4.7 Article

Sulfur-Iodine plant for large scale hydrogen production by nuclear power

Journal

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
Volume 35, Issue 9, Pages 4002-4014

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2010.01.066

Keywords

HYTHEC; Hydrogen production; Thermochemical; Sulfur-Iodine cycle; Nuclear energy; Costs

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The Sulfur-Iodine (S_I) cycle, driven by nuclear power, seems to be one of the main candidates to produce hydrogen on a large scale. A new Si process flowsheet is proposed, set up at CEA and simulated by ProSim code and, based on that, data and results on the coupling of the thermochemical plant with a Very High Temperature Nuclear Reactor (VHTR) are presented. The scale up to industrial level, the conceptual design and cost estimation of the plant are then presented and discussed. In order to support a high temperature aggressive environment, well established chemical engineering methods as well as non traditional materials, devices and technologies have been selected. The influence of the adopted technology on the H(2) cost has also been investigated and is widely discussed, comparing two different cases. An economic sensitivity analysis carried out by varying the hydrogen production level is presented, showing that an optimum H(2) production exists and, due to relevant heat recovery processes, the minimum cost is not achieved for the maximum allowable H(2) production rate. Finally an optimized layout for the minimum cost plant, set up adopting the pinch technique, is presented leading to a further reduction of H(2) production costs. (C) 2010 Professor T. Nejat Veziroglu. Published by Elsevier Ltd. All rights reserved.

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