CO2 mineralization is a method of sequestering CO2 in the form of carbonated minerals. Brine dischar...
Direct aqueous mineral carbonation has been investigated as a process to convert gaseous CO{sub 2} i...
CO2 absorption and carbonate precipitation are the two core processes controlling the reaction rate ...
The U.S. Department of Energy's National Energy Technology Laboratory (NETL) located in Albany, OR (...
Direct mineral carbonation by an ex-situ process in an aqueous system has been investigated over the...
In order to gauge the appropriateness of CO2 reaction with Mg chloride solutions as a process for st...
The understanding of the thermal stability of magnesium carbonates and the relative metastability of...
AbstractCO2 mineral sequestration, a.k.a. mineral carbonation offers an alternative to “conventional...
In this work a novel strategy for bio-methane production and magnesium chloride waste valorization i...
Avoiding CO2 emissions to the atmosphere by its safe and permanent storage is required for all optio...
A novel method to synthesize nesquehonite, MgCO3·. 3H2O, via reaction of a flux of gaseous CO2 with ...
A novel method to synthesize nesquehonite, MgCO 3 3H 2O, via reaction of a flux of gaseous CO 2 with...
In this paper is reported a novel method to synthesize nesquehonite, MgCO3-3H(2)O, via reaction of a...
In this article we report the progress made in CO2 sequestration research via formation of synthetic...
The process developed for carbon dioxide sequestration utilizes a slurry of water mixed with olivine...
CO2 mineralization is a method of sequestering CO2 in the form of carbonated minerals. Brine dischar...
Direct aqueous mineral carbonation has been investigated as a process to convert gaseous CO{sub 2} i...
CO2 absorption and carbonate precipitation are the two core processes controlling the reaction rate ...
The U.S. Department of Energy's National Energy Technology Laboratory (NETL) located in Albany, OR (...
Direct mineral carbonation by an ex-situ process in an aqueous system has been investigated over the...
In order to gauge the appropriateness of CO2 reaction with Mg chloride solutions as a process for st...
The understanding of the thermal stability of magnesium carbonates and the relative metastability of...
AbstractCO2 mineral sequestration, a.k.a. mineral carbonation offers an alternative to “conventional...
In this work a novel strategy for bio-methane production and magnesium chloride waste valorization i...
Avoiding CO2 emissions to the atmosphere by its safe and permanent storage is required for all optio...