On-line monitoring of water quality with a floating microbial fuel cell biosensor: field test results
- PMID: 33851335
- DOI: 10.1007/s10646-021-02409-2
On-line monitoring of water quality with a floating microbial fuel cell biosensor: field test results
Abstract
Real-time biomonitoring using microbial fuel cell (MFC) based biosensors have been demonstrated in several laboratory studies, but field validation is lacking. This study describes the long-term performance of an MFC based biosensor developed for real-time monitoring of changes in the water quality of a metal-contaminated stream. After a startup in the laboratory, biosensors were deployed in a stream close to an active mining complex in Sudbury, ON, Canada. Three sites within the stream were selected for biosensors installation based on their positions relative to the mining complex discharge points - upstream (lowest heavy metals concentration), midpoint and downstream. The biosensors installed at these sites were able to detect, in real-time, temporal changes in the water quality over a 2-month period. The biosensor response was confirmed by the results of a conventional toxicity assay (48-h acute Daphnia magna) as well as analytical measurements of heavy metals concentration in the stream. We conclude that the biosensor could detect changes in the overall water quality of the stream despite the uncontrolled situations typical for field operations as compared to laboratory conditions. To further explain the results observed during the field test, the rapid Microtox bioassay and D. magna assay were used to investigate the possible contributions of the two dominant mining metals (Nickel and Copper) to water toxicity in the test area.
Keywords: Aquatic toxicity; Biomonitoring; Biosensor; Microbial fuel cell; On-line; Toxicity.
References
-
- Adekunle A, Raghavan V, Tartakovsky B (2017) Carbon source and energy harvesting optimization in solid anolyte microbial fuel cells. J Power Sources 356:324–330. https://doi.org/10.1016/j.jpowsour.2017.01.062 - DOI
-
- Adekunle A, Raghavan V, Tartakovsky B (2019) On-line monitoring of heavy metals-related toxicity with a microbial fuel cell biosensor. Biosens Bioelectron 132:382–390. https://doi.org/10.1016/j.bios.2019.03.011 - DOI
-
- Adekunle A, Rickwood C, Tartakovsky B (2020) Online monitoring of heavy metal–related toxicity using flow-through and floating microbial fuel cell biosensors. Environ Monit Assess 192:52 - DOI
-
- Al-Hejuje M (2012) A synergistic effect of copper and nickel ions on the growth rates of Pseudomonas aeroginosa and Staphylococcus aureus isolates. Basrah J Sci(B) 30:78–93
-
- Babich H, Stotzky G (1982) Nickel toxicity to microbes: effect of pH and implications for acid rain. Environ Res 29:335–350 - DOI
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
Other Literature Sources
Miscellaneous
