FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATION

Samples of vegetation (vascular plants) were collected at 14 grasslands on Kunashir, Iturup, Urup and Paramushir Islands in August–September 2012. All surveyed grasslands were virgin lands with respect to Fukushima fallout. Four plots were used as pastures for cattle in 2012. About 1 kg of green veg...

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Main Authors: V. P. Ramzaev, A. N. Barkovsky, A. V. Gromov, S. A. Ivanov, M. V. Kaduka
Format: Article
Language:English
Published: Saint-Petersburg Research Institute of Radiation Hygiene after Professor P.V. Ramzaev 2018-07-01
Series:Радиационная гигиена
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Online Access:https://www.radhyg.ru/jour/article/view/550
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author V. P. Ramzaev
A. N. Barkovsky
A. V. Gromov
S. A. Ivanov
M. V. Kaduka
author_facet V. P. Ramzaev
A. N. Barkovsky
A. V. Gromov
S. A. Ivanov
M. V. Kaduka
author_sort V. P. Ramzaev
collection DOAJ
description Samples of vegetation (vascular plants) were collected at 14 grasslands on Kunashir, Iturup, Urup and Paramushir Islands in August–September 2012. All surveyed grasslands were virgin lands with respect to Fukushima fallout. Four plots were used as pastures for cattle in 2012. About 1 kg of green vegetation (mixed grass-forb crop) was taken from each of 13 plots. Seven samples of wormwood (Artemisia sp.) and three samples of Kuril dwarf bamboo (Sasa sp.) of the same mass were collected for comparison. A density of the above ground biomass was estimated at one of the plots. Activities of 134Cs and 137Cs radionuclides were determined by direct γ-ray spectrometry method using HP-germanium detectors. Inventories of 134Cs and 137Cs in the top 20 cm layer of soil were estimated by the authors earlier for each of these 14 plots based of the soil samples analysis. Caesium-134, a marker of Fukushima fallout, was determined in 18 of 24 vegetation samples. Caesium-137 activity was quantified in all of 24 samples. The activity concentration of the radionuclides in plants (wet weight) ranged from <0.05 Bq kg−1 to 1.6 Bq kg-1 for 134Cs and from 0.06 Bq kg−1 to 5.8 Bq kg-1 for 137Cs. About 2/5 (median = 41%, n = 18) of the total activity of 137Cs in plants was associated with the Fukushima accident. The soil-to-plant aggregated transfer coefficient (Tag) values in mixed grass-forb crop ranged from <0.2 × 10–3 m2 kg-1 to 11 × 10–3 m2 kg-1 for 134Cs and from 0.08 × 10–3 m2 kg-1 to 3.3 × 10–3 m2 kg-1 for 137Cs. The Tag values for 134Cs were statistically significantly higher compared to the Tag values for 137Cs. The median Tag for 134Cs in mixed grass-forb crop decreased in the 2011–2012 period by a factor of about two: from 12 × 10–3 m2 kg-1 to 6.6 × 10–3 m2 kg-1. The ecological half-time, Teco, of 134Cs in the plants was approximately one year. In 2011–2012, the median Tag for pre-Fukushima 137Cs in mixed grass-forb crop was estimated as 0.12 × 10–3 m2 kg-1. This value is lower by a factor of 100 and 50 compared to the median values of Tag that were deduced for Fukushima-derived radiocaesium in 2011 and 2012, respectively. The radiocaesium Tag values for Sasa sp. and Artemisia sp. agreed with those for mixed grass-forb crop. At grasslands with the aboveground biomass density of 1 kg m–2 and the Tag of 6 × 10–3 m2 kg-1 for 134Cs, the contribution of the vegetation contamination to total inventory of the radionuclide did not exceed 1%. For 137Cs, this contribution was less than 0.1%.
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spelling doaj-art-e74c3e4e6d1346d1bc43fc673a43e9652025-08-20T03:23:26ZengSaint-Petersburg Research Institute of Radiation Hygiene after Professor P.V. RamzaevРадиационная гигиена1998-426X2018-07-0111271910.21514/1998-426X-2018-11-2-7-19530FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATIONV. P. Ramzaev0A. N. Barkovsky1A. V. Gromov2S. A. Ivanov3M. V. Kaduka4Saint-Petersburg Research Institute of Radiation Hygiene after Professor P.V. Ramzaev, Federal Service for Surveillance on Consumer Rights Protection and Human Well-BeingSaint-Petersburg Research Institute of Radiation Hygiene after Professor P.V. Ramzaev, Federal Service for Surveillance on Consumer Rights Protection and Human Well-BeingSaint-Petersburg Research Institute of Radiation Hygiene after Professor P.V. Ramzaev, Federal Service for Surveillance on Consumer Rights Protection and Human Well-BeingSaint-Petersburg Research Institute of Radiation Hygiene after Professor P.V. Ramzaev, Federal Service for Surveillance on Consumer Rights Protection and Human Well-BeingSaint-Petersburg Research Institute of Radiation Hygiene after Professor P.V. Ramzaev, Federal Service for Surveillance on Consumer Rights Protection and Human Well-BeingSamples of vegetation (vascular plants) were collected at 14 grasslands on Kunashir, Iturup, Urup and Paramushir Islands in August–September 2012. All surveyed grasslands were virgin lands with respect to Fukushima fallout. Four plots were used as pastures for cattle in 2012. About 1 kg of green vegetation (mixed grass-forb crop) was taken from each of 13 plots. Seven samples of wormwood (Artemisia sp.) and three samples of Kuril dwarf bamboo (Sasa sp.) of the same mass were collected for comparison. A density of the above ground biomass was estimated at one of the plots. Activities of 134Cs and 137Cs radionuclides were determined by direct γ-ray spectrometry method using HP-germanium detectors. Inventories of 134Cs and 137Cs in the top 20 cm layer of soil were estimated by the authors earlier for each of these 14 plots based of the soil samples analysis. Caesium-134, a marker of Fukushima fallout, was determined in 18 of 24 vegetation samples. Caesium-137 activity was quantified in all of 24 samples. The activity concentration of the radionuclides in plants (wet weight) ranged from <0.05 Bq kg−1 to 1.6 Bq kg-1 for 134Cs and from 0.06 Bq kg−1 to 5.8 Bq kg-1 for 137Cs. About 2/5 (median = 41%, n = 18) of the total activity of 137Cs in plants was associated with the Fukushima accident. The soil-to-plant aggregated transfer coefficient (Tag) values in mixed grass-forb crop ranged from <0.2 × 10–3 m2 kg-1 to 11 × 10–3 m2 kg-1 for 134Cs and from 0.08 × 10–3 m2 kg-1 to 3.3 × 10–3 m2 kg-1 for 137Cs. The Tag values for 134Cs were statistically significantly higher compared to the Tag values for 137Cs. The median Tag for 134Cs in mixed grass-forb crop decreased in the 2011–2012 period by a factor of about two: from 12 × 10–3 m2 kg-1 to 6.6 × 10–3 m2 kg-1. The ecological half-time, Teco, of 134Cs in the plants was approximately one year. In 2011–2012, the median Tag for pre-Fukushima 137Cs in mixed grass-forb crop was estimated as 0.12 × 10–3 m2 kg-1. This value is lower by a factor of 100 and 50 compared to the median values of Tag that were deduced for Fukushima-derived radiocaesium in 2011 and 2012, respectively. The radiocaesium Tag values for Sasa sp. and Artemisia sp. agreed with those for mixed grass-forb crop. At grasslands with the aboveground biomass density of 1 kg m–2 and the Tag of 6 × 10–3 m2 kg-1 for 134Cs, the contribution of the vegetation contamination to total inventory of the radionuclide did not exceed 1%. For 137Cs, this contribution was less than 0.1%.https://www.radhyg.ru/jour/article/view/550fukushima accidentglobal falloutsakhalin regionkuril islandsgrasslandvegetation134cs137csaggregated transfer coefficienttag
spellingShingle V. P. Ramzaev
A. N. Barkovsky
A. V. Gromov
S. A. Ivanov
M. V. Kaduka
FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATION
Радиационная гигиена
fukushima accident
global fallout
sakhalin region
kuril islands
grassland
vegetation
134cs
137cs
aggregated transfer coefficient
tag
title FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATION
title_full FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATION
title_fullStr FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATION
title_full_unstemmed FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATION
title_short FUKUSHIMA FALLOUT IN SAKHALIN REGION, RUSSIA, PART 2: 137Cs AND 134Cs IN GRASSLAND VEGETATION
title_sort fukushima fallout in sakhalin region russia part 2 137cs and 134cs in grassland vegetation
topic fukushima accident
global fallout
sakhalin region
kuril islands
grassland
vegetation
134cs
137cs
aggregated transfer coefficient
tag
url https://www.radhyg.ru/jour/article/view/550
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