The separation of xylenes is one of the most important processes in the petrochemical industry. In this article, the competitive adsorption from a fluid-phase mixture of xylenes in zeolites is studied. Adsorption from both vapor and liquid phases is considered. Computations of adsorption of pure xylenes and a mixture of xylenes at chemical equilibrium in several zeolite types at 250 °C are performed by Monte Carlo simulations. It is observed that shape and size selectivity entropic effects are predominant for small one-dimensional systems. Entropic effects due to the efficient arrangement of xylenes become relevant for large one-dimensional systems. For zeolites with two intersecting channels, the selectivity is determined by a competition ...
The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers...
Adsorption of molecules in ordered microporous solids involves specific energetic and entropic effec...
Recent developments in Monte Carlo (MC) simulation techniques have enabled the accurate calculation ...
The separation of C8 aromatic hydrocarbons (e.g. xylenes) is one of the most important processes in ...
The separation of p-xylene and m-xylene from C8 aromatic hydrocarbon feed using Y zeolites is invest...
Energy minimization methodology has been used to study the interaction of isomers of xylene with ZSM...
A systematic and detailed analysis of adsorption and diffusion properties of xylene isomers over Bet...
This work presents results of molecular simulations on adsorption of mixtures of the four xylene iso...
A systematic and detailed analysis of adsorption and diffusion properties of xylene isomers over Bet...
Xylene isomers are precursors in many important chemical processes, yet their separation via crystal...
The xylenes (C8 aromatics) are isomers compounds obtained from the petroleum fractions. Separation o...
Numerous industrial operations involve zeolite adsorbents: separation of aromatics, separation of hi...
The development of energy-efficient processes for selective separation of p-xylene from mixtures wit...
Adsorption of molecules in ordered microporous solids involves specific energetic and entropic effec...
Adsorption of molecules in ordered microporous solids involves specific energetic and entropic effec...
The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers...
Adsorption of molecules in ordered microporous solids involves specific energetic and entropic effec...
Recent developments in Monte Carlo (MC) simulation techniques have enabled the accurate calculation ...
The separation of C8 aromatic hydrocarbons (e.g. xylenes) is one of the most important processes in ...
The separation of p-xylene and m-xylene from C8 aromatic hydrocarbon feed using Y zeolites is invest...
Energy minimization methodology has been used to study the interaction of isomers of xylene with ZSM...
A systematic and detailed analysis of adsorption and diffusion properties of xylene isomers over Bet...
This work presents results of molecular simulations on adsorption of mixtures of the four xylene iso...
A systematic and detailed analysis of adsorption and diffusion properties of xylene isomers over Bet...
Xylene isomers are precursors in many important chemical processes, yet their separation via crystal...
The xylenes (C8 aromatics) are isomers compounds obtained from the petroleum fractions. Separation o...
Numerous industrial operations involve zeolite adsorbents: separation of aromatics, separation of hi...
The development of energy-efficient processes for selective separation of p-xylene from mixtures wit...
Adsorption of molecules in ordered microporous solids involves specific energetic and entropic effec...
Adsorption of molecules in ordered microporous solids involves specific energetic and entropic effec...
The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers...
Adsorption of molecules in ordered microporous solids involves specific energetic and entropic effec...
Recent developments in Monte Carlo (MC) simulation techniques have enabled the accurate calculation ...