The combination of chemical-looping combustion (CLC) and steam methane reforming (SMR) bears the potential for quantitative and energy-efficient CO2 capture along with hydrogen production from natural gas. A 2-dimensional axisymmetric model of a SMR tube was used to estimate the possibility to adapt the tube dimensions to better fit into fluidized-bed heat exchangers. A constant surrounding fluidized-bed temperature was set as the boundary condition. There are two phenomena that affect the reactor performance: the effective heat-transfer rate from the fluidized bed to and through the tube wall and onward to and into the catalyst bed on the one hand and the effective reaction rates of the governing chemical reactions on the other hand. Liter...
AbstractSorption enhanced - steam methane reforming (SE-SMR) is a promising process in the search fo...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
Membrane reactors has recently emerged as one of the most promising technologies for pure hydrogen p...
The possibility to integrate fluidized beds as heat sources for steam reforming in industrial hydrog...
This article discusses the concept of combining steam methane reforming (SMR) with fluidized beds of...
The possibility to integrate fluidized beds as heat sources for steam reforming in hydrogen producti...
Sorption Enhanced Steam Methane Reforming (SE-SMR) is a novel way of reforming natural gas to high p...
AbstractThis paper addresses the experimental demonstration and model validation of chemical looping...
Two-step steam methane reforming for hydrogen production using a chemical looping system is proposed...
A steam reformer of a hydrogen plant is a device that supplies heat to convert the natural gas or li...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
In this paper, a novel process for hydrogen production by steam reforming of natural gas with inhere...
\u3cp\u3eBy means of steam reforming, natural gas is converted to carbon dioxide and hydrogen. The r...
Methane reforming is one of the important technologies that produce syngas or hydrogen for the produ...
In the chemical industry, hydrogen (H2) production through steam-methane reforming is a well-establi...
AbstractSorption enhanced - steam methane reforming (SE-SMR) is a promising process in the search fo...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
Membrane reactors has recently emerged as one of the most promising technologies for pure hydrogen p...
The possibility to integrate fluidized beds as heat sources for steam reforming in industrial hydrog...
This article discusses the concept of combining steam methane reforming (SMR) with fluidized beds of...
The possibility to integrate fluidized beds as heat sources for steam reforming in hydrogen producti...
Sorption Enhanced Steam Methane Reforming (SE-SMR) is a novel way of reforming natural gas to high p...
AbstractThis paper addresses the experimental demonstration and model validation of chemical looping...
Two-step steam methane reforming for hydrogen production using a chemical looping system is proposed...
A steam reformer of a hydrogen plant is a device that supplies heat to convert the natural gas or li...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
In this paper, a novel process for hydrogen production by steam reforming of natural gas with inhere...
\u3cp\u3eBy means of steam reforming, natural gas is converted to carbon dioxide and hydrogen. The r...
Methane reforming is one of the important technologies that produce syngas or hydrogen for the produ...
In the chemical industry, hydrogen (H2) production through steam-methane reforming is a well-establi...
AbstractSorption enhanced - steam methane reforming (SE-SMR) is a promising process in the search fo...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
Membrane reactors has recently emerged as one of the most promising technologies for pure hydrogen p...