Quantitative Analysis Reveals Widespread Dispersion of Radioactive Cesium-Rich Microparticles (CsMPs) Released from the Fukushima Daiichi Nuclear Accident

Journal of Hazardous Materials cover for the featured research paper

Overview

A research team led by Associate Professor Shinya Yamasaki of the Radioisotope Research Division, CRiES, University of Tsukuba, and Professor Satoshi Utsunomiya of National Taiwan University has published a new study in the Journal of Hazardous Materials. The findings were also featured in a press release issued by the University of Tsukuba.
※Press release document (PDF855KB)(Available in Japanese only.)

The study investigated the large-scale distribution and dispersion processes of radioactive cesium-rich microparticles (CsMPs) released during the Fukushima Daiichi Nuclear Power Plant accident. By analyzing soil samples collected from 100 locations across Fukushima Prefecture, the researchers found substantial regional variations in both the abundance of CsMPs and their contribution to total radioactivity. In some areas, more than 60% of the soil radioactivity was attributable to CsMPs.

Comparison with atmospheric dispersion simulations further revealed that large quantities of CsMPs were generated and released during the early hours of March 15, 2011, and subsequently transported over a wide area of Fukushima Prefecture under prevailing meteorological conditions. In contrast, radioactive plumes released after March 16 contained few CsMPs and were dominated by more water-soluble forms of radioactive cesium.

These findings improve our understanding of the environmental behavior of radioactive microparticles released during nuclear accidents and provide valuable information for future environmental risk assessments and dispersion modeling of radioactive contaminants.

Publication Information

Uncovering Hidden Dispersion Patterns of Radioactive Cesium-Rich Microparticles from Fukushima Daiichi
Miyazaki, K., Fueda, K., Kadowaki, M., Terada, H., Kozai, N., Iwata, H., Horie, K., Takehara, M., Yamasaki, S., Grambow, B., Law, G.T.W., Ewing, R.C., Utsunomiya, S., Journal of Hazardous Materials, 511, (2026), DOI:10.1016/j.jhazmat.2026.142180 (P-25-13)

Media coverage

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Leaked Tritium Reveals the Source of 137Cs from the Fukushima Daiichi Nuclear Power Plant to the Ocean

Journal of Water Research cover for the featured research paper

Overview

A research paper by a team consisting of Hikaru Sato, Professor Yuichi Onda and Professor Daisuke Tsumune from the University of Tsukuba, and Katsuhiko Kohata and Tomomi Okamura from Tokyo Electric Power Company Holdings, Inc. has been published and press released. ※Press release document (PDF 5.21MB)

This study identified the source and fluctuation factors of radioactive cesium-137 (¹³⁷Cs) flowing into the harbor of the Fukushima Daiichi Nuclear Power Plant via its drainage channels. By utilizing tritium (³H) in groundwater—originating from tank water leaks—as a hydrological tracer, the research revealed that approximately 50% of the ¹³⁷Cs originates from rainwater that fell on the reactor buildings, referred to as “roof drainage.”

Publication Information

Leaked Tritium Reveals the Source of 137Cs from the Fukushima Daiichi Nuclear Power Plant to the Ocean
Sato, H., Onda, Y., Tsumune, D., Kohata, K., Okamura, T., Leaked tritium reveals the source of 137Cs from the Fukushima Daiichi Nuclear Power Plant to the ocean, Water Research, 2025, DOI:10.1016/j.watres.2025.124464 (Y-24-01,Y-25-02)

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Diurnal regulation of SOS pathway and sodium excretion underlying salinity tolerance of Vigna marina

Journal of Plant, Cell & Environment cover for the featured research paper

Overview

A research paper by a team consisting of Researcher Yusaku Noda from the National Institutes for Quantum Science and Technology, Senior Researcher Ken Naito from the National Agriculture and Food Research Organization (NARO), Associate Professor Jun Furukawa from the University of Tsukuba, and Professor Keitaro Tanoi from the University of Tokyo has been published and jointly press released.  ※Press release (PDF 2.39MB)

This study elucidated the salt tolerance mechanism of Canavalia rosea, a wild relative of adzuki bean known for its exceptional resistance to salinity. The plant exhibits a high capacity to excrete sodium from its roots and forms a barrier that prevents sodium from entering the root system. Additionally, the sodium excretion was found to follow a diurnal rhythm—active during the day and inactive at night. These findings are expected to contribute to the development of salt-tolerant crops and may help address freshwater resource challenges.

Publication Information

Diurnal regulation of SOS pathway and sodium excretion underlying salinity tolerance of Vigna marina
Noda Y, Wang F, Chankaew S, Ariga H, Muto C, Iki Y, Ohashi H, Takahashi Y, Sakai H, Iseki K, Ogiso-Tanaka E, Suzui N, Yin YG, Miyoshi Y, Enomoto K, Kawachi N, Somta P, Furukawa J, Tomooka N, Naito K. Plant, Cell & Environment, 2024, DOI:10.1111/pce.15402 (Y-19-05)

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Effects of Large-Scale Wildfires on the Redistribution of Radionuclides in the Chornobyl River System

Journal of Environmental Science & Technology cover for the featured research paper

Overview

A paper by a research group led by Associate Professor Yasunori Igarashi of Tsukuba University and Project Professor Alexei Konoplev of Fukushima University has been joint press released.

The study investigated the impact of a large forest fire in April 2020 in the Chornobyli controlled area of Ukraine on the redistribution of radioactive materials. After the fire, the abundance of 137Cs and 90Sr in carbonized residues and soil was identified, and long-term monitoring of concentrations in streams showed that the fire enhanced the redistribution of 137Cs and 90Sr. *Press release (PDF 404KB)

Publication Information

Effects of Large-Scale Wildfires on the Redistribution of Radionuclides in the Chornobyl River System
Yasunori Igarashi, Valentyn Protsak, Gennady Laptev, Igor Maloshtan, Dmitry Samoilov, Serhii Kirieiev, Yuichi Onda, Alexei Konoplev, Environmental Science & Technology, 2024, DOI:10.1021/acs.est.4c07019

Media Coverage

  • AGU Eos(2025年1月30日)
    Wildfires Raise Concern About Remobilized Radioactive Contamination
    Researchers collected soil and ash after the 2020 wildfires in the Chornobyl Exclusion Zone. Chemical tests suggested that the fires made it easier for contaminants to wash into nearby rivers.
Forest fire in the Chornobyl Exclusion Zone
Photo: Provided by Denis Vishnevskiy

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Riverine 129I dynamics during high-flow events on the Abukuma River in Fukushima

Journal of Applied Geochemistry cover for the featured research paper

Overview

A paper was published by a research group consisting of Associate Prof. Y. Wakiyama of Fukushima Univ., Assistant Prof. T. Matsunaka of Kanazawa Univ., and Associate Prof. K. Sasa of Tsukuba Univ., and was joint press released. ※Press release (PDF 489KB)

This study revealed that the concentration of iodine-129 in the Abukuma River is equivalent to the level before the Fukushima nuclear accident. In addition, this is valuable knowledge not only for the Fukushima nuclear accident but also for considering the global circulation of iodine-129.

Publication Information

Riverine 129I dynamics during high-flow events on the Abukuma River in Fukushima
Yoshifumi Wakiyama, Masumi Matsumura, Tetsuya Matsunaka, Shigekazu Hirao, Kimikazu Sasa, Applied Geochemistry, 2024, DOI:10.1016/j.apgeochem.2024.106134 (E-20-09、E-21-06)

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A wide-area prediction model for transpiration of cypress plantations using remote sensing

ISPRS Journal of Photogrammetry and Remote Sensing cover

Overview

A paper and research content by ERAN 2023 member Prof. Takashi Gomi of Nagoya University, Prof. Yuichi Onda of the University of Tsukuba, Asahi Hashimoto, and others was released in the press. PRESS RELEASE (PDF) 

Publication Information

Satellite remote sensing model for estimating canopy transpiration in cypress plantation using in situ sap flow observations and forest inventory
Hashimoto, A., Chiu, C., Onda, Y., Tateishi, M., Tsuruta, K., Gomi, T., ISPRS Journal of Photogrammetry and Remote Sensing, 2023, DOI:10.1016/j.isprsjprs.2023.11.009 (P-23-04)

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Paper Published in Nature Sustainability

First Assessment of the Downstream Impacts of Post-Fukushima Decontamination
– Temporary Increase in Sediment Discharge Mitigated by Reduced Radiocesium Concentrations and Vegetation Recovery –

The release of radioactive materials resulting from nuclear activities and nuclear accidents poses serious threats to both the environment and the economy. Following the accident at the Fukushima Daiichi Nuclear Power Plant, large quantities of radioactive materials containing radiocesium, which has a relatively long half-life, were released into the environment. Government-led decontamination successfully reduced radiation risks by removing radiocesium-contaminated surface soil. However, the long-term impacts of these decontamination activities on downstream environments had remained unclear.

Large-scale decontamination was carried out from 2012 in areas centered on the difficult-to-return zones of Fukushima Prefecture. During the decontamination process, approximately 5 cm of topsoil and vegetation were removed and replaced with uncontaminated soil, resulting in a temporary reduction in land cover. Over the following years, vegetation gradually recovered, restoring land cover in the decontaminated areas. Understanding how these dramatic land-cover changes affected sediment transport and radiocesium dynamics is essential for evaluating environmental sustainability.

In this study, the researchers comprehensively evaluated how land-cover changes caused by agricultural decontamination influenced suspended sediment and particulate ¹³⁷Cs transport in the Niida River catchment, Fukushima Prefecture (Figure 1), where large-scale farmland decontamination was conducted.

Maps showing the progression of decontaminated areas were created using official government decontamination records. Vegetation recovery was monitored using the Normalized Difference Vegetation Index (NDVI) derived from satellite imagery. To assess river responses, long-term field observations covering both the decontamination period (2013–2016) and the natural recovery period (2017–2018) were conducted. River discharge, turbidity (measured at 10-minute intervals), and particulate ¹³⁷Cs concentrations were continuously monitored at four observation sites, including two upstream and two downstream locations.

By integrating these long-term monitoring data with remote sensing analyses, the study systematically clarified how long-term land-cover changes in upstream decontaminated areas affected downstream river environments and the transport of ¹³⁷Cs to the Pacific Ocean.

Although reducing radiation exposure was the highest priority of the Fukushima decontamination program, the large-scale land modification required careful consideration of downstream environmental impacts. The study found that downstream impacts were relatively short-lived and limited because of both the substantial reduction in ¹³⁷Cs concentrations following decontamination and the rapid recovery of vegetation promoted by Fukushima’s humid climate. At the same time, the findings demonstrate that large-scale land modification does not necessarily minimize downstream impacts under all conditions. When similar remediation measures are considered for radioactive or other environmental contaminants in the future, it will be important to evaluate local vegetation recovery potential in advance and implement appropriate revegetation measures to minimize impacts on downstream environmental sustainability.

Paper Information

Title:Persistent impact of Fukushima decontamination on soil erosion and suspended sediment
Authors:Bin Feng, Yuichi Onda*, Yoshifumi Wakiyama, Keisuke Taniguchi, Asahi Hashimoto, Yupan Zhang
Journal:Nature Sustainability
Published:July 14, 2022
DOI:10.1038/s41893-022-00924-6

Related Links

  • Press Release (PDF) (This link will open the University of Tsukuba website.)
    Principal Investigator 

    Yuichi Onda
    Professor
    Faculty of Life and Environmental Sciences / Center for Research in Isotopes and Environmental Dynamics (CRiED)
    University of Tsukuba

Press Release Issued, Open Call Started

ERNC has issued a press release on 10th of April, 2019. Full text available here. (Japanese, PDF: 264KB)

At the same time, an open call for joint research has started. The guideline and application are available for viewing and downloading from here. Looking forward to your application!