A
Atsuhiko Terada
Researcher at Japan Atomic Energy Agency
Publications - 49
Citations - 413
Atsuhiko Terada is an academic researcher from Japan Atomic Energy Agency. The author has contributed to research in topics: Hydrogen production & Sulfuric acid. The author has an hindex of 8, co-authored 48 publications receiving 358 citations.
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Journal ArticleDOI
Thermochemical water-splitting cycle using iodine and sulfur
TL;DR: In this article, the feasibility of the closed-cycle continuous water splitting has been demonstrated by coupling the Bunsen reaction, thermal decomposition of hydrogen iodide and that of sulfuric acid.
Journal ArticleDOI
Development of Hydrogen Production Technology by Thermochemical Water Splitting IS Process Pilot Test Plan
Atsuhiko Terada,Jin Iwatsuki,Shuichi Ishikura,Hiroki Noguchi,Shinji Kubo,Hiroyuki Okuda,Seiji Kasahara,Nobuyuki Tanaka,Hiroyuki Ota,Kaoru Onuki,Ryutaro Hino +10 more
TL;DR: In this article, a multiphase flow analysis code that can analyze systems in which chemical reactions occur is developed. But it is not suitable for the design of the thermochemical IS process.
Journal ArticleDOI
Characterization and storage of radioactive zeolite waste
Isao Yamagishi,Ryuji Nagaishi,Chiaki Kato,Keisuke Morita,Atsuhiko Terada,Yu Kamiji,Ryutaro Hino,Hiroyuki Sato,Kenji Nishihara,Yasuhiro Tsubata,Shinsuke Tashiro,Ryuichi Saito,Tomonori Satoh,Junichi Nakano,Wenjun Ji,Hisashi Fukushima,Seichi Sato,Mark S. Denton +17 more
TL;DR: For the safe storage of zeolite wastes generated by the treatment of radioactive saline water at the Fukushima Daiichi Nuclear Power Station, a study investigated the fundamental properties of h....
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Design of HTTR-GT/H2 test plant
Xing L. Yan,Hiroyuki Sato,Junya Sumita,Yasunobu Nomoto,Shoichi Horii,Yoshiyuki Imai,Seiji Kasahara,Koichi Suzuki,Jin Iwatsuki,Atsuhiko Terada,Yukio Tachibana,M. Oono,Satoru Yamada,Kazumasa Suyama +13 more
TL;DR: The pre-licensing design of an HTGR cogeneration test plant to be coupled to JAEA's existing test reactor HTTR is discussed in this article, where the test plant is designed to demonstrate the system of the commercial plant design of Gas Turbine High Temperature Reactor for Cogeneration (GTHTR300C).
Journal ArticleDOI
Conceptual design of the iodine–sulfur process flowsheet with more than 50% thermal efficiency for hydrogen production
TL;DR: In this article, a conceptual design of a practical large-scale plant of the thermochemical water splitting the iodine-sulfur (IS) process flowsheet was carried out as a heat application of Japan Atomic Energy Agency's commercial Gas Turbine High Temperature Reactor 300 MW for Cogeneration (GTHTR300C) plant design.