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Nuclear Production of Hydrogen, Fourth Information Exchange ...

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TABLE OF CONTENTS<br />

Y. Gong, E. Chalkova, N. Akinfiev, V. Balashov, M. Fedkin, S.N. Lvov<br />

Development <strong>of</strong> CuCl-HCl electrolysis for hydrogen production via Cu-Cl<br />

thermochemical cycle ............................................................................................................. 251<br />

J-M. Borgard, D. Doizi, Ph. Carles<br />

Exergy analysis <strong>of</strong> the Cu-Cl cycle ......................................................................................... 259<br />

R.D. Doctor, J. Yang, C.B. Panchal, S.A. Lottes, R.W. Lyczkowski<br />

CaBr 2 hydrolysis for HBr production using a direct sparging contactor ........................... 269<br />

Session V Economics and market analysis <strong>of</strong> hydrogen production and use ................................ 279<br />

Chairs: F. Carré, J. van Erp<br />

I. Khamis<br />

The development <strong>of</strong> the <strong>Hydrogen</strong> Economic Evaluation Program (HEEP)...................... 281<br />

D. Keuter<br />

<strong>Nuclear</strong> H 2 production – a utility perspective ...................................................................... 289<br />

J. Gosset, N. Collingnon<br />

Alkaline and high-temperature electrolysis for nuclear hydrogen production .............. 299<br />

K. Verfondern, W. von Lensa, M. Roeb<br />

The production <strong>of</strong> hydrogen by nuclear and solar heat ..................................................... 307<br />

P. Kruger<br />

Sustainable electricity supply in the world by 2050 for economic growth and<br />

automotive fuel ........................................................................................................................ 317<br />

V. Blet, S. Poitou, Th. Gilardi, F. Dechelette, J-C. Maguin, T. d’Aletto<br />

PROHYTEC, the French industrial platform for massive hydrogen production .............. 327<br />

D. Allen, P. Pickard, M. Patterson, C. Sink<br />

NHI economic analysis <strong>of</strong> candidate nuclear hydrogen processes ................................... 333<br />

A. Botterud, B. Yildiz, G. Conzelmann, M.C. Petri<br />

Market viability <strong>of</strong> nuclear hydrogen technologies: Quantifying the value <strong>of</strong><br />

product flexibility .................................................................................................................... 343<br />

Y. Kato<br />

Possibility <strong>of</strong> active carbon recycle energy system ............................................................. 345<br />

Session VI Safety aspects <strong>of</strong> nuclear hydrogen production ................................................................ 353<br />

Chairs: J. Misak, T. Krause<br />

W. Reckley<br />

<strong>Nuclear</strong> safety and regulatory considerations for nuclear hydrogen production ........... 355<br />

N.R. Brown, V. Seker, S. Oh, S.T. Revankar, T.J. Downar, C. Kane<br />

Transient modelling <strong>of</strong> sulphur-iodine cycle thermochemical hydrogen<br />

generation coupled to pebble bed modular reactor ............................................................ 363<br />

N.R. Brown, S.T. Revankar, V. Seker, T.J. Downar<br />

Proposed chemical plant initiated accident scenarios in a sulphur-iodine<br />

cycle plant coupled to a pebble bed modular reactor ......................................................... 377<br />

H. Sato, N. Sakaba, N. Sano, H. Ohashi, Y. Tachibana, K. Kunitomi<br />

Conceptual design <strong>of</strong> the HTTR-IS nuclear hydrogen production system:<br />

Detection <strong>of</strong> the heat transfer tube rupture in intermediate heat exchanger ................ 387<br />

A. Mendoza, P.F. Nelson, J.L. François<br />

Use <strong>of</strong> PSA for design <strong>of</strong> emergency mitigation systems in a hydrogen<br />

production plant using General Atomics SI cycle technology. Section II:<br />

Sulphuric acid decomposition ............................................................................................... 397<br />

NUCLEAR PRODUCTION OF HYDROGEN – © OECD/NEA 2010 7

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