In order to gauge the appropriateness of CO2 reaction with Mg chloride solutions as a process for storing carbon dioxide, the thermal behaviour and structural stability of its solid product, nesquehonite (MgCO3·3H2O), were investigated in situ using real-time laboratory parallel-beam X-ray powder diffraction. The results suggest that the nesquehonite structure remains substantially unaffected up to 373K, with the exception of a markedly anisotropic thermal expansion acting mainly along the c axis. In the 371-390K range, the loss of one water molecule results in the nucleation of a phase of probable composition MgCO3·2H2O, which is characterized by significant structural disorder. At higher temperatures (423-483K), both magnesite and MgO·2Mg...
In this work, the potential of CO2 mineral carbonation of brucite (Mg(OH)2) derived from the Mount T...
This study documents the paragenesis of magnesium carbonates formed during degassing of CO2 from a 0...
Advisors: Mark R. Frank.Committee members: Nicole D. LaDue; Jim Walker.The deep carbon cycle can be ...
The understanding of the thermal stability of magnesium carbonates and the relative metastability of...
The application of hydrated Mg-carbonates as CO2 sequestering media is a pressing environmentalchall...
In this study, homogeneous (unseeded) precipitation of nesquehonite (MgCO3 center dot 3H(2)O)) by th...
In this paper is reported a novel method to synthesize nesquehonite, MgCO3-3H(2)O, via reaction of a...
Magnesium carbonate production at the industrial scale is a realistic option to reduce the industria...
Nesquehonite, Mg(HCO3)(OH).2H2O or MgCO3.3H2O, was named after its type locality in Nesquehoning, Pe...
Recently, the mineral carbonation via the reaction of CO2 with saline aquafers received much attenti...
The reaction of magnesium minerals such as brucite with CO2 is important in the sequestration of CO2...
Experimental work on the carbonation of brucite has been carried out in the temperature and pressure...
Nesquehonite, Mg(HCO3)(OH).2H2O or MgCO3.3H2O, was named after its type locality in Nesquehoning, Pe...
The solubility of nesquehonite (MgCO3 center dot 3H(2)O) and calcite (CaCO3) in carbonated water wit...
This work reports the stability and solubility of nesquehonite in several salts (NaCl, NH4Cl, MgCl2,...
In this work, the potential of CO2 mineral carbonation of brucite (Mg(OH)2) derived from the Mount T...
This study documents the paragenesis of magnesium carbonates formed during degassing of CO2 from a 0...
Advisors: Mark R. Frank.Committee members: Nicole D. LaDue; Jim Walker.The deep carbon cycle can be ...
The understanding of the thermal stability of magnesium carbonates and the relative metastability of...
The application of hydrated Mg-carbonates as CO2 sequestering media is a pressing environmentalchall...
In this study, homogeneous (unseeded) precipitation of nesquehonite (MgCO3 center dot 3H(2)O)) by th...
In this paper is reported a novel method to synthesize nesquehonite, MgCO3-3H(2)O, via reaction of a...
Magnesium carbonate production at the industrial scale is a realistic option to reduce the industria...
Nesquehonite, Mg(HCO3)(OH).2H2O or MgCO3.3H2O, was named after its type locality in Nesquehoning, Pe...
Recently, the mineral carbonation via the reaction of CO2 with saline aquafers received much attenti...
The reaction of magnesium minerals such as brucite with CO2 is important in the sequestration of CO2...
Experimental work on the carbonation of brucite has been carried out in the temperature and pressure...
Nesquehonite, Mg(HCO3)(OH).2H2O or MgCO3.3H2O, was named after its type locality in Nesquehoning, Pe...
The solubility of nesquehonite (MgCO3 center dot 3H(2)O) and calcite (CaCO3) in carbonated water wit...
This work reports the stability and solubility of nesquehonite in several salts (NaCl, NH4Cl, MgCl2,...
In this work, the potential of CO2 mineral carbonation of brucite (Mg(OH)2) derived from the Mount T...
This study documents the paragenesis of magnesium carbonates formed during degassing of CO2 from a 0...
Advisors: Mark R. Frank.Committee members: Nicole D. LaDue; Jim Walker.The deep carbon cycle can be ...