Fukushima Accident: Radioactivity Impact on the Environment

Pavel P. Povinec, Katsumi Hirose,, Michio Aoyama

Fukushima Accident presents up-to-date information on radioactivity released to the atmosphere and the ocean after the accident on the Fukushima Dai-ichi nuclear power plant, on the distribution of radionuclides in the world atmosphere and oceans, and their impact on the total environment (man, fauna, and flora). The book will evaluate and discuss the post-Fukushima situation, emphasizing radionuclide impacts on the terrestrial and marine environments, and compare it with the pre-Fukushima sources of radionuclides in the environment. The authors' results, as well as knowledge gathered from the literature, will provide up-to-date information on the present status of the topics. Fukushima Accident is based on the environmental and nuclear research; however, the presentation will be suitable for university-level readers.

ScienceScience · medium confidenceScience81 signalsLlm Classifier: Science -> ScienceGoogle Books: Technology & Engineering -> TechnologyAward Category: PROSE Award for Earth and Environmental Sciences -> Arts & CriticismOceans, Rivers & WaterCold War & Nuclear PoliticsEnvironment, Conservation & PollutionEssays & Cultural Criticism
Experimental book profileGenerated by GPT-5.4 nano · may contain inaccuracies

This is an unverified interpretation of the catalog description, offered as an opt-in discovery experiment—not as bibliographic fact.

  1. 01 Central figures

    None extracted with sufficient confidence.

  2. 02 Central places

    None extracted with sufficient confidence.

    These suggestions did not meet the normal display threshold and are more likely to be wrong.

    • Fukushima Dai-ichi nuclear power plant60%
    • the world atmosphere40%
    • the oceans38%
  3. 03 Suggested argument

    No argument inferred with sufficient confidence.

  4. 04 Reading orientation

    55 / 100 academic

    Trade / academic crossover

    An estimate of intended readership and scholarly apparatus—not quality or importance.

Confidence percentages are the model's own estimates. Profile confidence: 52%.