This paper addresses the techno-economic assessment of two membrane-based technologies for H2 production from natural gas, fully integrated with CO2 capture. In the first configuration, a fluidized bed membrane reactor (FBMR) is integrated in the H2 plant: the natural gas reacts with steam in the catalytic bed and H2 is simultaneously separated using Pd-based membranes, and the heat of reaction is provided to the system by feeding air as reactive sweep gas in part of the membranes and by burning part of the permeated H2 (in order to avoid CO2 emissions for heat supply). In the second system, named membrane assisted chemical looping reforming (MA-CLR), natural gas is converted in the fuel rector by reaction with steam and an oxygen carrier (...
Process simulation and design as well as economic analysis were carried out to evaluate technical an...
Techno-economic analysis (TEA) for CO2 reforming of methane in a membrane reactor (MR) was conducted...
This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of w...
AbstractThis paper addresses the techno-economic assessment of two membrane-based technologies for H...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
A recent techno-economic study (Spallina et al., Energy Conversion and Management 120: p. 257–273) s...
There is great consensus that hydrogen will become an important energy carrier in the future. Curren...
Hydrogen (H-2) is currently receiving significant attention as a sustainable energy carrier. Steam m...
This paper presents a new membrane reactor concept for ultra-pure hydrogen production with integrate...
This paper presents a new membrane reactor concept for ultra-pure hydrogen production with integrate...
In this work a novel reactor concept referred to as Membrane-Assisted Chemical Looping Reforming (MA...
AbstractA techno-economic evaluation of the application of membrane reactors in natural gas combined...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
Process simulation and design as well as economic analysis were carried out to evaluate technical an...
Techno-economic analysis (TEA) for CO2 reforming of methane in a membrane reactor (MR) was conducted...
This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of w...
AbstractThis paper addresses the techno-economic assessment of two membrane-based technologies for H...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
This paper addresses the techno-economic assessment of two membrane-based technologies for H2 produc...
A recent techno-economic study (Spallina et al., Energy Conversion and Management 120: p. 257–273) s...
There is great consensus that hydrogen will become an important energy carrier in the future. Curren...
Hydrogen (H-2) is currently receiving significant attention as a sustainable energy carrier. Steam m...
This paper presents a new membrane reactor concept for ultra-pure hydrogen production with integrate...
This paper presents a new membrane reactor concept for ultra-pure hydrogen production with integrate...
In this work a novel reactor concept referred to as Membrane-Assisted Chemical Looping Reforming (MA...
AbstractA techno-economic evaluation of the application of membrane reactors in natural gas combined...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
Process simulation and design as well as economic analysis were carried out to evaluate technical an...
Techno-economic analysis (TEA) for CO2 reforming of methane in a membrane reactor (MR) was conducted...
This study investigates the impact of the membrane reactor (MR) technology with in-situ removal of w...