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Journal Article

Contaminant characterization in wetland media surrounding a pulp mill industrial effluent treatment facility

Meaghan E. Quanz; Tony R. Walker; Ken Oakes; Rob Willis
Wetlands Ecology and Management · Vol. 29, Issue 2 · pp. 209-229 · 2021

Abstract

Three media (sediment, surface water, and dragonfly larvae tissue) were collected from wetlands surrounding an industrial effluent treatment facility prior to closure. Samples were analyzed for metals, total mercury, and polychlorinated dibenzo- p -dioxins/polychlorinated dibenzofurans (PCDD/PCDF) concentrations. Sediment and surface water concentrations were compared to provincial and federal guidelines, as well as reference wetland concentrations. Exceedances of arsenic, cadmium, chromium, copper, zinc, and PCDD/PCDF guidelines were found in deeper areas of wetlands historically contaminated from effluent, as well as wetlands exposed to current effluent inputs. Composite Libellulidae samples were collected from wetlands, and comparisons were made to reference tissue concentrations + 20%. Elevated As, Cu and Pb tissue concentrations were measured at two site wetlands, but total mercury (THg) and PCDD/PCDF reference tissue concentrations were higher than wetlands near the effluent treatment facility. Spearman rho tests identified a significant correlation between sediment and tissue Pb concentrations and between surface water and sediment THg concentrations. Results suggest relatively low ecological risk to macroinvertebrates within wetlands near the effluent treatment facility from current effluent inputs, and highlight strengths and weaknesses of federal and provincial guidelines.

Bibliographic Information

JournalWetlands Ecology and Management
PublisherSpringer
Publication Date2021-04-01
Publication Year2021
Volume29
Issue2
Pages209-229
Document TypeJournal Article
Print ISSN0923-4861
eISSN1572-9834
DOI10.1007/s11273-020-09779-0

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NARA Access Coverage1989-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11273
Publisher PageOpen Publisher Page
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