The kinetics of CO2 reduction over nonstoichimetric ceria, CeO2−δ, a material of high potential for thermochemical conversion of sunlight to fuel, has been investigated for a wide range of nonstoichiometries (0.02 ≤ δ ≤ 0.25), temperatures (693 ≤ T ≤ 1273 K), and CO2 concentrations (0.005 ≤ pCO2 ≤ 0.4 atm). Samples were reduced thermally at 1773 K to probe low nonstoichiometries (δ < 0.05) and chemically at lower temperatures in a H2 atmosphere to prevent particle sintering and probe the effect of higher nonstoichiometries (δ < 0.25). For extents greater than δ = 0.2, oxidation rates at a given nonstoichiometry are hindered for the duration of the reaction, presumably because of near-order changes, such as lattice compression, as confirmed ...
The CeO2/CeO2−δ redox system occupies a unique position as an oxygen carrier in chemical looping pro...
The overarching goal of this thesis is to pave the way towards the commercialization of solar-driven...
Chemical looping technologies are identified as to have an excellent potential for CO2 capture and f...
Ceria is an interesting material for high temperature redox applications like solar-thermal splittin...
With the appropriate materials, one can construct redox cycles that use CO2 as the oxidant, generati...
Determination of reaction and oxygen diffusion rates at elevated temperatures is essential for model...
The development of carbon-neutral, environmentally-sustainable energy carrier is a technological imp...
We present a comprehensive thermodynamic and kinetic analysis of the suitability of cerium oxide (ce...
Cerium oxide (CeO2-δ) and its derivatives are the most attractive materials under consideration for ...
Determination of reaction and oxygen diffusion rates at elevated temperatures is essential for model...
The interaction of CO2 with noble metals deposited on ceria surfaces have been studied by temperatur...
The redox kinetics of undoped ceria (CeO_(2−δ)) are investigated by the electrical conductivity rela...
International audienceThe CeO2/CeO2−δredox system occupies a unique position as an oxygen carrier in...
The utilization of clean and sustainable energy becomes important for solving global environmental p...
The steady-state kinetic studies of ceria-supported metal catalysts were investigated to gain a bett...
The CeO2/CeO2−δ redox system occupies a unique position as an oxygen carrier in chemical looping pro...
The overarching goal of this thesis is to pave the way towards the commercialization of solar-driven...
Chemical looping technologies are identified as to have an excellent potential for CO2 capture and f...
Ceria is an interesting material for high temperature redox applications like solar-thermal splittin...
With the appropriate materials, one can construct redox cycles that use CO2 as the oxidant, generati...
Determination of reaction and oxygen diffusion rates at elevated temperatures is essential for model...
The development of carbon-neutral, environmentally-sustainable energy carrier is a technological imp...
We present a comprehensive thermodynamic and kinetic analysis of the suitability of cerium oxide (ce...
Cerium oxide (CeO2-δ) and its derivatives are the most attractive materials under consideration for ...
Determination of reaction and oxygen diffusion rates at elevated temperatures is essential for model...
The interaction of CO2 with noble metals deposited on ceria surfaces have been studied by temperatur...
The redox kinetics of undoped ceria (CeO_(2−δ)) are investigated by the electrical conductivity rela...
International audienceThe CeO2/CeO2−δredox system occupies a unique position as an oxygen carrier in...
The utilization of clean and sustainable energy becomes important for solving global environmental p...
The steady-state kinetic studies of ceria-supported metal catalysts were investigated to gain a bett...
The CeO2/CeO2−δ redox system occupies a unique position as an oxygen carrier in chemical looping pro...
The overarching goal of this thesis is to pave the way towards the commercialization of solar-driven...
Chemical looping technologies are identified as to have an excellent potential for CO2 capture and f...