The solar thermal electrolytic production of Zn from ZnO was studied in the temperature range of 1275-1500 K in a cavity-solar receiver located at the focal point of a concentrating solar furnace. This study establishes how cathode material, solvent, current levels, and operating temperature influence the electrolytic cell\u27s performance. For a nominal current density of 0.1 A cm(-2) at temperatures from 1275 to 1425 K, we found that our performance parameters, the back work ratio and substituted-solar fraction, are within 25% and 20% of the ideal values, respectively. This behavior was true whether the cathode was Mo or W and whether the electrolyte was pure cryolite or a 35 mol. % cryolite-CaF2 mixture. When the electrolytes were cryoli...
The endothermal dissociation of zinc oxide into its elements, followed by the exothermal hydrolysis ...
Rapid cooling for avoiding the recombination of Zn vapor and O2 derived from the solar thermal disso...
The solar energy research team at VU is developing a novel process for producing Magnesium (Mg) that...
The solar thermal electrolytic production of Zn from ZnO was studied in the temperature range of 127...
The ionic conductivities of mixtures of ZnO in Na3AlF6 and in xCaF(2)-yNa(3)AlF(6) mixtures were est...
A solar thermal electrolytic reactor was developed for studying at a 10 kW scale how a solar reactor...
ABSTRACT Zinc production by solar carbothermic reduction of ZnO offers a CO 2 emission reduction by ...
The electrolytic production of Mg from MgO was experimentally and theoretically investigated near 15...
Abstract—We describe the design, fabrication, and preliminary test of a novel solar chemical reactor...
Abstract – The reduction of ZnO with a carbonaceous material using concentrated solar radiation as e...
A two-step water-splitting thermochemical cycle based on the Zn/ZnO redox reactions is proposed for ...
The electrolytic production of Mg from MgO was experimentally and theoretically investigated near 15...
Erneuerbare Energien gewinnen zunehmend an Bedeutung, da fossile Brennstoffe nicht unbegrenzt verfüg...
In this work we investigate the mechanism of Zn oxidation with CO2 and/or H2O to produce solar deriv...
The cathode current efficiency for the electrowinning ofzinc was determined under different conditio...
The endothermal dissociation of zinc oxide into its elements, followed by the exothermal hydrolysis ...
Rapid cooling for avoiding the recombination of Zn vapor and O2 derived from the solar thermal disso...
The solar energy research team at VU is developing a novel process for producing Magnesium (Mg) that...
The solar thermal electrolytic production of Zn from ZnO was studied in the temperature range of 127...
The ionic conductivities of mixtures of ZnO in Na3AlF6 and in xCaF(2)-yNa(3)AlF(6) mixtures were est...
A solar thermal electrolytic reactor was developed for studying at a 10 kW scale how a solar reactor...
ABSTRACT Zinc production by solar carbothermic reduction of ZnO offers a CO 2 emission reduction by ...
The electrolytic production of Mg from MgO was experimentally and theoretically investigated near 15...
Abstract—We describe the design, fabrication, and preliminary test of a novel solar chemical reactor...
Abstract – The reduction of ZnO with a carbonaceous material using concentrated solar radiation as e...
A two-step water-splitting thermochemical cycle based on the Zn/ZnO redox reactions is proposed for ...
The electrolytic production of Mg from MgO was experimentally and theoretically investigated near 15...
Erneuerbare Energien gewinnen zunehmend an Bedeutung, da fossile Brennstoffe nicht unbegrenzt verfüg...
In this work we investigate the mechanism of Zn oxidation with CO2 and/or H2O to produce solar deriv...
The cathode current efficiency for the electrowinning ofzinc was determined under different conditio...
The endothermal dissociation of zinc oxide into its elements, followed by the exothermal hydrolysis ...
Rapid cooling for avoiding the recombination of Zn vapor and O2 derived from the solar thermal disso...
The solar energy research team at VU is developing a novel process for producing Magnesium (Mg) that...