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ARTICLE

Effect of gamma-ray irradiation on the deoxygenation of salt-containing water using hydrazine

Fukushima NPP Accident Related

, &
Pages 363-368 | Received 22 Oct 2012, Accepted 21 Dec 2012, Published online: 28 Mar 2013

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Kuniki Hata & Hiroyuki Inoue. (2019) A simulation of radiolysis of chloride solutions containing ferrous ion. Journal of Nuclear Science and Technology 56:9-10, pages 842-850.
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Mark Russell St. John Foreman. (2015) An introduction to serious nuclear accident chemistry. Cogent Chemistry 1:1.
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Takafumi Motooka, Atsushi Komatsu, Takashi Tsukada & Masahiro Yamamoto. (2014) Effect of gamma radiolysis on pit initiation of zircaloy-2 in water containing sea salt. Journal of Nuclear Science and Technology 51:7-8, pages 987-995.
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Junichi Nakano, Yoshiyuki Kaji, Masahiro Yamamoto & Takashi Tsukada. (2014) Effects of hydrazine addition and N2 atmosphere on the corrosion of reactor vessel steels in diluted seawater under gamma-rays irradiation. Journal of Nuclear Science and Technology 51:7-8, pages 977-986.
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Articles from other publishers (4)

Masahiro Yamamoto, Takafumi Motooka & Tomonori Sato. (2021) Mechanism of Deoxidization Effect by Hydrazine under Gamma-ray Irradiated Conditionγ線照射環境下でのヒドラジンの脱酸素効果とその機構. Zairyo-to-Kankyo 70:12, pages 392-395.
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Naon Chang, Huijun Won, Sangyoon Park, Heechul Eun, Seonbyeong Kim, Bumkyung Seo & Yongsoo Kim. (2021) Hydrazine Radiolysis by Gamma-Ray in the N2H4–Cu+–HNO3 System. International Journal of Molecular Sciences 22:14, pages 7376.
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Andrzej G. Chmielewski & Monika M. Szołucha. (2016) Radiation chemistry for modern nuclear energy development. Radiation Physics and Chemistry 124, pages 235-240.
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Junichi NAKANO, Masahiro YAMAMOTO & Takashi TSUKADA. (2014) Corrosion of Carbon Steel and Low-Alloy Steel in Diluted Seawater Containing Hydrazine under Gamma-Rays Irradiation. Transactions of the Atomic Energy Society of Japan 13:1, pages 1-6.
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