We describe procedures to propagate the uncertainty in adsorption data and alpha(S)-values to generate uncertainty in apparent primary, secondary, and total micropore volumes for porous activated carbons exhibiting Type I and IV character. The alpha(S)-data are interpolated from selected non-porous reference material (NPRM) adsorption isotherm data with some adsorbents exhibiting surface chemistry quite different from and some similar to that of the porous adsorbents (PA). We show that a statistically constant apparent total micropore volume can be determined independent of the NPRM surface chemistry. In contrast, NPRM surface chemistry appears to influence our ability to identify unequivocally the filling and condensation ranges of micropo...
Different authors investigated the effects of geometric and energetic heterogeneities on adsorption ...
The applicability of BET model for calculation of surface area of activated carbons is checked by us...
A new micropore filling model, which has a Henry's law region and predicts an upper limit to micropo...
Procedures for propagation of uncertainty in pore size distribution calculation based on classical m...
Uncertainty in the amount adsorbed in manometric adsorption isotherm measurements is well establishe...
Nitrogen (N_2, at 77 K and sub-atmospheric pressure), carbon dioxide (CO_2, at 273 K, sub-atmospheri...
Macroscopic, highly disordered, mesoporous materials present a continuing challenge for accurate por...
The applicability of BET model for calculation of surface area of activated carbons is checked by us...
Amorphous materials are usually characterized using nitrogen adsorption isotherms at 77 K taken at p...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
The applicability of BET model for calculation of surface area of activated carbons is checked by us...
Accessible volume, geometrical area and accessible pore size distribution are the fundamental struct...
The constrained regularisation procedure was applied to compute the pore size distributions (PSDs, f...
Different authors investigated the effects of geometric and energetic heterogeneities on adsorption ...
The applicability of BET model for calculation of surface area of activated carbons is checked by us...
A new micropore filling model, which has a Henry's law region and predicts an upper limit to micropo...
Procedures for propagation of uncertainty in pore size distribution calculation based on classical m...
Uncertainty in the amount adsorbed in manometric adsorption isotherm measurements is well establishe...
Nitrogen (N_2, at 77 K and sub-atmospheric pressure), carbon dioxide (CO_2, at 273 K, sub-atmospheri...
Macroscopic, highly disordered, mesoporous materials present a continuing challenge for accurate por...
The applicability of BET model for calculation of surface area of activated carbons is checked by us...
Amorphous materials are usually characterized using nitrogen adsorption isotherms at 77 K taken at p...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
The applicability of BET model for calculation of surface area of activated carbons is checked by us...
Accessible volume, geometrical area and accessible pore size distribution are the fundamental struct...
The constrained regularisation procedure was applied to compute the pore size distributions (PSDs, f...
Different authors investigated the effects of geometric and energetic heterogeneities on adsorption ...
The applicability of BET model for calculation of surface area of activated carbons is checked by us...
A new micropore filling model, which has a Henry's law region and predicts an upper limit to micropo...