شماره ركورد كنفرانس :
4518
عنوان مقاله :
Mixed matrix membrane performance prediction for gas separation using modified Maxwell model
Author/Authors :
Ali Salimi Islamic Azad University, South Tehran Branch, Department of Chemical Engineering , Omid Bakhtiari Department of Chemical Engineering, Razi University, Kermanshah, Iran , Toraj Mohammadi Islamic Azad University, South Tehran Branch, Department of Chemical Engineering
كليدواژه :
Mixed Matrix Membrane , Gas separation , Performance Prediction , Modified Maxwell model
عنوان كنفرانس :
The 7th International Chemical Engineering Congress & Exhibition (IChEC 2011
چكيده لاتين :
Gas separation using membrane processes are potentially economical in industrial scale. Two parameters are
used for analyzing the membrane separation performance: permeability and selectivity. There is a tradeoff
between them for polymeric membranes make it impossible to increase both of them simultaneously.
Molecular sieve membranes, on the other hand, exhibit high permeability and selectivity but are brittle in
nature and costly. A new generation of membranes has made many hopes to use simultaneously both desired
properties of polymers and molecular sieves in a structure called “mixed matrix membrane (MMM)” where a
molecular sieve is incorporated within a polymer matrix. As other branches of science and engineering, having
a tool to predict MMMs performance seems to be essential to save time and money for research and industrial
applications. Many mathematical models were developed to predict MMMs performance based on separation
performance of fillers and polymers. Maxwell model is the simplest model developed for prediction of
electrical properties of composite materials but it is not perfect for all cases. Some modifications were
performed on Maxwell model and some other modified models were developed for better prediction of MMMs
separation performance. Modified Maxwell models were employed to predict gas separation performance of
some MMMs in the current work and the results were acceptable for all non-ideal cases which might be
occurred in MMMs structure