Sustainability and Economy of Energy Supply with HTGR Fueled by Uranium from Seawater - 14299
Creators
- 1. Japan Atomic Energy Agency, 4002 Narita-cho Oarai-machi Higashiibaraki-gun Ibaraki-ken 311-1393 (Japan)
Description
Sustainability and economy of energy supply with High Temperature Gas cooled Reactor (HTGR) fueled by uranium from seawater have been investigated and discussed. To sustain the nuclear energy safely by electricity generation with HTGR, the uranium resources must be inexhaustible. Generally, the abundance of resources is measured by a duration period which is defined as the ratio of available resources to consumption rate. The seawater uranium, which exists in seawater as a solute of huge amount, is expected to be alternative resources. It is said that 4.5 billion tons of uranium is dissolved in the seawater, which corresponds to a duration period of approximately 70 thousand years. The uranium dissolved in seawater is in an equilibrium state with the uranium on surface of sea floor, which is approximately a thousand times of the amount dissolved in seawater. This suggests that almost all of the uranium dissolved seawater and contained in the rock on the surface of sea floor, which is 4.5 trillion tU and corresponds to the duration period of 70 million years, can be recoverable. In other words, the uranium from seawater is almost inexhaustible natural resource. The cost of extracting uranium from seawater with current technology is still expensive compared with that of conventional uranium. However, the economy of nuclear power generation fueled by seawater uranium should be assessed for entire electricity generation cost. In the present study, the economy of electricity generation using uranium from seawater is assessed using a commercial HTGR. Compared with ordinary LWR using conventional uranium, HTGR can realize lower cost of electricity owing to small volume of water and steam systems, rationalization by modularising, and high thermal efficiency, even if fueled by seawater uranium. It is concluded that the HTGR fueled by seawater uranium with the current technology enables the energy sustainability to be maintained for a long term approximately 70 million years with superior inherent safety features and low cost of 3.92 cents/kWh (4.70 yen/kWh), which is lower than the 4.66 cents/kWh (5.59 yen/kWh) cost of LWR using conventional uranium. (authors)
Additional details
Publishing Information
- Publisher
- American Nuclear Society - ANS
- Imprint Place
- La Grange Park, IL (United States)
- ISBN
- 978-0-89448-776-7
- Imprint Pagination
- 7 p.
Conference
- Title
- International Congress on Advances in Nuclear Power Plants
- Acronym
- ICAPP 2014
- Dates
- 6-9 Apr 2014
- Place
- Charlotte, NC (United States)
INIS
- Country of Publication
- United States
- Country of Input or Organization
- France
- INIS RN
- 54022632
- Subject category
- S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS; S42: ENGINEERING;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- CONSUMPTION RATES; ELECTRICITY; HTGR TYPE REACTORS; NUCLEAR ENERGY; NUCLEAR POWER; POWER GENERATION; REACTOR SAFETY; STEAM SYSTEMS; SURFACES; SUSTAINABILITY; THERMAL EFFICIENCY; URANIUM
- Descriptors DEC
- ACTINIDES; EFFICIENCY; ELEMENTS; ENERGY; ENERGY SYSTEMS; GAS COOLED REACTORS; GRAPHITE MODERATED REACTORS; METALS; POWER; REACTORS; SAFETY
Optional Information
- Notes
- 17 refs.; Available on CD-ROM from American Nuclear Society - ANS, 555 North Kensington Avenue, La Grange Park, IL 60526 (US)