Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of Sibenik

The purpose of this study is to assess the response of theaquatic environment (sediment, sea water and mussels Mytilussp.) on uranium and radium activity and concentration followingthe decrease of phosphate discharges from a technologicallyimproved transhipment terminal, situated at the CroatianAdri...

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Main Authors: Neven Curkov, Vlado Cuculić, Delko Barišić, Marina Mlakar
Format: Article
Language:English
Published: University of Zagreb, Faculty of Transport and Traffic Sciences 2006-03-01
Series:Promet (Zagreb)
Subjects:
Online Access:http://www.fpz.unizg.hr/traffic/index.php/PROMTT/article/view/671
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spelling doaj-7a7ebbc49bcf4d4c92288e92d7bc04862020-11-25T00:27:19ZengUniversity of Zagreb, Faculty of Transport and Traffic SciencesPromet (Zagreb)0353-53201848-40692006-03-01182898310.7307/ptt.v18i2.671529Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of SibenikNeven CurkovVlado CuculićDelko BarišićMarina MlakarThe purpose of this study is to assess the response of theaquatic environment (sediment, sea water and mussels Mytilussp.) on uranium and radium activity and concentration followingthe decrease of phosphate discharges from a technologicallyimproved transhipment terminal, situated at the CroatianAdriaticcoast in the port of Sibenik. The highest 238U activities(485±16 Bq kg" 1 dry weight) and 226Ra activities(662±6 Bq kg" 1 dry weight) were found in the sediment samplecollected from the sampling site closest to the terminal.The maximum concentrations in the sediment samples areabove the natural ranges and are clearly indicative of technologicaI influence.Mussel samples from the port of Sibenik showed levels of238U activities in the range from 12.1 ±2.9 to 19.4±7.2 Bq kg"1dry weight and 226 Ra activities from 1. 9 ± 0. 5 to 5. 9 ± 1.1 Bqkg"1 dry weight, which is somewhat higher than in consumemussels.Only the sea water sample at the sampling site, taken justabove the bottom sediment, shows higher uranium concentration(3.1±0.2 f.Lg L 1) comparing to the samples taken in uppersea water layers (2.1 ±0.2 f.Lg L 1). Higher concentration is in therange of the concentration level of uranium in natural seawater.Since the transhipment terminal in the port of Sibenik wasmodernised in the eighties, the discharge of the phosphate oreinto the seawater was drastically reduced and, consequently,uranium concentration levels in the seawater decreased. Theenhanced uranium and radium activity levels are found only inthe sediment near operational docks, and in the mussels whichlive on this docks.http://www.fpz.unizg.hr/traffic/index.php/PROMTT/article/view/671uraniumradiumsedimentseawatermussels Mytilus sp.Krka river Estuaryphosphate
collection DOAJ
language English
format Article
sources DOAJ
author Neven Curkov
Vlado Cuculić
Delko Barišić
Marina Mlakar
spellingShingle Neven Curkov
Vlado Cuculić
Delko Barišić
Marina Mlakar
Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of Sibenik
Promet (Zagreb)
uranium
radium
sediment
seawater
mussels Mytilus sp.
Krka river Estuary
phosphate
author_facet Neven Curkov
Vlado Cuculić
Delko Barišić
Marina Mlakar
author_sort Neven Curkov
title Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of Sibenik
title_short Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of Sibenik
title_full Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of Sibenik
title_fullStr Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of Sibenik
title_full_unstemmed Spatial Distribution of Uranium and Radium in the Sedirnents, Musels (Mytilus sp.) and Sea Water in Port of Sibenik
title_sort spatial distribution of uranium and radium in the sedirnents, musels (mytilus sp.) and sea water in port of sibenik
publisher University of Zagreb, Faculty of Transport and Traffic Sciences
series Promet (Zagreb)
issn 0353-5320
1848-4069
publishDate 2006-03-01
description The purpose of this study is to assess the response of theaquatic environment (sediment, sea water and mussels Mytilussp.) on uranium and radium activity and concentration followingthe decrease of phosphate discharges from a technologicallyimproved transhipment terminal, situated at the CroatianAdriaticcoast in the port of Sibenik. The highest 238U activities(485±16 Bq kg" 1 dry weight) and 226Ra activities(662±6 Bq kg" 1 dry weight) were found in the sediment samplecollected from the sampling site closest to the terminal.The maximum concentrations in the sediment samples areabove the natural ranges and are clearly indicative of technologicaI influence.Mussel samples from the port of Sibenik showed levels of238U activities in the range from 12.1 ±2.9 to 19.4±7.2 Bq kg"1dry weight and 226 Ra activities from 1. 9 ± 0. 5 to 5. 9 ± 1.1 Bqkg"1 dry weight, which is somewhat higher than in consumemussels.Only the sea water sample at the sampling site, taken justabove the bottom sediment, shows higher uranium concentration(3.1±0.2 f.Lg L 1) comparing to the samples taken in uppersea water layers (2.1 ±0.2 f.Lg L 1). Higher concentration is in therange of the concentration level of uranium in natural seawater.Since the transhipment terminal in the port of Sibenik wasmodernised in the eighties, the discharge of the phosphate oreinto the seawater was drastically reduced and, consequently,uranium concentration levels in the seawater decreased. Theenhanced uranium and radium activity levels are found only inthe sediment near operational docks, and in the mussels whichlive on this docks.
topic uranium
radium
sediment
seawater
mussels Mytilus sp.
Krka river Estuary
phosphate
url http://www.fpz.unizg.hr/traffic/index.php/PROMTT/article/view/671
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AT vladocuculic spatialdistributionofuraniumandradiuminthesedirnentsmuselsmytilusspandseawaterinportofsibenik
AT delkobarisic spatialdistributionofuraniumandradiuminthesedirnentsmuselsmytilusspandseawaterinportofsibenik
AT marinamlakar spatialdistributionofuraniumandradiuminthesedirnentsmuselsmytilusspandseawaterinportofsibenik
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