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Assessing the relationship among trace metal co-occurrence, speciation, and toxicity in industrial effluents
Wijdane Limouni1,2,3,4, Eric Rosa1,2,3,4, Patrice Couture4,5
1Groupe de Recherche sur l'Eau Souterraine, University of Québec in Abitibi-Témiscamingue, Amos, Canada.
Abstract:
This study focuses on evaluating the relationship between the co-occurrence and speciation of trace metallic elements with reference to the acute toxicity observed to Daphnia magna. Calculations were performed on data from the regular monitoring of an industrial effluent. The effluent generally met regulatory discharge criteria for metal(loid) concentrations (Fe > Zn > Al > Cu > Ni > As > Cd > Pb), but sporadic toxicity was observed, indicating that the interactions between trace metallic elements might affect toxicity. The methodological approaches include correlation analyses, one-way analyses of variance, principal component analyses, hierarchical cluster analyses, and geochemical calculations performed for the purpose of assessing trace metallic elements speciation. The results suggest that Cd and Cu are the primary contributors to toxicity while Fe could inhibit toxicity. Moreover, speciation calculations suggest that the bioavailable forms of Cd2+ and Cu2+, even at sublethal levels, could play a pivotal role in the observed toxicity. The analyses of changes in correlations between pairs of elements in nontoxic versus toxic effluents further suggest synergistic Cu-Cd and antagonistic Fe effects on toxicity. The approach developed in the present study has the potential for wider implementation. The identification of statistical links between the concentrations of different contaminants and toxicity could facilitate toxicant identification, particularly for effluents that meet regulatory standards in terms of contaminant concentrations.
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