Issue 8, 2014

Risk assessment of butyltins based on a fugacity-based food web bioaccumulation model in the Jincheng Bay mariculture area: I. model development

Abstract

A fugacity-based model was developed to simulate the bioaccumulation of butyltins in the food web of the Jincheng Bay mariculture area. The predicted biological tissue residues of tributyltin (TBT), dibutyltin (DBT), and monobutyltin (MBT) were 0.04–17.09, 0.14–53.54, and 0.27–108.77 ng-Sn g−1, respectively, and the predicted values in six mollusca agreed well with the measured ones. The lipid-normalized concentrations did not significantly increase across trophic levels, indicating no biomagnification across aquatic food webs. These results were highly consistent with those observed both in the laboratory and field, which had been reported in numerous references. The explanation, from calculating their flux equilibrium in the food web, was that butyltins were primarily taken in via respiration from the water column by marine organisms. The sensitivities of the model parameters were analyzed, revealing that the hydrophobicity of butyltins played the dominant role in their bioaccumulation phenomena. The verified model predictions of the biotic tissue concentrations of the butyltins could be readily applied to perform internal ecological risk and human health risk assessments in this area.

Graphical abstract: Risk assessment of butyltins based on a fugacity-based food web bioaccumulation model in the Jincheng Bay mariculture area: I. model development

Supplementary files

Article information

Article type
Paper
Submitted
14 Apr 2014
Accepted
22 May 2014
First published
23 May 2014

Environ. Sci.: Processes Impacts, 2014,16, 1994-2001

Author version available

Risk assessment of butyltins based on a fugacity-based food web bioaccumulation model in the Jincheng Bay mariculture area: I. model development

Y. Hu, X. Gong, Y. Xu, X. Song, H. Liu, X. Deng and S. Ru, Environ. Sci.: Processes Impacts, 2014, 16, 1994 DOI: 10.1039/C4EM00219A

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