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Title: Impact of enhanced oxide reducibility on rates of solar-driven thermochemical fuel production

Journal Article · · MRS Communications
DOI:https://doi.org/10.1557/mrc.2017.108· OSTI ID:1541935

Abstract

Research Organization:
Univ. of Minnesota, Minneapolis, MN (United States)
Sponsoring Organization:
USDOE Advanced Research Projects Agency - Energy (ARPA-E)
DOE Contract Number:
AR0000182
OSTI ID:
1541935
Journal Information:
MRS Communications, Vol. 7, Issue 4; ISSN 2159-6859
Publisher:
Materials Research Society - Cambridge University Press
Country of Publication:
United States
Language:
English

References (25)

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First-principles thermodynamic framework for the evaluation of thermochemical H 2 O - or CO 2 -splitting materials journal December 2009
Implications of Exceptional Material Kinetics on Thermochemical Fuel Production Rates journal February 2016
Lanthanum–Strontium–Manganese Perovskites as Redox Materials for Solar Thermochemical Splitting of H 2 O and CO 2 journal March 2013
High-Flux Solar-Driven Thermochemical Dissociation of CO2 and H2O Using Nonstoichiometric Ceria journal December 2010
Investigation of Perovskite Structures as Oxygen-Exchange Redox Materials for Hydrogen Production from Thermochemical Two-Step Water-Splitting Cycles journal June 2014
Applicability of an Equilibrium Model To Predict the Conversion of CO 2 to CO via the Reduction and Oxidation of a Fixed Bed of Cerium Dioxide journal November 2015
Physico-chemical changes in Ca, Sr and Al-doped La–Mn–O perovskites upon thermochemical splitting of CO 2 via redox cycling journal January 2015
A thermodynamic study of nonstoichiometric cerium dioxide journal November 1975
Thermochemical Cycles for High-Temperature Solar Hydrogen Production journal October 2007
Splitting of CO 2 by Manganite Perovskites to Generate CO by Solar Isothermal Redox Cycling journal June 2016
Interplay of material thermodynamics and surface reaction rate on the kinetics of thermochemical hydrogen production journal July 2017
Assessment of the La-Mn-O system journal April 2005
Oxygen nonstoichiometry and defect equilibrium in the perovskite-type oxides La1−xSrxMnO3+d journal April 2000
Concentrating solar thermal power and thermochemical fuels journal January 2012
A review on solar thermal syngas production via redox pair-based water/carbon dioxide splitting thermochemical cycles journal February 2015
Maximizing fuel production rates in isothermal solar thermochemical fuel production journal December 2016
Perovskite La 0.6 Sr 0.4 Cr 1−x Co x O 3−δ solid solutions for solar-thermochemical fuel production: strategies to lower the operation temperature journal January 2015
Lanthanum Manganite Perovskites with Ca/Sr A-site and Al B-site Doping as Effective Oxygen Exchange Materials for Solar Thermochemical Fuel Production journal September 2015
A thermochemical study of ceria: exploiting an old material for new modes of energy conversion and CO 2 mitigation
  • Chueh, William C.; Haile, Sossina M.
  • Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Vol. 368, Issue 1923 https://doi.org/10.1098/rsta.2010.0114
journal July 2010
Experimental assessment of oxygen exchange capacity and thermochemical redox cycle behavior of Ba and Sr series perovskites for solar energy storage journal September 2016
Sr- and Mn-doped LaAlO3−δ for solar thermochemical H2 and CO production journal January 2013
Oxygen nonstoichiometry, defect equilibria, and thermodynamic characterization of LaMnO3 perovskites with Ca/Sr A-site and Al B-site doping journal January 2016
Modeling Thermochemical Solar-to-Fuel Conversion: CALPHAD for Thermodynamic Assessment Studies of Perovskites, Exemplified for (La,Sr)MnO 3 journal September 2016
Ceria as a Thermochemical Reaction Medium for Selectively Generating Syngas or Methane from H 2 O and CO 2 journal August 2009

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