Nitrogen and Phosphorous Retention in Tropical Eutrophic Reservoirs with Water Level Fluctuations: A Case Study Using Mass Balances on a Long-Term Series
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area: Valle de Bravo
2.2. Samples and Data
2.3. Nutrient Analysis
2.4. Mass Balance Approach
2.5. Estimation of N and P Net Internal Fluxes
2.6. Data Statistical Analysis and Data Visualization
3. Results
3.1. Water Budget
3.2. N and P Mass Budgets
4. Discussion
4.1. Most of the External Load Translates into Net Sedimentation
4.2. Net N Atmospheric Flux Was Lower during High Water Level Fluctuations
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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L-WLF-1 | H-WLF | L-WLF-2 | Overall | ||
---|---|---|---|---|---|
TP | (2003–2005) | (2006–2013) | (2014–2018) | (2003–2018) | |
Mean mass reservoir (103 kg P) | 26.3 | 30.8 | 26.5 | 28.6 | |
Δ mass (103 kg P y−1) | 1.3 | 2.7 | 1.7 | 2.1 | |
Fluxes (103 kg P y−1) | % Input | ||||
Rivers | 60.7 | 56.4 | 34.0 | 50.2 | 73% |
Sewage | 23.2 | 15.9 | 7.5 | 14.7 | 21% |
Pump-back | 1.1 | 4.7 | 3.7 | 3.7 | 5% |
Total input | 85.0 | 77.1 | 45.2 | 68.6 | 100% |
Output | −21.0 | −20.5 | −17.4 | −19.6 | −29% |
Input−Output | 64.0 | 56.6 | 27.8 | 49.0 | 71% |
Net internal flux | −62.7 | −53.9 | −26.1 | −46.9 | −68% |
Net sedimentation | −62.7 | −53.9 | −26.1 | −46.9 | −68% |
TN | % Input | ||||
Mean mass reservoir (103 kg N) | 382.6 | 289.0 | 288.6 | 306.4 | |
Δ mass (103 kg N y−1) | 65.1 | −22.7 | −0.3 | 0.8 | |
Fluxes (103 kg N y−1) | |||||
Rivers | 354.6 | 293.3 | 281.0 | 300.9 | 80% |
Sewage | 51.7 | 58.5 | 46.0 | 53.3 | 14% |
Pump-back | 8.0 | 27.7 | 26.0 | 23.5 | 6% |
Total input | 414.3 | 379.5 | 353.0 | 377.7 | 100% |
Output | −286.4 | −194.0 | −194.7 | −211.6 | −56% |
Input−Output | 127.9 | 185.4 | 158.3 | 166.2 | 44% |
Net internal flux | −62.8 | −208.2 | −158.5 | −165.4 | −44% |
NOP: POPhipo | 36 | 26 | 33 | 29.9 | 8% |
Net sedimentation | −1049.9 | −662.4 | −497.4 | −683.5 | −181% |
Atmosphere−water fluxes | 987.2 | 454.2 | 338.8 | 518.1 | 137% |
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Barjau-Aguilar, M.; Merino-Ibarra, M.; Ramírez-Zierold, J.A.; Castillo-Sandoval, S.F.; Vilaclara-Fatjó, G.; Guzmán-Arias, A.P.; Macek, M.; Alcántara-Hernández, R.J.; Sánchez-Carrillo, S.; Valdespino-Castillo, P.M.; et al. Nitrogen and Phosphorous Retention in Tropical Eutrophic Reservoirs with Water Level Fluctuations: A Case Study Using Mass Balances on a Long-Term Series. Water 2022, 14, 2144. https://doi.org/10.3390/w14142144
Barjau-Aguilar M, Merino-Ibarra M, Ramírez-Zierold JA, Castillo-Sandoval SF, Vilaclara-Fatjó G, Guzmán-Arias AP, Macek M, Alcántara-Hernández RJ, Sánchez-Carrillo S, Valdespino-Castillo PM, et al. Nitrogen and Phosphorous Retention in Tropical Eutrophic Reservoirs with Water Level Fluctuations: A Case Study Using Mass Balances on a Long-Term Series. Water. 2022; 14(14):2144. https://doi.org/10.3390/w14142144
Chicago/Turabian StyleBarjau-Aguilar, Mariel, Martín Merino-Ibarra, Jorge A. Ramírez-Zierold, Sergio F. Castillo-Sandoval, Gloria Vilaclara-Fatjó, Andrea P. Guzmán-Arias, Miroslav Macek, Rocío J. Alcántara-Hernández, Salvador Sánchez-Carrillo, Patricia M. Valdespino-Castillo, and et al. 2022. "Nitrogen and Phosphorous Retention in Tropical Eutrophic Reservoirs with Water Level Fluctuations: A Case Study Using Mass Balances on a Long-Term Series" Water 14, no. 14: 2144. https://doi.org/10.3390/w14142144
APA StyleBarjau-Aguilar, M., Merino-Ibarra, M., Ramírez-Zierold, J. A., Castillo-Sandoval, S. F., Vilaclara-Fatjó, G., Guzmán-Arias, A. P., Macek, M., Alcántara-Hernández, R. J., Sánchez-Carrillo, S., Valdespino-Castillo, P. M., Sacristán-Ramírez, A., Quintanilla-Terminel, J. G., Monroy-Ríos, E., Díaz-Valenzuela, J., Lestayo-González, J. A., Gerardo-Nieto, O. A., & González-De Zayas, R. (2022). Nitrogen and Phosphorous Retention in Tropical Eutrophic Reservoirs with Water Level Fluctuations: A Case Study Using Mass Balances on a Long-Term Series. Water, 14(14), 2144. https://doi.org/10.3390/w14142144