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Publication Additional Information Download
Publication Type
Journal Article
Authorship
Peixoto Mendes, Maíra; Cupe-Flores, Beatriz; Panigrahi, Banamali; Liber, Karsten
Title
Application of autonomous sensor technology to estimate selenium exposure and a site-specific selenium threshold in a Canadian boreal lake
Year
2023
Publication Outlet
John Wiley & Sons, Ltd, Integrated Environmental Assessment and Management, Vol. 19, Iss. 2, 395-411
DOI
https://doi.org/10.1002/ieam.4644
ISSN
1551-3777
Citation
Peixoto Mendes, Maíra; Cupe-Flores, Beatriz; Panigrahi, Banamali; Liber, Karsten (2023) Application of autonomous sensor technology to estimate selenium exposure and a site-specific selenium threshold in a Canadian boreal lake, John Wiley & Sons, Ltd, Integrated Environmental Assessment and Management, Vol. 19, Iss. 2, 395-411, https://doi.org/10.1002/ieam.4644
Abstract
There is an increasing trend in the use of real-time sensor technology to remotely monitor aquatic ecosystems. Commercially available probes, however, are currently not able to measure aqueous selenium (Se) concentrations. Because of the well-described bioaccumulation potential and associated toxicity of Se in oviparous vertebrates, it is crucial to monitor Se concentrations at sites receiving continuous effluent Se input. This study aimed to estimate Se concentrations in a boreal lake (McClean Lake) downstream from a Saskatchewan uranium mill using real-time electrical conductivity (EC) data measured by autonomous sensors. Additionally, this study aimed to derive a site-specific total aqueous Se (TSe) threshold based on Se concentrations in periphyton and benthic macroinvertebrates sampled from the same lake. To characterize effluent distribution within the lake, eight Smart Water (Libelium) sensor units were programmed to report EC and temperature for five and seven consecutive weeks in 2018 and 2019, respectively. In parallel, periphyton and benthic macroinvertebrates were sampled with Hester-Dendy's artificial substrate samplers (n=4) at the same sites and subsequently analyzed for Se concentrations. Electrical conductivity was measured with a handheld field meter for sensor data validation and adjusted to the median lake water temperature (13°C) registered for the deployment periods. Results demonstrated good accuracy of sensor readings relative to handheld field meter readings and the successful use of real-time EC in estimating TSe exposure (r = 0.87; r2 = 0.84). Linear regression equations derived for Se in detritivores versus Se in periphyton and Se in periphyton versus sensor-estimated TSe were used to estimate a site-specific TSe threshold of 0.7 µg/L (±0.2). Moreover, mean Se concentrations in periphyton (16.7 ± 4.4 µg/g dry weight [d.w.]) and benthic detritivores (6.0 ± 0.4 µg/g d.w.) from one of the exposure sites helped identify an area with potential for high Se bioaccumulation and toxicity in aquatic organisms in McClean Lake.
Program Affiliations
GWF: Global Water Futures
Project Affiliations
GWF-SSSWQM: Sensors and Sensing Systems for Water Quality Monitoring
Publication Stage
Published
Additional Information
Keywords: Autonomous sensors; Boreal lake; Electrical conductivity; Selenium; Uranium mill
Download Links
https://doi.org/10.1002/ieam.4644
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