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Solar energy combined with chemical reactive systems for the production and storage of sustainable energy. A review of thermodynamic principles
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Heintz A
. 0.
Solar energy combined with chemical reactive systems for the production and storage of sustainable energy. A review of thermodynamic principles
.
The Journal of Chemical Thermodynamics. 46:99-108.
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Understanding Chemical Expansion in Non-Stoichiometric Oxides: Ceria and Zirconia Case Studies
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Marrocchelli D
,
Bishop SR
,
Tuller HL
,
Yildiz B
. 0.
Understanding Chemical Expansion in Non-Stoichiometric Oxides: Ceria and Zirconia Case Studies
.
Advanced Functional Materials. 22(9):1958-1965.
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Low-temperature, manganese oxide-based, thermochemical water splitting cycle
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Xu B
,
Bhawe Y
,
Davis ME
. 2012.
Low-temperature, manganese oxide-based, thermochemical water splitting cycle
.
Proceedings of the National Academy of Sciences. 109(24):9260–9264.
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Design of Materials for Solar-Driven Fuel Production by Metal-Oxide Thermochemical Cycles
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Allendorf MD
,
Miller JE
,
McDaniel AH
. 2013.
Design of Materials for Solar-Driven Fuel Production by Metal-Oxide Thermochemical Cycles
.
Electrochemical Society Interface. 22(4):63-68.
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A review on development of industrial processes and emerging techniques for production of hydrogen from renewable and sustainable sources
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Chaubey R
,
Sahu S
,
James OO
,
Maity S
. 2013.
A review on development of industrial processes and emerging techniques for production of hydrogen from renewable and sustainable sources
.
Renewable and Sustainable Energy Reviews. 23:443-462.
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Analysis and improvement of a high-efficiency solar cavity reactor design for a two-step thermochemical cycle for solar hydrogen production from water
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Houaijia A
,
Sattler C
,
Roeb M
,
Lange M
,
Breuer S
,
Säck JPeter
. 2013.
Analysis and improvement of a high-efficiency solar cavity reactor design for a two-step thermochemical cycle for solar hydrogen production from water
.
Solar Energy. 97:26-38.
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Heat Transfer Analysis of a Solid-Solid Heat Recuperation System for Solar-Driven Nonstoichiometric Redox Cycles
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Lapp J
,
Davidson JH
,
Lipiński W
. 0.
Heat Transfer Analysis of a Solid-Solid Heat Recuperation System for Solar-Driven Nonstoichiometric Redox Cycles
.
Journal of Solar Energy Engineering. 135(3):031004.
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Experimental study of SnO <sub>2</sub> /SnO/Sn thermochemical systems for solar production of hydrogen
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Charvin P
,
Abanades S
,
Lemont F
,
Flamant G
. 0.
Experimental study of SnO
2
/SnO/Sn thermochemical systems for solar production of hydrogen
.
AIChE Journal. 54(10):2759-2767.
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Concentrating on Solar Electricity and Fuels
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Roeb M.
,
Muller-Steinhagen H.
. 2010.
Concentrating on Solar Electricity and Fuels
.
Science. 329(5993):773-774.
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Sustainable hydrocarbon fuels by recycling CO2 and H2O with renewable or nuclear energy
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Graves C
,
Ebbesen SD
,
Mogensen M
,
Lackner KS
. 0.
Sustainable hydrocarbon fuels by recycling CO2 and H2O with renewable or nuclear energy
.
Renewable and Sustainable Energy Reviews. 15(1):1-23.
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