Fukushima radionuclides at air filter and rain water samples collected from Istanbul and their atmospheric removal time

Accident at Fukushima Daiichi Nuclear Power Plant (FDNPP) is one of the most serious accident in the world after Chernobyl accident. Following the continuing release of radionuclides in air after FDNPP, traces of fission products ((131)I, (134)Cs and (137)Cs) were recorded in the air filter and rain...

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Published in:Radiation protection dosimetry Vol. 158; no. 2; pp. 195 - 200
Main Authors: Güngör, E, Güngör, N, Yüksel, A, Bağ, G, Orhan, N
Format: Journal Article
Language:English
Published: England 01-01-2014
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Abstract Accident at Fukushima Daiichi Nuclear Power Plant (FDNPP) is one of the most serious accident in the world after Chernobyl accident. Following the continuing release of radionuclides in air after FDNPP, traces of fission products ((131)I, (134)Cs and (137)Cs) were recorded in the air filter and rain water samples collected from the ÇNAEM area at İstanbul on 4 April 2011. Airborne particle samples were collected daily in air filters and radio assayed with a high purity germanium detector. The fission products (131)I, (134)Cs and (137)Cs were measured with the maximum activity concentrations of 1.03±0.08, 0.25±0.03 and 0.23±0.03 mBq m(-3), respectively. For determination of the origin of the releases the (134)Cs/(137)Cs ratio was calculated between 1.09 and 0.85. The authors find removal times for (137)Cs of 8.13 d, (134)Cs of 7.25 d and (131)I of 6.82 d.
AbstractList Accident at Fukushima Daiichi Nuclear Power Plant (FDNPP) is one of the most serious accident in the world after Chernobyl accident. Following the continuing release of radionuclides in air after FDNPP, traces of fission products ((131)I, (134)Cs and (137)Cs) were recorded in the air filter and rain water samples collected from the ÇNAEM area at İstanbul on 4 April 2011. Airborne particle samples were collected daily in air filters and radio assayed with a high purity germanium detector. The fission products (131)I, (134)Cs and (137)Cs were measured with the maximum activity concentrations of 1.03±0.08, 0.25±0.03 and 0.23±0.03 mBq m(-3), respectively. For determination of the origin of the releases the (134)Cs/(137)Cs ratio was calculated between 1.09 and 0.85. The authors find removal times for (137)Cs of 8.13 d, (134)Cs of 7.25 d and (131)I of 6.82 d.
Accident at Fukushima Daiichi Nuclear Power Plant (FDNPP) is one of the most serious accident in the world after Chernobyl accident. Following the continuing release of radionuclides in air after FDNPP, traces of fission products ( super(131)I, super(134)Cs and super(137)Cs) were recorded in the air filter and rain water samples collected from the CNAEM area at Istanbul on 4 April 2011. Airborne particle samples were collected daily in air filters and radio assayed with a high purity germanium detector. The fission products super(131)I, super(134)Cs and super(137)Cs were measured with the maximum activity concentrations of 1.03 + or - 0.08, 0.25 + or - 0.03 and 0.23 + or - 0.03 mBq m super(-3), respectively. For determination of the origin of the releases the super(134)Cs/ super(137)Cs ratio was calculated between 1.09 and 0.85. The authors find removal times for super(137)Cs of 8.13 d, super(134)Cs of 7.25 d and super(131)I of 6.82 d.
Author Yüksel, A
Güngör, N
Bağ, G
Orhan, N
Güngör, E
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Snippet Accident at Fukushima Daiichi Nuclear Power Plant (FDNPP) is one of the most serious accident in the world after Chernobyl accident. Following the continuing...
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SubjectTerms Air Filters
Air Pollutants, Radioactive - analysis
Cesium Radioisotopes - analysis
Fukushima Nuclear Accident
Iodine Radioisotopes - analysis
Japan
Nuclear Power Plants
Radiation Monitoring
Radioisotopes - analysis
Rain
Turkey
Water Pollutants, Radioactive - analysis
Title Fukushima radionuclides at air filter and rain water samples collected from Istanbul and their atmospheric removal time
URI https://www.ncbi.nlm.nih.gov/pubmed/23962699
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