The performance of perovskite membrane-assisted fluidized bed reactors for ultra-high purity hydrogen production through autothermal reforming of methane has been investigated using numerical simulations. Two different three-phase phenomenological models have been developed differing in their description of the mass transfer between the membranes and the emulsion, cloud and bubble phases, where the parameters in the oxygen permeation flux expression were determined from new experimental data. The calculation of the required oxygen-to-carbon ratio is based on overall enthalpy balance. The reactor performance without and with O2 permeable perovskite membranes have been investigated and compared. The two models of perovskite membrane-assisted ...
The reactor performance of two novel fluidized bed membrane reactor configurations for hydrogen prod...
Membrane reactors, combining production and separation of pure hydrogen in one vessel, outperform co...
Membrane reactors are attracting increasing interest because of the opportunity they represent in in...
The performance of perovskite membrane-assisted fluidized bed reactors for ultra-high purity hydroge...
In this work the performance of different membrane reactor concepts, both fluidized bed and packed b...
The Author(s) 2008. This article is published with open access at Springerlink.com Abstract Two flui...
The main objective of this study is to investigate on the ability of a perovskite-based membrane rea...
A novel multifunctional reactor concept has been developed for the production of ultrapure H2 (<10 p...
International audienceA bubbling fluidized bed membrane reactor for steam reforming of methane is ma...
The reactor performance of two novel fluidized bed membrane reactor configurations for hydrogen prod...
A novel fluidized bed membrane reactor with internal catalyst circulation is being developed for the...
This work reports the integration of thin (∼3–4 μm thick) Pd-based membranes for H2 separation in a ...
A generalized comprehensive model, coupled with experimentation in a pilot reactor, is developed to ...
Two fluidized bed membrane reactor concepts for hydrogen production via autothermal reforming of met...
The reactor performance of two novel fluidized bed membrane reactor configurations for hydrogen prod...
Membrane reactors, combining production and separation of pure hydrogen in one vessel, outperform co...
Membrane reactors are attracting increasing interest because of the opportunity they represent in in...
The performance of perovskite membrane-assisted fluidized bed reactors for ultra-high purity hydroge...
In this work the performance of different membrane reactor concepts, both fluidized bed and packed b...
The Author(s) 2008. This article is published with open access at Springerlink.com Abstract Two flui...
The main objective of this study is to investigate on the ability of a perovskite-based membrane rea...
A novel multifunctional reactor concept has been developed for the production of ultrapure H2 (<10 p...
International audienceA bubbling fluidized bed membrane reactor for steam reforming of methane is ma...
The reactor performance of two novel fluidized bed membrane reactor configurations for hydrogen prod...
A novel fluidized bed membrane reactor with internal catalyst circulation is being developed for the...
This work reports the integration of thin (∼3–4 μm thick) Pd-based membranes for H2 separation in a ...
A generalized comprehensive model, coupled with experimentation in a pilot reactor, is developed to ...
Two fluidized bed membrane reactor concepts for hydrogen production via autothermal reforming of met...
The reactor performance of two novel fluidized bed membrane reactor configurations for hydrogen prod...
Membrane reactors, combining production and separation of pure hydrogen in one vessel, outperform co...
Membrane reactors are attracting increasing interest because of the opportunity they represent in in...