Propylene is industrially produced in a mixture with propane and generally separated from the mixture via distillation. However, because distillation is an energy-consuming process, a more efficient separation process should be developed to mitigate both carbon dioxide (CO2) emissions and production costs. In this study, a two-stage membrane-separation process was designed, and its CO2 emission and production costs were evaluated. The separation processes were designed to minimize energy consumption using different membrane combinations (two recently developed membranes each). To evaluate the separation processes using various membrane combinations, two indicators, i.e., CO2 emissions and total annual costs (TACs), were estimated based on t...
This work studies the development of polymer membranes for the separation of hydrogen and carbon mon...
Naphtha cracker feedstocks contain 10–25 wt% aromatic hydrocarbons, which are not converted into the...
The use of membranes for hydrogen separation has been applied commercially in recent years. Several ...
Polymer grade propylene (99.5wt% propylene, 0.5wt% propane) is in high demand because it is used to ...
The growing production of polyolefins, mainly polyethylene and polypropylene, currently demands incr...
Molecular separations are essential in the production of many chemicals and purified products. Of al...
Membrane separation may substitute conventional energy intensive technologies, and it could have cos...
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...
The objective of the present research was to study the effects of different membrane processes confi...
Traditional systems for olefin/paraffin separation, like low-temperature distillation, are expensive...
Process intensification has led to significant developments in both distillation and membrane techno...
Industrial olefin/paraffin separations heavily rely upon energy intensive distillation-based technol...
Currently the separation of light hydrocarbon binaries, like ethylene-ethane mixture, is achieved al...
An intelligent optimization of multistage gas permeation layouts is required to achieve high product...
This work studies the development of polymer membranes for the separation of hydrogen and carbon mon...
Naphtha cracker feedstocks contain 10–25 wt% aromatic hydrocarbons, which are not converted into the...
The use of membranes for hydrogen separation has been applied commercially in recent years. Several ...
Polymer grade propylene (99.5wt% propylene, 0.5wt% propane) is in high demand because it is used to ...
The growing production of polyolefins, mainly polyethylene and polypropylene, currently demands incr...
Molecular separations are essential in the production of many chemicals and purified products. Of al...
Membrane separation may substitute conventional energy intensive technologies, and it could have cos...
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...
The objective of the present research was to study the effects of different membrane processes confi...
Traditional systems for olefin/paraffin separation, like low-temperature distillation, are expensive...
Process intensification has led to significant developments in both distillation and membrane techno...
Industrial olefin/paraffin separations heavily rely upon energy intensive distillation-based technol...
Currently the separation of light hydrocarbon binaries, like ethylene-ethane mixture, is achieved al...
An intelligent optimization of multistage gas permeation layouts is required to achieve high product...
This work studies the development of polymer membranes for the separation of hydrogen and carbon mon...
Naphtha cracker feedstocks contain 10–25 wt% aromatic hydrocarbons, which are not converted into the...
The use of membranes for hydrogen separation has been applied commercially in recent years. Several ...