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Nuclear Production of Hydrogen: Nuclear Science (Third by Japan) Information Exchange Meeting on Nuclear Production of

By Japan) Information Exchange Meeting on Nuclear Production of Hydrog

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S. (2005), “Contingency in Levelized Capital Cost Estimation,” AACE International Annual Meeting Transactions, June 25-29, 2005. shtml 41 This page intentionally left blank FUTURE PLAN ON ENVIRONMENTALLY FRIENDLY HYDROGEN PRODUCTION BY NUCLEAR ENERGY Shusaku Shiozawa, Masuro Ogawa and Ryutaro Hino Japan Atomic Energy Agency (JAEA), Oarai, Ibaraki, 311-1394, Japan Abstract It is universally recognised that hydrogen is one of the best energy media and its demand will increase greatly in the near future.

Here, the hydrogen station produces hydrogen at a rate of 300m3/h by using water electrolysis with electrolysis efficiency of 75%. 1ha (1 000 m2 = 40m x 25m). 45 Figure 4. 1ha (=40m x 25m) 6-10 ha Height; 100 m Facility for energy conversion 300 times area of H2-station HTGR H2 6 ha for about 270 H2-stations 2 To generate 1 300kW of electricity, necessary area of photovoltaic cells is up to 10ha (100 000m ), and that of windmills with up to 88 m blade-diameter working under the wind speed of 5m/s to 7m/s is even greater than that of photovoltaic cells, up to 30ha.

It is assumed to construct a new HTGR every 2 years until 2090 as mentioned above. 89 million tons, which is only 7% increase compared with line 3. Figure 11 shows the future status of the nuclear and the hydrogen production plants. The FBR fuel cycle is one of the best ways to mitigate the resources and the environmental issues. The issue of natural uranium can be solved by the FBR fuel cycle, and then HTGRs will be operated with the MOX fuel using plutonium bred by FBR. As for the high level radioactive waste, the load to environment can be significantly reduced by burning off the minor actinides with FBR.

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