Environmental Behavior of the Radionuclides Released from the Fukushima Daiichi Nuclear Power Plant Accident

The environmental behavior of radioactive nuclides released from the Fukushima Daiichi Nuclear Power Station(FDNPS) accident in eastern Japan was investigated. The radioactive pollution of environmental samples, including airborne dust, soil, sediment, fish, and other organisms was described. It was...

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Published inRADIOISOTOPES Vol. 63; no. 6; pp. 299 - 316
Main Author YAMAZAKI, Hideo
Format Journal Article
LanguageEnglish
Japanese
Published Japan Radioisotope Association 15.06.2014
Subjects
Online AccessGet full text
ISSN0033-8303
1884-4111
DOI10.3769/radioisotopes.63.299

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Abstract The environmental behavior of radioactive nuclides released from the Fukushima Daiichi Nuclear Power Station(FDNPS) accident in eastern Japan was investigated. The radioactive pollution of environmental samples, including airborne dust, soil, sediment, fish, and other organisms was described. It was evaluated for environmental behavior and fate of the radioactive material from the spatial and temporal distribution of the radioactive nuclides. In Higashiosaka City about 600km away from FDNPS, it begins to detect the radioactive nuclides in the airborne dust from 25th March 2011. Radioactive fission products 95Zr-95Nb was detected on 18th April. The concentrations of 131I, 134Cs, and 137Cs in the soil collected from Fukushima City were 126000, 14000, and 14200Bq/kg on 19th March 2011 and 12800, 13200, and 13700Bq/kg on 26th March 2011, respectively. The concentrations of 131I, 134Cs, and 137Cs in the soil samples collected from March-June 2011 from study sites in metropolitan area and Kanto region ranged from nd to 91900, 59 to 16100, and 69 to 17600Bq/kg, respectively. (Concentrations of 131I were done decay correction to the value of 16th March) Radioactivities in fish samples collected from off FDNPS, Tokyo Bay, and Kejonuma Pond were measured. The radioactive contamination of forest ecosystem was also investigated. Two processes are involved in the radioactive contamination of the environment from the FDNPS accident. One is contamination by radioactive nuclides released from the hydrogen explosion. Leakage of contaminated cooling water to the ocean is in other important environmental pollution. We must continue carefully monitoring of radioactive nuclides in the environment.
AbstractList The environmental behavior of radioactive nuclides released from the Fukushima Daiichi Nuclear Power Station(FDNPS) accident in eastern Japan was investigated. The radioactive pollution of environmental samples, including airborne dust, soil, sediment, fish, and other organisms was described. It was evaluated for environmental behavior and fate of the radioactive material from the spatial and temporal distribution of the radioactive nuclides. In Higashiosaka City about 600km away from FDNPS, it begins to detect the radioactive nuclides in the airborne dust from 25th March 2011. Radioactive fission products 95Zr-95Nb was detected on 18th April. The concentrations of 131I, 134Cs, and 137Cs in the soil collected from Fukushima City were 126000, 14000, and 14200Bq/kg on 19th March 2011 and 12800, 13200, and 13700Bq/kg on 26th March 2011, respectively. The concentrations of 131I, 134Cs, and 137Cs in the soil samples collected from March-June 2011 from study sites in metropolitan area and Kanto region ranged from nd to 91900, 59 to 16100, and 69 to 17600Bq/kg, respectively. (Concentrations of 131I were done decay correction to the value of 16th March) Radioactivities in fish samples collected from off FDNPS, Tokyo Bay, and Kejonuma Pond were measured. The radioactive contamination of forest ecosystem was also investigated. Two processes are involved in the radioactive contamination of the environment from the FDNPS accident. One is contamination by radioactive nuclides released from the hydrogen explosion. Leakage of contaminated cooling water to the ocean is in other important environmental pollution. We must continue carefully monitoring of radioactive nuclides in the environment.
The environmental behavior of radioactive nuclides released from the Fukushima Daiichi Nuclear Power Station(FDNPS) accident in eastern Japan was investigated. The radioactive pollution of environmental samples, including airborne dust, soil, sediment, fish, and other organisms was described. It was evaluated for environmental behavior and fate of the radioactive material from the spatial and temporal distribution of the radioactive nuclides. In Higashiosaka City about 600km away from FDNPS, it begins to detect the radioactive nuclides in the airborne dust from 25th March 2011. Radioactive fission products super(95)Zr- super(95)Nb was detected on 18th April. The concentrations of super(131)I, super(134)Cs, and super(137)Cs in the soil collected from Fukushima City were 126000, 14000, and 14200Bq/kg on 19th March 2011 and 12800, 13200, and 13700Bq/kg on 26th March 2011, respectively. The concentrations of super(131)I, super(134)Cs, and super(137)Cs in the soil samples collected from March-June 2011 from study sites in metropolitan area and Kanto region ranged from nd to 91900, 59 to 16100, and 69 to 17600Bq/kg, respectively. (Concentrations of super(131)I were done decay correction to the value of 16th March) Radioactivities in fish samples collected from off FDNPS, Tokyo Bay, and Kejonuma Pond were measured. The radioactive contamination of forest ecosystem was also investigated. Two processes are involved in the radioactive contamination of the environment from the FDNPS accident. One is contamination by radioactive nuclides released from the hydrogen explosion. Leakage of contaminated cooling water to the ocean is in other important environmental pollution. We must continue carefully monitoring of radioactive nuclides in the environment.
Author YAMAZAKI, Hideo
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14) Yamazaki, H, Ishizu, N. and Kokubu -Saito, Y., History of the radioactivity pollution in Japan: Hiroshima, Nagasaki, Cherunobyl and Fukushima, IUPAC ICAS2011, Urgent Symposium, May 25, Kyoto(2011
20) Ishida, M., Nakagawa, R., Ikeuchi, T. and Yamazaki, H., Radioactivity of organisms by the FDNPS accident, Global Congress on ICM, EMECS 10-MEDCOAST 2013 Joint Conference, Book of Extended Abstracts, 73-74(2013
21) 松本英二,東京湾の底質環境,地球化学,17,27-32(1985
27) 海洋生物への放射性物質の移行,環境パラメーター・シリーズ6,原子力環境整備センター(1996
2) 福島原子力事故調査委員会報告書(東京電力,2012年6月20日提出
9) Zheng, J., Tagami, K. and Uchida, S., Release of plutonium isotopes into the environment from the Fukushima Daiichi Nuclear Power Plant accident:What is known and what needs to be known, Environ. Sci. Tech., 47, 9584-9595(2013
11) Morino, T., Ohara, T., Watanabe, M., Hayashi, S. and Nishizawa, M., Episode analysis of deposition of radiocesium from the Fukushima Daiichi Nuclear Power Plant accident, Environ. Sci. Tech., 47, 2341-2322(2013
23) 水産庁,高濃度に放射性セシウムで汚染された魚類の汚染源・汚染経路の解明のための緊急調査研究,平成24年度科学技術戦略推進費「重要政策課題への機動的対応」に係るプロジェクト(2013年6月
28) Doi, H., Takahara, T. and Tanaka, K., Trophic position and metabolic rate predict the long-term decay process of radioactive cesium in fish:A meta-analysis, PLoS ONE, 7, Issue1, e29295(2012
13) Yoshida, N. and Kanda, J., Tracking the Fukushima radionuclides, Science, 336, 1115-1116(2012
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1) 福島原発事故独立検証委員会報告書(民間,2012年2月27日提出
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37) 日本原子力研究開発機構,福島第一原子力発電所事故に伴う放射性物質の長期的影響把握手法の確立,平成24年度放射能測定調査委託事業成果報告書(平成25年
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24) Buesseler, K. O., Fishing for answers off Fukushima, Science, 338, 480-482(2012
12) Yasuhara, M. and Yamazaki, H., The impact of 150 years of anthropogenic pollution on the shallow marine ostracode fauna, Osaka Bay, Japan, Mar. Micropaleontol., 55, 63-74(2005
30) Madigan, D. J., Baumann, Z. and Fisher, N. S., Pacific bluefin tuna transport Fukushima-derived radionuclides from Japan to California, PNAS, 109, 9483-9486(2012
31) Madigan, D. J., Baumann, Z., Sodgrass, O. E., Ergül, H. A., Dewar, H. and Fisher, N. S., Radiocesium in Pacific bluefin tuna Thunnus orientalis in 2012 validates new tracer technique, Environ. Sci. Tech., 47, 2287-2294(2013
17) 石田真展,中川亮太,門馬弘樹,内田百合子,東 良慶,原田 強,関口秀雄,山崎秀夫,信濃川大河津分水沿岸底質中で検出された福島第一原発事故由来の放射性セシウムの起源と蓄積機構,第14回環境放射能研究会論文集,235-239(2013
36) Helal, A. A., Arida, H. A., Rizk, H. E. and Khalifa, S. M., Interaction of cesium with humic materials:A comparative study of radioactivity and ISE measurements, Radiochem., 49, 523-529(2007
3) 東京電力福島原子力発電所事故調査委員会報告書(国会,2012年7月5日提出
7) 東京電力株式会社福島第一原子力発電所事故に伴う土壌汚染に関する文部科学省大規模調査プロジェクトに関する資料,RADIOISOTOPES,62, 703-818(2013
8) IAEA, Environmental Consequences of the Chernobyl Accident and Their Remediation:Twenty Years of Experience, Report of the Chernobyl Forum Expert Group ‘Environment’, Radiological Assessment Reports Series(2006
34) Kitamura, M., Kumamoto, Y., Kawakami, H., Cruz, E. C. and Fujikura, K., Horizontal distribution of Fukushima-derived radiocesium in zooplankton in the northwestern Pacific Ocean, Biogeosci., 10, 5729-5738(2013
10) 東京電力,福島第一原子力発電所周辺の地質・地下水および解析(2013年8月23日資料
19) Nakagawa, R., Ishida, M. and Yamazaki, H., Radioactive cesium pollution of Tokyo Bay sediment, Global Congress on ICM, EMECS 10-MEDCOAST 2013 Joint Conference, Book of Extended Abstracts, 71-72(2013
25) 放射線医学総合研究所,環境における放射性物質の動態と被ばく線量算定に関する調査研究,平成5年度~平成9年度,最終報告書(1999年12月
29) Kanda, J., Continuing 137Cs release to the sea from the Fukushima Dai-ichi Nuclear Power Plant through 2012, Biogeosci., 10, 6107-6113(2013
6) 東京電力株式会社福島第一原子力発電所の事故に伴い放出された放射性物質の分布状況等に関する調査研究結果(文科省・農水省,2012年3月
22) 東京都下水道局,http://www.waterworks.metro.tokyo.jp/press/shinsai22/index.html
26) 佐伯誠道,海洋生物の放射能に関する研究,放射線科学,51,4-9(2008
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References_xml – reference: 14) Yamazaki, H, Ishizu, N. and Kokubu -Saito, Y., History of the radioactivity pollution in Japan: Hiroshima, Nagasaki, Cherunobyl and Fukushima, IUPAC ICAS2011, Urgent Symposium, May 25, Kyoto(2011)
– reference: 15) Ishida, M., Nakagawa, R., Umetsu, K., Sugimoto, M., Yamaguchi, Y. and Yamazaki, H., Geographical distribution of radioactive nuclides released from the Fukushima Daiichi Nuclear Power Station accident in eastern Japan, Proceedings of International Symposium on Environmental Monitoring and Dose Estimation of Residents after Accident of TEPCO’s Fukushima Daiichi Nuclear Power Stations, 128-132(2012)(With peer review)
– reference: 25) 放射線医学総合研究所,環境における放射性物質の動態と被ばく線量算定に関する調査研究,平成5年度~平成9年度,最終報告書(1999年12月)
– reference: 30) Madigan, D. J., Baumann, Z. and Fisher, N. S., Pacific bluefin tuna transport Fukushima-derived radionuclides from Japan to California, PNAS, 109, 9483-9486(2012)
– reference: 33) Dietze, H. and Kriest, I., 137Cs off Fukushima Dai-ichi, Japan ―Model based estimates of dilution and fate―, Ocean Sci., 8, 319-332(2012)
– reference: 18) 中川亮太,石田真展,山崎秀夫,福島第一原発事故で放出された放射性セシウムによる東京湾底質の放射能汚染の現況,第14回環境放射能研究会論文集,240-243(2013)
– reference: 10) 東京電力,福島第一原子力発電所周辺の地質・地下水および解析(2013年8月23日資料)
– reference: 1) 福島原発事故独立検証委員会報告書(民間,2012年2月27日提出)
– reference: 7) 東京電力株式会社福島第一原子力発電所事故に伴う土壌汚染に関する文部科学省大規模調査プロジェクトに関する資料,RADIOISOTOPES,62, 703-818(2013)
– reference: 34) Kitamura, M., Kumamoto, Y., Kawakami, H., Cruz, E. C. and Fujikura, K., Horizontal distribution of Fukushima-derived radiocesium in zooplankton in the northwestern Pacific Ocean, Biogeosci., 10, 5729-5738(2013)
– reference: 6) 東京電力株式会社福島第一原子力発電所の事故に伴い放出された放射性物質の分布状況等に関する調査研究結果(文科省・農水省,2012年3月)
– reference: 11) Morino, T., Ohara, T., Watanabe, M., Hayashi, S. and Nishizawa, M., Episode analysis of deposition of radiocesium from the Fukushima Daiichi Nuclear Power Plant accident, Environ. Sci. Tech., 47, 2341-2322(2013)
– reference: 38) Evans, D. W., Alberts, J. J. and Clark, R. A. III, Reversible ion-exchange fixation of cesium-137 leading to mobilization from reservoir sediments, Geochim. Cosmochim. Acta, 47, 1041-1049(1983)
– reference: 8) IAEA, Environmental Consequences of the Chernobyl Accident and Their Remediation:Twenty Years of Experience, Report of the Chernobyl Forum Expert Group ‘Environment’, Radiological Assessment Reports Series(2006)
– reference: 4) 東京電力福島原子力発電所における事故調査・検証委員会報告書(政府,2012年7月23日提出)
– reference: 22) 東京都下水道局,http://www.waterworks.metro.tokyo.jp/press/shinsai22/index.html
– reference: 13) Yoshida, N. and Kanda, J., Tracking the Fukushima radionuclides, Science, 336, 1115-1116(2012)
– reference: 37) 日本原子力研究開発機構,福島第一原子力発電所事故に伴う放射性物質の長期的影響把握手法の確立,平成24年度放射能測定調査委託事業成果報告書(平成25年)
– reference: 35) IAEA, Handbook of Parameter Values for the Prediction of Radionuclide Transfer in Terrestrial and Freshwater Environments, Technical Reports Series 472(2010)
– reference: 5) 福島原発事故と4つの事故調査委員会,経済産業調査室・課,国立国会図書館,調査と情報,756(2012年8月23日)
– reference: 23) 水産庁,高濃度に放射性セシウムで汚染された魚類の汚染源・汚染経路の解明のための緊急調査研究,平成24年度科学技術戦略推進費「重要政策課題への機動的対応」に係るプロジェクト(2013年6月)
– reference: 19) Nakagawa, R., Ishida, M. and Yamazaki, H., Radioactive cesium pollution of Tokyo Bay sediment, Global Congress on ICM, EMECS 10-MEDCOAST 2013 Joint Conference, Book of Extended Abstracts, 71-72(2013)
– reference: 26) 佐伯誠道,海洋生物の放射能に関する研究,放射線科学,51,4-9(2008)
– reference: 28) Doi, H., Takahara, T. and Tanaka, K., Trophic position and metabolic rate predict the long-term decay process of radioactive cesium in fish:A meta-analysis, PLoS ONE, 7, Issue1, e29295(2012)
– reference: 29) Kanda, J., Continuing 137Cs release to the sea from the Fukushima Dai-ichi Nuclear Power Plant through 2012, Biogeosci., 10, 6107-6113(2013)
– reference: 31) Madigan, D. J., Baumann, Z., Sodgrass, O. E., Ergül, H. A., Dewar, H. and Fisher, N. S., Radiocesium in Pacific bluefin tuna Thunnus orientalis in 2012 validates new tracer technique, Environ. Sci. Tech., 47, 2287-2294(2013)
– reference: 3) 東京電力福島原子力発電所事故調査委員会報告書(国会,2012年7月5日提出)
– reference: 36) Helal, A. A., Arida, H. A., Rizk, H. E. and Khalifa, S. M., Interaction of cesium with humic materials:A comparative study of radioactivity and ISE measurements, Radiochem., 49, 523-529(2007)
– reference: 24) Buesseler, K. O., Fishing for answers off Fukushima, Science, 338, 480-482(2012)
– reference: 21) 松本英二,東京湾の底質環境,地球化学,17,27-32(1985)
– reference: 12) Yasuhara, M. and Yamazaki, H., The impact of 150 years of anthropogenic pollution on the shallow marine ostracode fauna, Osaka Bay, Japan, Mar. Micropaleontol., 55, 63-74(2005)
– reference: 27) 海洋生物への放射性物質の移行,環境パラメーター・シリーズ6,原子力環境整備センター(1996)
– reference: 20) Ishida, M., Nakagawa, R., Ikeuchi, T. and Yamazaki, H., Radioactivity of organisms by the FDNPS accident, Global Congress on ICM, EMECS 10-MEDCOAST 2013 Joint Conference, Book of Extended Abstracts, 73-74(2013)
– reference: 2) 福島原子力事故調査委員会報告書(東京電力,2012年6月20日提出)
– reference: 17) 石田真展,中川亮太,門馬弘樹,内田百合子,東 良慶,原田 強,関口秀雄,山崎秀夫,信濃川大河津分水沿岸底質中で検出された福島第一原発事故由来の放射性セシウムの起源と蓄積機構,第14回環境放射能研究会論文集,235-239(2013)
– reference: 32) Aoyama, M., Tsumune, D. and Hamajima, Y., Distribution of 137Cs and 134Cs in the North Pacific Ocean:Impacts of the TEPCO Fukushima-Daiichi NPP accident, J. Radioanal. Nucl. Chem., 296, 535-539(2013)
– reference: 9) Zheng, J., Tagami, K. and Uchida, S., Release of plutonium isotopes into the environment from the Fukushima Daiichi Nuclear Power Plant accident:What is known and what needs to be known, Environ. Sci. Tech., 47, 9584-9595(2013)
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Snippet The environmental behavior of radioactive nuclides released from the Fukushima Daiichi Nuclear Power Station(FDNPS) accident in eastern Japan was investigated....
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Title Environmental Behavior of the Radionuclides Released from the Fukushima Daiichi Nuclear Power Plant Accident
URI https://www.jstage.jst.go.jp/article/radioisotopes/63/6/63_299/_article/-char/en
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Volume 63
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