Browse > Article
http://dx.doi.org/10.5516/NET.2007.39.1.001

H2-MHR PRE-CONCEPTUAL DESIGN SUMMARY FOR HYDROGEN PRODUCTION  

Richards, Matt (General Atomics, United States of America)
Shenoy, Arkal (General Atomics, United States of America)
Publication Information
Nuclear Engineering and Technology / v.39, no.1, 2007 , pp. 1-8 More about this Journal
Abstract
Hydrogen and electricity are expected to dominate the world energy system in the long term. The world currently consumes about 50 million metric tons of hydrogen per year, with the bulk of it being consumed by the chemical and refining industries. The demand for hydrogen is expected to increase, especially if the U.S. and other countries shift their energy usage towards a hydrogen economy, with hydrogen consumed as an energy commodity by the transportation, residential and commercial sectors. However, there is strong motivation to not use fossil fuels in the future as a feedstock for hydrogen production, because the greenhouse gas carbon dioxide is a byproduct and fossil fuel prices are expected to increase significantly. An advanced reactor technology receiving considerable international interest for both electricity and hydrogen production, is the modular helium reactor (MHR), which is a passively safe concept that has evolved from earlier high-temperature gas-cooled reactor (HTGR) designs. For hydrogen production, this concept is referred to as the H2-MHR. Two different hydrogen production technologies are being investigated for the H2-MHR; an advanced sulfur-iodine (SI) thermochemical water splitting process and high-temperature electrolysis (HTE). This paper describes pre-conceptual design descriptions and economic evaluations of full-scale, nth-of-a-kind SI-Based and HTE-Based H2-MHR plants. Hydrogen production costs for both types of plants are estimated to be approximately $2 per kilogram.
Keywords
Hydrogen; Electricity; Thermochemical; Electrolysis; Nuclear;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
Times Cited By Web Of Science : 5  (Related Records In Web of Science)
연도 인용수 순위
1 M. RICHARDS, A. SHENOY, Y. KISO, N. TSUJI, N. KODOCHIGOV, and S. SHEPELEV 'Thermal Hydraulic Design of a Modular Helium Reactor Core Operating at $1000^{\circ}C$ Coolant Outlet Temperature,' Proceedings of the 6th International Conference on Nuclear Thermal Hydraulics, Operations and Safety (NUTHOS-6), October 4-8, 2004, Nara, Japan, Atomic Energy Society of Japan, Tokyo, Japan (2004)
2 M. RICHARDS and A. SHENOY, 'Hydrogen Generation Using the Modular Helium Reactor Core,' Proceedings of ICONE12: 12th International Conference on Nuclear Engineering, April 25-29, 2004, Arlington, Virginia, American Society of Mechanical Engineers, New York, NY (2004)
3 International Atomic Energy Agency (IAEA), May 1999, Hydrogen as an energy carrier and its production by nuclear power, IAEA-TECDOC-1085
4 S. SHIOZAWA, 'Development Status of Hydrogen Production Technology Using High Temperature Gas-Cooled Reactor,'Proceedings of the 6th International Conference on Nuclear Thermal Hydraulics, Operations and Safety (NUTHOS-6), October 4-8, 2004, Nara, Japan, Atomic Energy Society of Japan, Tokyo, Japan (2004)
5 M. RICHARDS, A. SHENOY, and K. Schultz 'MHR-Based Hydrogen Production Systems,' Proceedings of the International Congress on Advances in Nuclear Power Plants (ICAPP '04), June 13-17, 2004, Pittsburgh, PA, American Nuclear Society, La Grange Park, IL (2004)