Colorimetric Fiber Optic Based Probe for Real-Time Monitoring of Dissolved CO2 in Aquaculture Systems †
Abstract
:1. Introduction
2. Materials and Methods
2.1. Chemical Reagents
2.2. Sensing Chemistry and Sensing Layer Preparation.
3. Results and Discussion
3.1. Sensor Calibration
3.2. Sensor Validation
4. Conclusions
Funding
Acknowledgments
Conflicts of Interest
References
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Equation | Intercept (a) | Slope (b) | Residual Sum of Squares | Pearson’s | R-Square | Adj. R-Square |
---|---|---|---|---|---|---|
y = a + b.x | 0.0589 ± 0.0315 | 1.3974 ± 0.0311 | 0.0122 | 0.9980 | 0.9961 | 0.9956 |
KH (Degrees, German Units) | T (°C) | pH | [dCO2] (mg·L−1) |
---|---|---|---|
5–6 | 15 | 7.0–7.1 | 14.3–18.0 * |
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Mendes, J.; Coelho, L.; Rocha, A.; Pereira, C.; Kovacs, B.; Jorge, P.; Borges, M.T. Colorimetric Fiber Optic Based Probe for Real-Time Monitoring of Dissolved CO2 in Aquaculture Systems. Proceedings 2019, 15, 5. https://doi.org/10.3390/proceedings2019015005
Mendes J, Coelho L, Rocha A, Pereira C, Kovacs B, Jorge P, Borges MT. Colorimetric Fiber Optic Based Probe for Real-Time Monitoring of Dissolved CO2 in Aquaculture Systems. Proceedings. 2019; 15(1):5. https://doi.org/10.3390/proceedings2019015005
Chicago/Turabian StyleMendes, João, Luís Coelho, André Rocha, Carlos Pereira, Barna Kovacs, Pedro Jorge, and Maria Teresa Borges. 2019. "Colorimetric Fiber Optic Based Probe for Real-Time Monitoring of Dissolved CO2 in Aquaculture Systems" Proceedings 15, no. 1: 5. https://doi.org/10.3390/proceedings2019015005
APA StyleMendes, J., Coelho, L., Rocha, A., Pereira, C., Kovacs, B., Jorge, P., & Borges, M. T. (2019). Colorimetric Fiber Optic Based Probe for Real-Time Monitoring of Dissolved CO2 in Aquaculture Systems. Proceedings, 15(1), 5. https://doi.org/10.3390/proceedings2019015005