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International Journal of Hydrogen Energy, ISSN 0360-3199, 04/2019, Volume 44, Issue 20, pp. 9771 - 9778
The sulfur–iodine (SI) cycle is deemed to be one of the most promising alternative methods for large-scale hydrogen production by water splitting, free of CO... 
SI cycle | Hydrogen | HI decomposition | Sulfur poisoning
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 02/2017, Volume 42, Issue 6, pp. 3708 - 3715
Sulfur-iodine thermochemical cycle is considered as a promising route for hydrogen production without CO emission. In this cycle, the hydrogen iodide... 
Carbon membrane | Sulfur-iodine cycle | Hydrogen separation | HI decomposition | Inorganic membrane
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 07/2014, Volume 39, Issue 21, pp. 10853 - 10860
In this study, 5%Ni/Ce Zr O (x = 0, 0.2, 0.5, 0.8, 1) catalysts were prepared by sol-gel method and tested for hydrogen iodide (HI) decomposition in... 
Ceria-zirconia solid solution | Catalytic activity | Sulfur-iodine cycle | HI decomposition | Hydrogen production
Journal Article
Chemistry Letters, ISSN 0366-7022, 6/2018, Volume 47, Issue 6, pp. 700 - 703
The intrinsic activities of six important transition metals for HI decomposition were identified by kinetic study. Ru showed high activity and a low apparent... 
HI Decomposition | Intrinsic rate | Hydrogen production | STORAGE | NABH4 | REGENERATION | KINETICS | ZIRCONIA CATALYSTS | HYDROLYSIS | SURFACE | CHEMISTRY, MULTIDISCIPLINARY | TIO2
Journal Article
Industrial and Engineering Chemistry Research, ISSN 0888-5885, 07/2014, Volume 53, Issue 30, pp. 11920 - 11928
Graphene oxide (GO), GO reduced by hydrazine hydrate (rGO-HH), GO reduced by ethylene glycol (rGO-EG), Pt-decorated rGO-HH composite (Pt/rGO-HH), and... 
ACTIVE-CARBON | ENGINEERING, CHEMICAL | NANOPARTICLES | OXIDE | KINETICS | HI DECOMPOSITION | NANOTUBES | GRAPHITE | BIMETALLIC CATALYSTS
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 08/2014, Volume 39, Issue 24, pp. 12795 - 12803
An all silica DDR (deca dodecasil rhombohedral) zeolite membrane with dense, interlocked structure has been developed for separation of H from HI/I mixture of... 
Corrosion | HI decomposition | Crystallization | DDR zeolite membrane | DD3R | ELECTROCHEMISTRY | HYDROGEN | ENERGY & FUELS | CHEMISTRY, PHYSICAL | ADSORPTION | H-2 separation
Journal Article
Chemistry Letters, ISSN 0366-7022, 12/2018, Volume 47, Issue 12, pp. 1482 - 1485
In this work, Pt/TiO2 catalysts were synthesized by a simple sol-gel method at different calcination temperatures. TEM study revealed 5 nm particles of Pt/TiO2... 
Pt-TiO | Catalytic activity | Hydrogen-iodide decomposition | ACTIVE-CARBON | OXIDATION | CERIA NANOPARTICLES | ZIRCONIA | PERFORMANCE | Pt-TiO2 | CHEMISTRY, MULTIDISCIPLINARY | ZRO2 | HI DECOMPOSITION | NANOTUBES | TIO2
Journal Article
by Chen, SZ and Zhang, P and Wang, LJ and Xu, JM
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, ISSN 0360-3199, 12/2018, Volume 43, Issue 49, pp. 22021 - 22031
Basic physico-chemical data of HI-H2O-I-2 (HIx) solution are very important for thermochemical water-splitting iodine-sulfur cycle aiming at large scale... 
Viscosity | ELECTROCHEMISTRY | Water splitting | ENERGY | ENERGY & FUELS | CHEMISTRY, PHYSICAL | NUCLEAR HYDROGEN-PRODUCTION | ELECTRO-ELECTRODIALYSIS | APPARENT KINETICS | Thermochemical iodine-sulfur cycle | HI-I-2-H2O solution | BUNSEN REACTION | FLOWSHEET | HI DECOMPOSITION | IODINE-SULFUR PROCESS | Hydrogen production | SECTION | CYCLE
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 01/2015, Volume 40, Issue 4, pp. 1639 - 1650
Journal Article
by Chen, SZ and Zhang, P and Wang, LJ and Xu, JM
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, ISSN 0360-3199, 03/2018, Volume 43, Issue 9, pp. 4186 - 4194
In thermochemical water-splitting iodine-sulfur cycle for hydrogen production, basic physico-chemical data of HI-H2O-I-2 (HIx) solution are very important.... 
ELECTROCHEMISTRY | Coefficient of thermal expansion | ACID | ENERGY & FUELS | THERMOCHEMICAL CYCLE | CHEMISTRY, PHYSICAL | Density | NUCLEAR HYDROGEN-PRODUCTION | STACK | ELECTRO-ELECTRODIALYSIS | HI-I-2-H2O solution | Iodine-sulfur cycle | BUNSEN REACTION | IODINE-SULFUR PROCESS | HI DECOMPOSITION SECTION | Hydrogen production
Journal Article
Chemistry Letters, ISSN 0366-7022, 9/2018, Volume 47, Issue 9, pp. 1224 - 1227
Ceria (CeO2) and Ir-doped CeO2 nanoparticles are tested for catalytic hydrogen-iodide decomposition in a thermochemical sulfur-iodine (SI) cycle. Ir-doped CeO2... 
Hydrogen iodide decomposition | Catalytic activity | Ir-doped ceria | CERIA NANOPARTICLES | PERFORMANCE | THERMOCHEMICAL CYCLE | CHEMISTRY, MULTIDISCIPLINARY | WATER-OXIDIZING CATALYSTS | ACTIVATED-CARBON | SOLUTION-COMBUSTION | HI DECOMPOSITION | TEMPERATURE CO OXIDATION | SULFUR CYCLE | SIZED MANGANESE OXIDES
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 02/2018, Volume 43, Issue 8, pp. 3886 - 3891
A highly active and stable catalyst for hydrogen-iodide decomposition reaction in sulfur-iodine (SI) cycle has been prepared in the form of Pd–CeO nanocatalyst... 
Catalytic activity | Palladium | Sulfur-iodine cycle | Hydrogen production | Ceria | Hydrogen-iodide decomposition | ACTIVE-CARBON | ELECTROCHEMISTRY | PARTICLES | ZIRCONIA | ENERGY & FUELS | CHEMISTRY, PHYSICAL | CO OXIDATION | NANOPARTICLES | TEMPERATURE | KINETICS | HI DECOMPOSITION | NANOTUBES | CERIA CATALYSTS
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 11/2012, Volume 37, Issue 22, pp. 16864 - 16870
A new, detailed kinetic model was developed for the homogeneous decomposition of HI-H O solutions in vapor phase in the sulfur-iodine cycle. The kinetics of... 
Sensitivity analysis | Sulfur-iodine cycle | Detailed kinetic modeling | Effect of H | HI decomposition | Hydrogen production
Journal Article
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 01/2018, Volume 81, pp. 1802 - 1812
Journal Article
Renewable Energy, ISSN 0960-1481, 11/2018, Volume 127, pp. 509 - 513
The current work presents the synthesis of carbon nanotubes supported palladium catalyst for hydrogen production from hydrogen-iodide decomposition in... 
Carbon nanotubes | Palladium | Catalytic activity | Sulfur iodine cycle | Hydrogen iodide decomposition | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | CERIA NANOPARTICLES | ZIRCONIA | ACTIVATED CARBON | ENERGY & FUELS | HI DECOMPOSITION | TEMPERATURE CO OXIDATION | Palladium catalysts | Sulfur compounds | Hydrogen | Halides | Analysis | Nanotubes | Sulfur
Journal Article
by Xu, SJ and Lin, XD and He, Y and Wang, ZH and Zhang, YW and Liu, JZ and Cen, KF
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, ISSN 0360-3199, 02/2017, Volume 42, Issue 6, pp. 3708 - 3715
Sulfur-iodine thermochemical cycle is considered as a promising route for hydrogen production without CO2 emission. In this cycle, the hydrogen iodide... 
Carbon membrane | ELECTROCHEMISTRY | ENERGY | ENERGY & FUELS | STABILITY | SIO2 MEMBRANE | CHEMISTRY, PHYSICAL | ALUMINA SUPPORT TUBE | REACTOR | MACROPORES | Sulfur-iodine cycle | SILICA MEMBRANE | Hydrogen separation | HI decomposition | Inorganic membrane
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 04/2019, Volume 44, Issue 21, pp. 10207 - 10217
The potential of the silica membrane reactors for use in the decomposition of hydrogen iodide (HI) was investigated by simulation with the aim of producing CO... 
Membrane reactor | Thermochemical cycle | IS process | Silica membrane | Hydrogen production | HI decomposition | SYSTEM | ELECTROCHEMISTRY | ENERGY & FUELS | PERFORMANCE | DEPOSITION | DECOMPOSITION | CHEMISTRY, PHYSICAL | IODINE-SULFUR PROCESS | SEPARATION | Sulfur compounds | Nuclear energy | Hydrogen | Silica | Analysis | Production processes
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 03/2018, Volume 43, Issue 10, pp. 4818 - 4825
In this work, high surface area rare earth (RE = La, Pr, and Nd) metal-doped ceria (CeO ) nanocatalysts have been synthesized by the citric-aided sol-gel... 
Catalytic activity | Lanthanum | Neodymium | Hydrogen iodide decomposition | Ceria | Praseodymium | ACTIVE-CARBON | ELECTROCHEMISTRY | ENERGY & FUELS | STABILITY | DEFECT | CHEMISTRY, PHYSICAL | HI DECOMPOSITION | ZIRCONIA CATALYSTS | TEMPERATURE CO OXIDATION | NANOTUBES | CEO2 | SPECTRA | CYCLE | Sulfur compounds | Solid solutions | Hydrogen | Halides | Analysis | Cerium | Magnetic alloys | Raman spectroscopy | Activation energy
Journal Article
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 02/2018, Volume 82, pp. 4279 - 4295
Journal Article
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