Production of chemical fuels by isothermal pressure-swing cycles has recently generated significant interest. In this process a reactive oxide is cyclically exposed to an inert gas, which induces partial reduction of the oxide, and to an oxidizing gas of either H_2O or CO_2, which reoxidizes the oxide, releasing H_2 or CO. At sufficiently high temperatures and sufficiently low gas flow rates, both the reduction and oxidation steps become limited only by the flow of gas across the material and not by material kinetic factors. In this contribution, we develop a numerical model describing fuel production rates in this gas-phase limited regime. The implications of this behavior are explored under all possible isothermal pressure-swing cycling c...
In this paper the operational strategy of a pilot plant for regenerative hydrogen production based ...
The alternative fuel production pathway by solar thermochemical splitting of water and carbon dioxid...
Solar thermochemical cycles are promising processes for the efficient production of renewable hydrog...
Production of chemical fuels by isothermal pressure-swing cycles has recently generated significant ...
AbstractWidespread solar fuel production depends on its economic viability, largely driven by the so...
A thermodynamic analysis of continuous fuel production by redox cycling of ceria in a single solar r...
The possibility of producing chemical fuel (hydrogen) from the solar-thermal energy input using an i...
Ce travail de thèse porte sur l’étude de la réduction de CO 2 et H 2 O en CO et H 2 au moyen de cycl...
Production of chemical fuels using solar energy has been a field of intense research recently, and t...
Abstract. High-temperature thermochemical processes efficiently convert concentrated solar energy in...
AbstractTwo-step metal-oxide based thermochemical cycles show great promise for the production of th...
Solar thermochemical cycles as a means to produce fuels such as hydrogen, carbon monoxide, or syngas...
Concentrated solar energy offers a source for renewable high-temperature process heat that can be us...
We present an advanced thermodynamic model for a water-splitting solar reactor system employing Zr-d...
The alternative fuel production pathway by solar thermochemical splitting of water and carbon dioxid...
In this paper the operational strategy of a pilot plant for regenerative hydrogen production based ...
The alternative fuel production pathway by solar thermochemical splitting of water and carbon dioxid...
Solar thermochemical cycles are promising processes for the efficient production of renewable hydrog...
Production of chemical fuels by isothermal pressure-swing cycles has recently generated significant ...
AbstractWidespread solar fuel production depends on its economic viability, largely driven by the so...
A thermodynamic analysis of continuous fuel production by redox cycling of ceria in a single solar r...
The possibility of producing chemical fuel (hydrogen) from the solar-thermal energy input using an i...
Ce travail de thèse porte sur l’étude de la réduction de CO 2 et H 2 O en CO et H 2 au moyen de cycl...
Production of chemical fuels using solar energy has been a field of intense research recently, and t...
Abstract. High-temperature thermochemical processes efficiently convert concentrated solar energy in...
AbstractTwo-step metal-oxide based thermochemical cycles show great promise for the production of th...
Solar thermochemical cycles as a means to produce fuels such as hydrogen, carbon monoxide, or syngas...
Concentrated solar energy offers a source for renewable high-temperature process heat that can be us...
We present an advanced thermodynamic model for a water-splitting solar reactor system employing Zr-d...
The alternative fuel production pathway by solar thermochemical splitting of water and carbon dioxid...
In this paper the operational strategy of a pilot plant for regenerative hydrogen production based ...
The alternative fuel production pathway by solar thermochemical splitting of water and carbon dioxid...
Solar thermochemical cycles are promising processes for the efficient production of renewable hydrog...