Lignite is an important natural resource with the application potential covering present and future energy systems, including conventional power plants and gasification systems. Lignite is also a valuable precursor for the production of porous materials of tailored properties for various environmental applications, including the removal of contaminants from gaseous or liquid media. Although the lignite-based activated carbons are commercially available, various approaches to produce carbon materials of desired properties are still being reported, covering temperature, partial oxidation and chemical activation effects on surface and structural properties of these materials. Limited data is, however, available on the effects of pressure as th...
This study presents the effects of different activation methods to produce activated carbon from the...
Char structural changes occurring during gasification are normally only related to conversion and fe...
Slow pyrolysis of a typical high-ash lignite in China was carried out in atmospheres of N2, 20%CO2/N...
The aim of the present work was to investigate the effect of pressure and H-2 on the pyrolysis chara...
Summarization: Activated carbons were produced from raw and demineralized Greek lignites under vario...
Summarization: Twenty-six lignite samples, from eleven different basins of Greece, were examined as ...
Various carbonaceous materials are valuable resources for thermochemical conversion processes and fo...
Summarization: Coal specimens with different contents of inorganic constituents were produced from G...
The characteristics of the porous structure of carbonized materials affect their physical properties...
This is the final report on a project whose aim is to explore in a fundamental manner the factors th...
In the current work, a model has been successfully developed to describe the production of activated...
The porous structure of chars affects their reactivity in gasification, having an impact on the cour...
The effect of reduced pressure on the carbonization process in the production of activated carbon fr...
The effects of physical structure (pore structure) on behavior of water in lignite coal and activate...
This research presents the combustion behavior of lignite under different reaction pressures. Lignit...
This study presents the effects of different activation methods to produce activated carbon from the...
Char structural changes occurring during gasification are normally only related to conversion and fe...
Slow pyrolysis of a typical high-ash lignite in China was carried out in atmospheres of N2, 20%CO2/N...
The aim of the present work was to investigate the effect of pressure and H-2 on the pyrolysis chara...
Summarization: Activated carbons were produced from raw and demineralized Greek lignites under vario...
Summarization: Twenty-six lignite samples, from eleven different basins of Greece, were examined as ...
Various carbonaceous materials are valuable resources for thermochemical conversion processes and fo...
Summarization: Coal specimens with different contents of inorganic constituents were produced from G...
The characteristics of the porous structure of carbonized materials affect their physical properties...
This is the final report on a project whose aim is to explore in a fundamental manner the factors th...
In the current work, a model has been successfully developed to describe the production of activated...
The porous structure of chars affects their reactivity in gasification, having an impact on the cour...
The effect of reduced pressure on the carbonization process in the production of activated carbon fr...
The effects of physical structure (pore structure) on behavior of water in lignite coal and activate...
This research presents the combustion behavior of lignite under different reaction pressures. Lignit...
This study presents the effects of different activation methods to produce activated carbon from the...
Char structural changes occurring during gasification are normally only related to conversion and fe...
Slow pyrolysis of a typical high-ash lignite in China was carried out in atmospheres of N2, 20%CO2/N...