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Sulfur iodine thermochemical water-splitting

Trester, P.W. and Staley, H.G., Assessment and investigation of containment materials for the sulfur-iodine thermochemical water-splitting process for hydrogen production, Gas Research Institute report GRI-80/0081,1981. [Pg.158]

Sulfur-Iodine Thermochemical Water-Splitting Process... [Pg.131]

The sulfur-iodine thermochemical water-splitting cycle (S-1 cycle) developed for hydrogen production from water is fundamentally based on the following three chemical reactions (Wang, 2007) ... [Pg.131]

Norman JH, Mysels KJ, Sharp R, Williamson D (1982) Studies of the sulfur-iodine thermochemical water-splitting cycle. Int J Hydrogen Energy 7 545-556... [Pg.101]

O Keefe, D., et al. (1982), Preliminary Results from Bench Scale Testing of a Sulfur Iodine Thermochemical Water Splitting Cycle , Int. J. Hydrogen Energy, 7, 381-392. [Pg.198]

Norman, J. H. Mysels, K. J. O Keefe, D. R. Stowell, S. A. Williamson, D. G., "Chemical Studies on the General Atomic Sulfur-Iodine Thermochemical Water-Splitting Cycle," paper presented at the Second World Hydrogen Energy Conference, Zurich, Switzerland, August 1978. [Pg.338]

Orme, C.J., Jones, M.G., and Stewart, P.P., Pervaporation of water from aqueous HI using Nafion-117 membranes for the sulfur-iodine thermochemical water splitting process, Journal of Membrane Science, 252, 245-252, 2005. [Pg.120]

Besenbruch, G.E., General Atomic Sulfur-Iodine Thermochemical Water Splitting Process, Am. Chem. Soc., Div, Pet, Chem. Preprint, 271, 48, 1982. [Pg.45]

D.R. O keefe, C. Allen, G. Besenbruch, L. Brown, J. Norman, and R. Sharp, Preliminary results from bench-scale testing of a sulfur-iodine thermochemical water-splitting cycle . International Journal of Hydrogen Energy, 7, 381-392 (2000). [Pg.325]

Sulfur iodine thermochemical water-splitting cycle. [Pg.225]

Besenbruch, G. E. General atomic sulfur-iodine thermochemical water-splitting process. American Chemical Society, Division of Petroleum Chemistry 271 48-53, 1982. [Pg.611]

Thermochemical Water Splitting by Iodine-Sulfur Cycle.137... [Pg.127]

Kubo, S. et al., A demonstration study on a closed-cycle hydrogen production by thermochemical water-splitting Iodine-Sulfur process, Nucl. Eng. Des., 233, 347, 2004. [Pg.158]

Kubo, S. et al., Corrosion test on structural materials for iodine-sulfur thermochemical water splitting cycle, in Proc. 2nd Topical Conf. on Fuel Cell Tech., AIChE 2003 Spring National Meeting, New Orleans, March 30-April 3, 2003. [Pg.158]

Kubo S, Kasahara S, Okuda H, Terada A, Tanaka N, Inaba Y, Ohashi H, Inagaki Y, Onuki K, Hino R (2004) A pilot test plan of the thermochemical water-splitting iodine-sulfur process. Nucl Eng Des 233 355-362... [Pg.101]

Kubo, S., et al. (2004), A Pilot Test Plan of the Thermochemical Water-splitting Iodine-Sulfur Process , Nuclear Engineering and Design, 233 (1-3), 355-362. [Pg.46]

Leybros, J., P. Carles, J-M. Borgard (2009), Countercurrent Reactor Design and Flow Sheet for Iodine-sulfur Thermochemical Water Splitting Process , Int. J. of Hydrogen Energy, forthcoming. [Pg.177]

Kasahara, Seiji, et al. (2007), Flowsheet Study of the Thermochemical Water-splitting Iodine-Sulfur Process for Effective Hydrogen Production , International Journal of Hydrogen Energy, 32, pp. 489-496. [Pg.406]

The sulfur-iodine (S-I) cycle is a thermochemical water-splitting process that utilizes thermal energy from a high-temperature heat source to produce hydrogen (H2). It is comprised of three coupled chemical reactions, as shown in figure 4.1. First, the central low-temperature Bunsen reaction (Section I) is employed to produce two... [Pg.81]

Kubo, S. et al.. Corrosion Test on Strnctnral Materials for Iodine-Sulfur Thermochemical Water-Splitting Cycle, paper presented at the Proceedings of the 2nd Topical Conference on Fuel Cell Technology, AlChE 2003 Spring National Meeting, 2003. [Pg.120]

Hwang, G.-J., Onuki, K., Nomura, M., Kasahara, S., and Kim, J.-W., Improvement of the thermochemical water-splitting IS (iodine-sulfur) process by electro-electrodialysis, Journal of Membrane Science, 220, 129-136, 2003. [Pg.120]

Ballinger, R., The Development of Self Catalytic Materials for Thermochemical Water Splitting Using the Sulfur-Iodine Process, paper presented at the UNLV-HTHX quarterly meeting. Univerity of Nevada, Las Vegas, December 5, 2005. [Pg.121]

STUDIES ON CONTINUOUS AND CLOSED-CYCLE HYDROGEN PRODUCTION BY A THERMOCHEMICAL WATER-SPLITTING IODINE-SULFUR PROCESS... [Pg.197]

S. Kubo, H. Nakajima, S. Shimizu, K. Onuki, R. Hino, A bench scale hydrogen production test by the thermochemical water-splitting Iodine-Sulfur process, Proc. GLOBAL 2005, No. 474, Oct 9-13, Tsukuba, JAPAN (2005). [Pg.204]


See other pages where Sulfur iodine thermochemical water-splitting is mentioned: [Pg.124]    [Pg.338]    [Pg.339]    [Pg.124]    [Pg.338]    [Pg.339]    [Pg.131]    [Pg.228]    [Pg.141]    [Pg.189]    [Pg.191]    [Pg.269]   


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