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Itoi, Hiroyuki*; Ninomiya, Takeru*; Hasegawa, Hideyuki*; Maki, Shintaro*; Sakakibara, Akihiro*; Suzuki, Ryutaro*; Kasai, Yuto*; Iwata, Hiroyuki*; Matsumura, Daiju; Owada, Mao*; et al.
Journal of Physical Chemistry C, 124(28), p.15205 - 15215, 2020/07
Times Cited Count:9 Percentile:32.38(Chemistry, Physical)H.YOSHIMI*; Nozawa, Masao*; H.SHIOZUKA*; Y.NARA*; S.TERASAWA*; H.YAMAMOTO*; J.TAKAHASHI*; T.IWAKI*
ANL-7520 PART-II, p.110 - 120, 1968/00
no abstracts in English
Inagaki, Yoshiyuki; Hino, Ryutaro; Shiozawa, Shusaku; Shirasaki, Tomohiko*; Okada, Yoshimi*; Sakaguchi, Junichi*; Oka, Yoshiaki*
no journal, ,
In recent years, the expectation to the hydrogen society is rising because hydrogen used as the energy-medium is friendly to the global environment. In order to realize the hydrogen society, however, a great deal of hydrogen should be produced industrially because it doesn't exist independently in nature. Furthermore, the infrastructure to store a great deal of hydrogen stably and transport it in the long distance should be prepared. The realization of the hydrogen society to reduce CO
emission substantially can be accelerated by building the system including the hydrogen production process without CO
emission using water as the raw material and nuclear energy, and the safe and stable hydrogen storage/transportation process. In this presentation, the innovative conception of a great deal of hydrogen supply chain penetrating the storage/transportation and the industry use from the hydrogen production with a high-temperature gas-cooled reactor is introduced.
Hino, Ryutaro; Shiozawa, Shusaku; Inagaki, Yoshiyuki; Shirasaki, Tomohiko*; Okada, Yoshimi*; Oka, Yoshiaki*
no journal, ,
no abstracts in English