Organic halogen compounds, EOX, in mussels from a clean lake and a pulp mill recipient
The extractable organic halogen (EOX) residue of duck mussels, Anodonta anatina, from the unpolluted Lake Höytiäinen, Finland, was found to be 690 μg/g of lipids. The residue was characterized by analyzing chlorinated phenols, hydrocarbons and fatty acids. These compound classes accounted only for 1...
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Published in | Chemosphere (Oxford) Vol. 29; no. 7; pp. 1515 - 1526 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
1994
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Abstract | The extractable organic halogen (EOX) residue of duck mussels,
Anodonta anatina, from the unpolluted Lake Höytiäinen, Finland, was found to be 690 μg/g of lipids. The residue was characterized by analyzing chlorinated phenols, hydrocarbons and fatty acids. These compound classes accounted only for 1.9% of the EOX.
Mussels from the same lake were incubated in a lake receiving pulp and paper mill effluents for 12 months to study the bioaccumulation of organochlorine compounds. The EOX of these mussels was 2045 μg/g lipids and only 1.1% of the residue was explained by the low molecular weight compounds. Thus, the majority of EOX remains undefined. However, potential differences in composition are suggested by the relative proportion of defined compounds and the differences among the measured compound classes. These halogen compounds may be of natural origin or reaction products of anthropogenic compounds with humic substances. The presence of such compounds should be taken into account when evaluating the accumulation of pulp mill effluent-related EOX in mussels.
No difference was found in the EOX between male and female mussles caged close to a pulp mill, but, on dry weight basis, mussels infected by a digenean parasite had higher EOX concentration than healthy females. |
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AbstractList | Mussels (Anodonta anatina and Pseudanodonta complanata) were collected from an uncontaminated lake (Hoytiainen lake) and some were incubated in a lake receiving pulp mill effluent (Saimaa lake) in Finland. The extractable organic halogen (EOX) content of both species was determined. There was no statistically significant difference in the EOX residues on a lipid normalized basis between the 2 species although the residue of A. anatina was 14 per cent higher than that of P. complanata. The EOX concentration in A. anatina in the unpolluted and polluted lakes were 690 and 2045 ug per g of lipids, respectively. The composition of the EOX in mussels remained largely undefined with chlorinated fatty acids contributing the greatest concentration of known compound classes. Atmospheric deposition combined with biogenic synthesis might be an additional source of EOX. No difference was found in EOX content between male and female mussels but mussels infected by a digenean parasite had higher EOX concentrations than healthy females. Mussels from an uncontaminated environment were exposed to water contaminated with pulp-mill effluents in order to assess the composition and accumulation of extractable organic halogen (EOX). The mussels were analyzed for fatty acids, chlorophenols, and chlorinated hydrocarbons. Two mussel species were used: Anodonta anatina and Pseudanodonta complanata. No significant differences in EOX residues were found between the two species on a lipid-normalized basis, although A. anatina exhibited 14% higher residues than P. complanata. The mussels caged in the area receiving pulp-mill effluents contained significantly higher EOX residues than the reference mussels, and there was a seasonal trend in lipid-normalized EOX concentrations. Parasite-infected mussels exhibited significantly higher EOX contents than healthy subjects. Based on analysis of the EOX residues, the majority of the compounds remained unidentified. The extractable organic halogen (EOX) residue of duck mussels, Anodonta anatina, from the unpolluted Lake Höytiäinen, Finland, was found to be 690 μg/g of lipids. The residue was characterized by analyzing chlorinated phenols, hydrocarbons and fatty acids. These compound classes accounted only for 1.9% of the EOX. Mussels from the same lake were incubated in a lake receiving pulp and paper mill effluents for 12 months to study the bioaccumulation of organochlorine compounds. The EOX of these mussels was 2045 μg/g lipids and only 1.1% of the residue was explained by the low molecular weight compounds. Thus, the majority of EOX remains undefined. However, potential differences in composition are suggested by the relative proportion of defined compounds and the differences among the measured compound classes. These halogen compounds may be of natural origin or reaction products of anthropogenic compounds with humic substances. The presence of such compounds should be taken into account when evaluating the accumulation of pulp mill effluent-related EOX in mussels. No difference was found in the EOX between male and female mussles caged close to a pulp mill, but, on dry weight basis, mussels infected by a digenean parasite had higher EOX concentration than healthy females. |
Author | Mäkelä, Petteri Pellinen, Jukka Taskinen, Jouni Ruokolainen, Minna |
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Keywords | pulp mill effluent Extractable organic halogen Anodonta anatina chlorinated hydrocarbons chlorinated fatty acids parasites chlorophenols Pseudanodonta complanata EOX |
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Snippet | The extractable organic halogen (EOX) residue of duck mussels,
Anodonta anatina, from the unpolluted Lake Höytiäinen, Finland, was found to be 690 μg/g of... Mussels (Anodonta anatina and Pseudanodonta complanata) were collected from an uncontaminated lake (Hoytiainen lake) and some were incubated in a lake... Mussels from an uncontaminated environment were exposed to water contaminated with pulp-mill effluents in order to assess the composition and accumulation of... |
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SubjectTerms | Anodonta anatina Bivalvia chlorinated fatty acids chlorinated hydrocarbons chlorophenols contamination EOX Extractable organic halogen Finland lakes mussels organic halogen compounds parasites Pseudanodonta complanata pulp and paper mill effluents pulp mill effluent uptake water pollution |
Title | Organic halogen compounds, EOX, in mussels from a clean lake and a pulp mill recipient |
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