This work focuses on the optimization of a biogas upgrading process consisting of three CO2-permeable membranes. A 1-D membrane model, capable of handling multicomponent gas mixtures, is formulated as a set of differential algebraic equations and validated against experimental data. The model is used within a sequential algorithm to solve the simulation of the three-stage system. The key design variables (i.e., areas of each membrane module, stream pressures and recycle mass flow rates) are optimized using the recently developed MO-MCS algorithm, a derivative-free optimizer suitable for multi-objective problems. Results show that the Pareto-optimal solutions have a total plant cost in the range 720-770 €/(Nm3/h of feed) and an energy effici...
An optimization study of membrane-based separation systems for carbon dioxide capture from flue gas ...
AbstractThis paper describes a detailed process optimization of the mass and energy balances for mul...
In the future energy infrastructure there is a considerable potential for biogas and, in particular,...
This work focuses on the optimization of a biogas upgrading process consisting of three CO2-permeabl...
Biogas which mainly consists of methane and carbon dioxide is generated by digesting organic wastes,...
An intelligent optimization of multistage gas permeation layouts is required to achieve high product...
Biogas upgrading is actually limited to the production of biomethane as natural gas substitute. To r...
This paper applies mathematical programming and superstructure-based optimization approaches to desi...
M. Tech. (Chemical Engineering)The usual target of an upgrading process using membrane is to produce...
Membrane separation may substitute conventional energy intensive technologies, and it could have cos...
Membrane separation is a key technology for biogas purification. Multistaged processes based on eith...
International audienceA Global Optimization approach of membrane gas separation processes, based on ...
A Global Optimization approach of membrane gas separation processes, based on a general process supe...
Currently, membrane gas separation systems enjoy widespread acceptance in industry as multistage sys...
An optimization study of membrane-based separation systems for carbon dioxide capture from flue gas ...
AbstractThis paper describes a detailed process optimization of the mass and energy balances for mul...
In the future energy infrastructure there is a considerable potential for biogas and, in particular,...
This work focuses on the optimization of a biogas upgrading process consisting of three CO2-permeabl...
Biogas which mainly consists of methane and carbon dioxide is generated by digesting organic wastes,...
An intelligent optimization of multistage gas permeation layouts is required to achieve high product...
Biogas upgrading is actually limited to the production of biomethane as natural gas substitute. To r...
This paper applies mathematical programming and superstructure-based optimization approaches to desi...
M. Tech. (Chemical Engineering)The usual target of an upgrading process using membrane is to produce...
Membrane separation may substitute conventional energy intensive technologies, and it could have cos...
Membrane separation is a key technology for biogas purification. Multistaged processes based on eith...
International audienceA Global Optimization approach of membrane gas separation processes, based on ...
A Global Optimization approach of membrane gas separation processes, based on a general process supe...
Currently, membrane gas separation systems enjoy widespread acceptance in industry as multistage sys...
An optimization study of membrane-based separation systems for carbon dioxide capture from flue gas ...
AbstractThis paper describes a detailed process optimization of the mass and energy balances for mul...
In the future energy infrastructure there is a considerable potential for biogas and, in particular,...