Many important industrial separation processes based on adsorption operate close to saturation. In this regime, the underlying adsorption processes are mostly driven by entropic forces. At equilibrium, the entropy of adsorption is closely related to the enthalpy of adsorption. Thus, studying the behavior of the enthalpy of adsorption as a function of loading is fundamental in the understanding of the separation processes. Unfortunately, close to saturation, the enthalpy of adsorption is hard to measure experimentally and hard to compute in simulations. In simulations the enthalpy of adsorption is usually obtained from energy/particle fluctuations in the grand-canonical ensemble, but this methodology is hampered by vanishing insertions/delet...
In this thesis we investigate the role of adsorbent physical and energetic heterogeneity on adsorpti...
Equilibrium adsorption and desorption in mesoporous adsorbents is considered on the basis of rigorou...
Assessing the adsorption properties of nanoporous materials and determining their structural charact...
Many important industrial separation processes based on adsorption operate close to saturation. In t...
Many important industrial separation processes based on adsorption operate close to saturation. In t...
A Grand Canonical Monte Carlo simulation method is used to determine the adsorption isotherms, inter...
We present a new approach to calculating excess isotherm and differential enthalpy of adsorption on ...
AbstractThe study of water sorption in microporous materials is of increasing interest, particularly...
Monte Carlo simulations are the foundational technique for predicting thermodynamic properties of op...
There are many industrially relevant separation processes which are either not feasible by conventio...
We present equations to calculate the differential and integral enthalpy changes of adsorption for t...
peer-reviewedCharacterization of the guest-host interactions and the heterogeneity of porous materia...
Characterization of the guest–host interactions and the heterogeneity of porous materials is essenti...
In an effort to understand the adsorption and transport of substrates in one-dimensional nanoporous ...
Monte Carlo simulations are the foundational technique for predicting thermodynamic properties of op...
In this thesis we investigate the role of adsorbent physical and energetic heterogeneity on adsorpti...
Equilibrium adsorption and desorption in mesoporous adsorbents is considered on the basis of rigorou...
Assessing the adsorption properties of nanoporous materials and determining their structural charact...
Many important industrial separation processes based on adsorption operate close to saturation. In t...
Many important industrial separation processes based on adsorption operate close to saturation. In t...
A Grand Canonical Monte Carlo simulation method is used to determine the adsorption isotherms, inter...
We present a new approach to calculating excess isotherm and differential enthalpy of adsorption on ...
AbstractThe study of water sorption in microporous materials is of increasing interest, particularly...
Monte Carlo simulations are the foundational technique for predicting thermodynamic properties of op...
There are many industrially relevant separation processes which are either not feasible by conventio...
We present equations to calculate the differential and integral enthalpy changes of adsorption for t...
peer-reviewedCharacterization of the guest-host interactions and the heterogeneity of porous materia...
Characterization of the guest–host interactions and the heterogeneity of porous materials is essenti...
In an effort to understand the adsorption and transport of substrates in one-dimensional nanoporous ...
Monte Carlo simulations are the foundational technique for predicting thermodynamic properties of op...
In this thesis we investigate the role of adsorbent physical and energetic heterogeneity on adsorpti...
Equilibrium adsorption and desorption in mesoporous adsorbents is considered on the basis of rigorou...
Assessing the adsorption properties of nanoporous materials and determining their structural charact...