Study on hydrogen production from steam electrolysis in LHD-type power reactor FFHR

被引:5
|
作者
Yamada, Shuichi [1 ]
Sagara, Akio [1 ]
Imagawa, Shinsaku [1 ]
Motojima, Osamu [1 ]
机构
[1] Natl Inst Nat Sci, Natl Inst Fus Sci, Toki, Gifu 5095292, Japan
关键词
LHD-type reactor; FFHR; Power plant; Steam electrolysis; Hydrogen production; Compression; Liquefaction; Co-generation; BLANKET; SYSTEM; DESIGN;
D O I
10.1016/j.fusengdes.2008.12.066
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
To assess the technical potential of the FFHR operation style, dedicated hydrogen production from electrolysis by the electric power of 1 GW is investigated in this report. Gaseous hydrogen of 700 tons per day can be produced. The steam of 6354 tons per day at 150 degrees C is necessary in this case. In FFHR, about 450 MW of thermal power is delivered via the scrape-off layer plasma to the divertors with double-null structure. The divertor may be one of the potential heat sources to produce the steam for the electrolysis. Hydrogen has to be packaged by compression or liquefaction, transported by trailer or pipeline, stored, and transferred to the end users. The four different styles of plant outputs were investigated: (A) 1 GW of power generation, (B) pressurized hydrogen gas of 625 tons per day, (C) liquid hydrogen of 574 tons per day, and (D) 0.824 GW of electricity plus 100 tons per day of liquid hydrogen. (C) 2009 Published by Elsevier B.V.
引用
收藏
页码:1997 / 2001
页数:5
相关论文
共 50 条
  • [21] Study on the hydrogen production from methanol steam reforming in supported palladium membrane reactor
    Lin, YM
    Rei, MH
    CATALYSIS TODAY, 2001, 67 (1-3) : 77 - 84
  • [22] Study of safety concept for a helical-type fusion reactor, FFHR
    Uda, T.
    Sagara, A.
    Motojima, O.
    Yamanishi, H.
    Tanaka, S.
    Terai, T.
    Noda, T.
    Fusion Engineering and Design, 1998, 42 (Pt C): : 115 - 125
  • [23] Study of steam electrolysis using a microtubular ceramic reactor
    Hashimoto, S.
    Liu, Y.
    Mori, M.
    Funahashi, Y.
    Fujishiro, Y.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2009, 34 (03) : 1159 - 1165
  • [24] Hydrogen production by high temperature electrolysis with nuclear reactor
    Fujiwara, Seiji
    Kasai, Shigeo
    Yamauchi, Hiroyuki
    Yamada, Kazuya
    Makino, Shinichi
    Matsunaga, Kentaro
    Yoshino, Masato
    Kameda, Tsuneji
    Ogawa, Takashi
    Momma, Shigeki
    Hoashi, Eiji
    PROGRESS IN NUCLEAR ENERGY, 2008, 50 (2-6) : 422 - 426
  • [25] High yields of hydrogen production from methanol steam reforming with a cross-U type reactor
    Zhang, Shubin
    Zhang, Yufeng
    Chen, Junyu
    Zhang, Xuelin
    Liu, Xiaowei
    PLOS ONE, 2017, 12 (11):
  • [26] Study of safety concept for a helical-type fusion reactor, FFHR
    Uda, T
    Sagara, A
    Motojima, O
    Yamanishi, H
    Tanaka, S
    Terai, T
    Noda, T
    FUSION ENGINEERING AND DESIGN, 1998, 42 : 115 - 125
  • [27] Experiments on hydrogen production from methanol steam reforming in the microchannel reactor
    Du, Xiaoze
    Shen, Yinqi
    Yang, Lijun
    Shi, Yingshuang
    Yang, Yongping
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (17) : 12271 - 12280
  • [28] Hydrogen production from the steam reforming of liquid hydrocarbons in membrane reactor
    Chen, Yazhong
    Xu, Hengyong
    Wang, Yuzhong
    Xiong, Guoxing
    CATALYSIS TODAY, 2006, 118 (1-2) : 136 - 143
  • [29] A perspective on hydrogen production via high temperature steam electrolysis
    Xinbing Chen
    Chengzhi Guan
    Guoping Xiao
    Cheng Peng
    Jian-Qiang Wang
    Science China(Chemistry), 2017, 60 (11) : 1379 - 1381
  • [30] A perspective on hydrogen production via high temperature steam electrolysis
    Chen, Xinbing
    Guan, Chengzhi
    Xiao, Guoping
    Peng, Cheng
    Wang, Jian-Qiang
    SCIENCE CHINA-CHEMISTRY, 2017, 60 (11) : 1379 - 1381