The growing production of polyolefins, mainly polyethylene and polypropylene, currently demands increasing outputs of polymer-grade light olefins. The most commonly adopted process for the separation of olefin/paraffin mixtures is performed by energy intensive high pressure or cryogenic distillation, which is considered the most expensive operation in the petrochemical industry. The use of membrane technology offers a compact and modular solution for capital and energy savings, thanks to process intensification. In this work, we move one step forward in the design of hybrid propane/propylene separation systems, using computer aided modeling tools to identify economically optimal combinations of distillation and state-of-the-art membranes. A...
With 90 – 95% of all separations in the chemical and petrochemical plants, distillation is among the...
The growing consciousness for sustainable industrial processes has resulted in industrially develope...
The proposed design is for the the production of propene through propane dehydrogenation using Thyss...
Polymer grade propylene (99.5wt% propylene, 0.5wt% propane) is in high demand because it is used to ...
In this work, we explore the capabilities of an NLP optimization model to determine the viability of...
Propylene is industrially produced in a mixture with propane and generally separated from the mixtur...
Currently the separation of light hydrocarbon binaries, like ethylene-ethane mixture, is achieved al...
Separation of light gaseous olefins from paraffin’s of the refinery process off-gasses has been trad...
The study developed a model for hybrid distillation membrane that optimized the energy usage in bina...
In this work, a new consistent mathematical model for the description of the olefin flux through Ag+...
Since ethylene/ethane separation by cryogenic distillation is one of the most energy intensive proce...
The separation of ethylene from ethane in a commercial process is quite expensive both in capital an...
In this paper, the performances of potential zeolite membranes were estimated by the Maxwell-Stefan ...
Traditional systems for olefin/paraffin separation, like low-temperature distillation, are expensive...
Industrial olefin/paraffin separations heavily rely upon energy intensive distillation-based technol...
With 90 – 95% of all separations in the chemical and petrochemical plants, distillation is among the...
The growing consciousness for sustainable industrial processes has resulted in industrially develope...
The proposed design is for the the production of propene through propane dehydrogenation using Thyss...
Polymer grade propylene (99.5wt% propylene, 0.5wt% propane) is in high demand because it is used to ...
In this work, we explore the capabilities of an NLP optimization model to determine the viability of...
Propylene is industrially produced in a mixture with propane and generally separated from the mixtur...
Currently the separation of light hydrocarbon binaries, like ethylene-ethane mixture, is achieved al...
Separation of light gaseous olefins from paraffin’s of the refinery process off-gasses has been trad...
The study developed a model for hybrid distillation membrane that optimized the energy usage in bina...
In this work, a new consistent mathematical model for the description of the olefin flux through Ag+...
Since ethylene/ethane separation by cryogenic distillation is one of the most energy intensive proce...
The separation of ethylene from ethane in a commercial process is quite expensive both in capital an...
In this paper, the performances of potential zeolite membranes were estimated by the Maxwell-Stefan ...
Traditional systems for olefin/paraffin separation, like low-temperature distillation, are expensive...
Industrial olefin/paraffin separations heavily rely upon energy intensive distillation-based technol...
With 90 – 95% of all separations in the chemical and petrochemical plants, distillation is among the...
The growing consciousness for sustainable industrial processes has resulted in industrially develope...
The proposed design is for the the production of propene through propane dehydrogenation using Thyss...