Upon heating, hydrated magnesium carbonates (HMCs) undergo a continuous sequence of decomposition reactions. This study aims to investigate the thermal decomposition of various commercially produced HMCs classified as light and heavy, highlight their differences, and provide an insight into their compositions in accordance with the results obtained from thermal analysis and microstructure studies. An understanding of the chemical compositions and microstructures, and a better knowledge of the reactions that take place during the decomposition of HMCs were achieved through the use of SEM, XRD, and TG/differential thermal analysis (DTA). The quantification of their CO2 contents was provided by TG and dissolving the samples in HCl acid. Result...
Thermal analysis complimented with evolved gas mass spectrometry has been applied to hydrotalcites c...
The effect of NaNO3 and its physical state on the thermal decomposition pathways of hydrated magnesi...
The effect of NaNO3 and its physical state on the thermal decomposition pathways of hydrated magnesi...
Upon heating, hydrated magnesium carbonates (HMCs) undergo a continuous sequence of decomposition re...
Upon heating, hydrated magnesium carbonates (HMCs) undergo a continuous sequence of decomposition re...
Thermal decomposition of basic magnesium carbonate impregnated with alkali metal (Li, Na, K, Rb and ...
The thermal decomposition process of basic magnesium carbonate was investigated. Firstly, Basic magn...
To improve the energy efficiency of an industrial process thermochemical energy storage (TCES) can b...
To improve the energy efficiency of an industrial process thermochemical energy storage (TCES) can b...
Thermal analysis (TG, DTG, DTA) of a number of basic magnesium carbonate samples, prepared by precip...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
Various morphologies of magnesium carbonate hydrates have been synthesized by carefully adjusting th...
Thermal analysis complimented with evolved gas mass spectrometry has been applied to hydrotalcites c...
The effect of NaNO3 and its physical state on the thermal decomposition pathways of hydrated magnesi...
The effect of NaNO3 and its physical state on the thermal decomposition pathways of hydrated magnesi...
Upon heating, hydrated magnesium carbonates (HMCs) undergo a continuous sequence of decomposition re...
Upon heating, hydrated magnesium carbonates (HMCs) undergo a continuous sequence of decomposition re...
Thermal decomposition of basic magnesium carbonate impregnated with alkali metal (Li, Na, K, Rb and ...
The thermal decomposition process of basic magnesium carbonate was investigated. Firstly, Basic magn...
To improve the energy efficiency of an industrial process thermochemical energy storage (TCES) can b...
To improve the energy efficiency of an industrial process thermochemical energy storage (TCES) can b...
Thermal analysis (TG, DTG, DTA) of a number of basic magnesium carbonate samples, prepared by precip...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
Various morphologies of magnesium carbonate hydrates have been synthesized by carefully adjusting th...
Thermal analysis complimented with evolved gas mass spectrometry has been applied to hydrotalcites c...
The effect of NaNO3 and its physical state on the thermal decomposition pathways of hydrated magnesi...
The effect of NaNO3 and its physical state on the thermal decomposition pathways of hydrated magnesi...