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Thermochemical cycle information


Thermochemical cycles combine solely heat sources (thermo) with chemical reactions to split water into its hydrogen and oxygen components.[1] The term cycle is used because aside of water, hydrogen and oxygen, the chemical compounds used in these processes are continuously recycled.

If work is partially used as an input, the resulting thermochemical cycle is defined as a hybrid one.

  1. ^ Producing Hydrogen: The Thermochemical Cycles - Idaho National Laboratory (INL)

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Thermochemical cycle

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high temperatures are ideal for thermochemical processes, while the environmentally friendly side of thermochemical cycles attracted funding in a period...

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Sulfur cycle

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either bacterially (bacterial sulfate reduction) or inorganically (thermochemical sulfate reduction). This pathway involves the reduction of sulfate by...

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Hybrid sulfur cycle

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thermochemical cycle because it uses an electrochemical (instead of a thermochemical) reaction for one of the two steps. The remaining thermochemical...

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Iron oxide cycle

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For chemical reactions, the iron oxide cycle (Fe3O4/FeO) is the original two-step thermochemical cycle proposed for use for hydrogen production. It is...

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Hydrogen production

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2009-09-19. "353 Thermochemical cycles" (PDF). Archived (PDF) from the original on 2009-02-05. Retrieved 2010-07-05. UNLV Thermochemical cycle automated scoring...

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Water splitting

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Solar-powered Thermochemical Production of Hydrogen from Water" (PDF). DOE Hydrogen Program. Weimer A (2005). "Development of Solar-powered Thermochemical Production...

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Thermal decomposition

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is significant. Thermal degradation of polymers Ellingham diagram Thermochemical cycle Thermal depolymerization Chemical thermodynamics Pyrolysis - thermal...

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Sulfuric acid

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(25 May 2005). "2005 DOE Hydrogen Program Review: Sulfur-Iodine Thermochemical Cycle" (PDF). Sandia National Labs. Retrieved 8 October 2021. Pelletreau...

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Electrolysis

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process High-pressure electrolysis Overpotential Patterson Power Cell Thermochemical cycle Timeline of hydrogen technologies PEM electrolysis Oesper, Ralph;...

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Solar fuel

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on 2020-01-25 Steinfeld, Aldo (2005). "Solar Thermochemical Production of Hydrogen". Solar thermochemical production of hydrogen—A review. pp. 421–443...

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Hydrogen

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2005). "Development of solar-powered thermochemical production of hydrogen from water" (PDF). Solar Thermochemical Hydrogen Generation Project. Archived...

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Concentrated solar power

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steam turbine) connected to an electrical power generator or powers a thermochemical reaction. As of 2021, global installed capacity of concentrated solar...

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Carnot battery

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energy storage systems, the Claude Cycle is utilized to liquify air. The Lamm–Honigmann process uses thermochemical cycles to convert power to heat. According...

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Direct air capture

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Gálvez, M.E.; Steinfeld, A. (July 2008). "Feasibility of Na-based thermochemical cycles for the capture of CO2 from air—Thermodynamic and thermogravimetric...

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Raymond Gorte

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acidity. Gorte has proposed a description of solid acidity based on a thermochemical cycle including the proton affinity, the interaction energy, and the enthalpy...

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Thermochemical nanolithography

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Thermochemical nanolithography (TCNL) or thermochemical scanning probe lithography (tc-SPL) is a scanning probe microscopy-based nanolithography technique...

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Heliostat

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"Economic comparison of solar hydrogen generation by means of thermochemical cycles and electrolysis". International Journal of Hydrogen Energy. 33...

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Solar energy

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overall hydrogen yield compared to conventional reforming methods. Thermochemical cycles characterized by the decomposition and regeneration of reactants...

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Thermal depolymerization

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processes using dry materials to depolymerize, such as pyrolysis. The term thermochemical conversion (TCC) has also been used for conversion of biomass to oils...

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Bhabha Atomic Research Centre

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(electrochemical water splitting, iodine-sulphur thermochemical, copper-chlorinehybrid thermochemical cycles); development of adsorptive gel materials for...

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Mantle plume

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about 830 million years for a core mantle heat flux of 20 mW/m2, while the cycle time (the time between plume formation events) is about 2000 million years...

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Transition metal hydride

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(1993). "Bond Energies in Solution from Electrode Potentials and Thermochemical Cycles. A Simplified and General Approach". Accounts of Chemical Research...

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University of Waterloo Faculty of Engineering

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British University in Egypt, pioneered the use of sulfur compounds in thermochemical cycles for hydrogen production and the use of nano-palladium to catalyze...

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