Watershed‐Geochemical Model to Simulate Dissolved and Particulate 137 Cs Discharge From a Forested Catchment

Author:

Sakuma Kazuyuki1ORCID,Hayashi Seiji2ORCID,Yoshimura Kazuya1,Kurikami Hiroshi1,Malins Alex3,Funaki Hironori1,Tsuji Hideki2ORCID,Kobayashi Takamaru4,Kitamura Akihiro1,Iijima Kazuki1

Affiliation:

1. Sector of Fukushima Research and Development Japan Atomic Energy Agency Fukushima Japan

2. Fukushima Branch National Institute of Environmental Studies Fukushima Japan

3. Center for Computational Science & e‐Systems Japan Atomic Energy Agency Chiba Japan

4. Geosphere Environmental Technology Corporation Tokyo Japan

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference66 articles.

1. Modeling the early-phase redistribution of radiocesium fallouts in an evergreen coniferous forest after Chernobyl and Fukushima accidents

2. SHETRAN: Distributed River Basin Flow and Transport Modeling System

3. Geological(2012).Survey of Japan. Retrieved fromhttps://www.gsj.jp/en/index.htmlAccessed 9 March 2015.

4. Geospatial Information Authority of Japan. (2012). [Retrieved from Retrieved fromhttp://www.gsi.go.jp/%20ENGLISH/Accessed 9 March 2015.

5. Large scale surface–subsurface hydrological model to assess climate change impacts on groundwater reserves

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