Wetland water quality in the Athabasca Oil Sands Region and its relationship to aquatic invertebrate communities: pilot phase monitoring results

Author:

Connor Stephanie J.,Hanisch Justin R.,Cobbaert Danielle

Abstract

AbstractWetlands in the Oil Sands Region of Alberta are vulnerable to direct and indirect effects of human development including land disturbance, hydrologic alteration, and addition of contaminants. Nineteen wetlands in the Athabasca Oil Sands Region were monitored over a five-year period to evaluate differences in water quality and benthic invertebrate composition between sites near to and further afield from surface mining operations. Concentrations of dissolved sulphate, dissolved iron, total dibenzothiophenes and specific conductance were significantly higher in wetlands near to surface mining operations. In addition, beta diversity of wetland invertebrates was higher in wetlands further afield of the industrial centre. Drivers of benthic assemblage differences among sites include specific conductance and pH. Conductance was positively correlated with Caenidae (Ephemeroptera) abundance and pH was negatively correlated with abundance of Naididae (Annelida).

Funder

Oil Sands Monitoring Program

Publisher

Springer Science and Business Media LLC

Reference89 articles.

1. Alberta Environment and Sustainable Resource Development (ESRD) (2015) Alberta wetland classification system. Water Policy Branch, Policy and Planning Division. Edmonton, AB

2. Alexander AC, Chambers PA (2016) Assessment of seven Canadian rivers in relation to stages in oil sands industrial development, 1972–2010. Environ Rev 24(4):484–494

3. Anderson MJ (2006) Distance-based tests for homogeneity of multivariate dispersions. Biometrics 62:245–253

4. Anderson MJ (2017) Permutational multivariate analysis of variance (PERMANOVA). Wiley StatsRef: Statistics Reference Online: 1–15

5. Armellin A, Baird D, Curry C, Glozier NE, Martens A, McIvor E (2019) CABIN wetland macroinvertebrate protocol. Environment and climate change Canada. Environment and Climate Change Canada, Gatineau, Quebec, p 63

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