1/8/2024 0 Comments Nuclear reactor meltdown range![]() It is principally responsible for the increased radiation levels still present in the area around Fukushima.Ĭontamination of foodstuffs and water in Japanįoodstuffs were contaminated by radioactive material that was deposited on the leaves or directly on agricultural produce such as fruit and vegetables, or that was absorbed via the roots of fruit and vegetable crops.Īs a result of the Fukushima accident, not only was radioactive material released into the atmosphere, but it also entered the water – primarily the water that was fed into the reactors for emergency cooling, but also the groundwater penetrating into the reactor. Contamination with radioactive caesium, with a half-life of up to around 30 years, remains in the environment for a long time.Half-lives of up to eight days mean that radioactive iodine released in a reactor accident disappears from the environment after about three months.Radionuclides of the elements iodine, tellurium (which decays into radioactive iodine) and caesium were particularly relevant in terms of the radioactive contamination of the environment, as well as that of humans. Outside of Japan, the level of contamination with radioactive material from the Fukushima reactors was low. The radioactive fallout was dispersed locally, regionally and globally over land and sea by the weather (wind and precipitation).Īfter the accident in Fukushima, areas to the north-west of the reactor plant received high levels of contamination, particularly in the prefecture of Fukushima. The reactor accident in Fukushima in 2011 resulted in the release of radioactive material ( radionuclides) into the atmosphere. Radioactive material continues to enter the water used to cool the Fukushima reactors.ĭeposition of caesium-137 in Japan following the Fukushima reactor accident Source: UNSCEAR 2013 Report, Volume I, ANNEX A, Figure B-VIII / reproduced by permission of UNSCEAR.Almost no foodstuffs in Japan are still contaminated today, with wild boar being one exception.Areas to the north-west of the reactor plant received high levels of contamination, especially in the prefecture of Fukushima.Radioactive fallout was dispersed over land and sea by wind and precipitation.Biological dosimetry following radiation exposure.Comparative tests for passive radon measuring devices.Accredited calibration laboratory.Measurement exercises on the ground.Helicopter-borne Measurement Exercises.Exercises for emergency situations.Response to Nuclear Security Events.Federal Radiological Situation Centre.What are the consequences of an emergency?.Occupational radiation protection.Atomic bombings: radiation protection.Principles of radiation protection.Ionising radiation: positive effects?.Epidemiology of radiation-induced diseases.Consequences of a radiation accident.Effects of selected radioactive materials. ![]() Items claiming to provide beneficial effects of radiation.pursuant to Radiation Protection Ordinance Register high-level radioactive radiation sources.Radioactive radiation sources in Germany.Applications in daily life and in technology.Radiation protection in medicine: international activities.Radiation protection in radiotherapy.Radiation applications and pregnancy.Control center for quality assurance.Laboratories for the measurement of radioactive materials.Residues from deep geothermal energy.Residues from drinking-water treatment.Enhanced environmental radioactivity as a result of human influence.Natural radionuclides in building materials.Radiation exposure of mushrooms and game.Natural radionuclides in mineral waters.Radiation exposure due to natural radionuclides in drinking water.Radiation exposure via food intake.What radionuclides can be found in food?.Provisions for buildings and workplaces.What is the spatial distribution of radon in Germany?.Air monitoring at Schauinsland measuring station.Where does radioactivity occur in the environment?.Radioactivity in the environment.
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