A metropolitan city such as Los Angeles (LA) is an ideal study site with a very high population density, and it houses at least 3 treatment plants where sewage is treated preliminarily and then progressing to tertiary treatment before discharging into the LA River. We will gain a better understanding of the water quality in the LA River and the nitrate load in the watershed system by examining the influence of waste water treatment plants (WWTPs). The goal of this study is to pinpoint the exact source of nitrate in the LA River using the isotope signatures. We have selected sampling locations both upstream and downstream of the WWTP. This serves to monitor nitrate levels, aiding in the assessment of treatment plant effectiveness, pinpointing nitrate pollution sources, and ensuring compliance with environmental regulations. The research explores the isotopic composition of NO3 in relation to atmospheric nitrogen and Vienna Standard Mean Ocean Water, shedding light on the contributions from various sources such as manure, sewage, soil organic nitrogen, and nitrogen fertilizers. Specifically, there is a change in the δ15NAir value between the dry and wet seasons. The isotope values in the Tillman WWTP sample changed between dry and wet seasons. Notably, the presence of nitrate originating from manure and sewage is consistent across seasons, emphasizing the significant impact of anthropogenic and agricultural activities on water quality. This investigation contributes to the broader understanding of nitrogen cycling in urban water bodies, particularly in the context of wastewater effluent discharge. The findings hold implications for water quality management and highlight the need for targeted interventions to mitigate the impact of nitrogen-containing compounds on aquatic ecosystems. Overall, the study provides a valuable framework for future research and environmental stewardship efforts aimed at preserving the health and sustainability of urban water resources. This data informs decisions regarding additional treatment or mitigation actions to safeguard downstream water quality and ecosystem health.
California Water Boards: Barstow Groundwater Nitrate Pollution (2012). https://www.waterboards.ca.gov/
Rezaie Boroon, M.H. and Coo, C.B.V.L. (2015) Water Quality Assessment of the Los Angeles River Watershed, California, USA in Wet and Dry Weather Periods. Journal of Geography, Environment and Earth Science International, 3, 1-17. https://doi.org/10.9734/JGEESI/2015/20717
Takagi, D.S. (2018) Water Quality of the Los Angeles River in the Wet and Dry Seasons. BS Degree Project. Honor Project Report.
Ackerman, D., Stein, E.D. and Schiff, K.C. (2005) Dry-Season Water Quality in the San Gabriel River Watershed. Bulletin, Southern California Academy of Sciences, 104, 125-145. https://doi.org/10.3160/0038-3872(2005)104[125:DWQITS]2.0.CO;2
Office of Water, U.S. Environmental Protection Agency (2012) U.S. Environmental Protection Agency (USEPA) Edition of the Drinking Water Standards and Health Advisories. EPA 822-S-12-001, Washington DC.
Davidson, E.A., David, M.B., Galloway, J.N., Goodale, C.L., Haeuber, R., Harrison, J.A., Howarth, R.W., Jaynes, D.B., Lowrance, R.R., Nolan, B.T., et al. (2012) Excess Nitrogen in the U.S. Environment: Trends, Risks, and Solutions. Issues in Ecology, Ecological Society of America, Washington DC. https://doi.org/10.1016/j.hal.2008.08.015
Howarth, R.W. (2008) Coastal Nitrogen Pollution: A Review of Sources and Trends Globally and Regionally. Harmful Algae, 8, 14-20.
Sallenave, R. (2017) Nitrate in Drinking Water. https://pubs.nmsu.edu/_m/M114.pdf
Dubrovsky, N.M., Burow, K.R., Clark, G.M., Gronberg, J.M., Hamilton P.A., Hitt, K.J., Mueller, D.K., Munn, M.D., Nolan, B.T. Puckett, L.J., Rupert, M.G., Short, T.M., Spahr, N.E., Sprague, L.A., and Wilber, W.G. (2010) The Quality of Our Nation’s Waters—Nutrients in the Nation’s Streams and Groundwater, 1992-2004. U.S. Geological Survey Circular 135. https://doi.org/10.3133/cir1350
Kraus, T.E.C., O’Donnell, K., Downing, B.D., Burau, J.R. and Bergamaschi, B.A. (2017) Using Paired in Situ High Frequency Nitrate Measurements to Better Understand Controls on Nitrate Concentrations and Estimate Nitrification Rates in a Wastewater-Impacted River. Water Resources Research, 53, 8423-8442. https://doi.org/10.1002/2017WR020670
Hahn, J. (2018) Efforts to Restore the Los Angeles River Collide with a Gentrifying City. Sierra Club. https://www.sierraclub.org/sierra/2018-4-july-august/feature/efforts-restore-los-angeles-river-California-collide-gentrifying-city
Water Quality
U.S. Census Bureau (2023) Los Angeles Population. https://www.usapopulation.org/los-angeles-population/
Los Angeles Regional Water Quality Control Board (2006) Trash Total Maximum Daily Loads for the Los Angeles River Watershed. Basin Plan Amendments.
Kendall, C., Young, M.B. and Silva, S.R. (2010) Applications of Stable Isotopes for Regional to National-Scale Water Quality and Environmental Monitoring Programs. In: West, J., Bowen, G., Dawson, T. and Tu, K., Eds., Isoscapes, Springer, Dordrecht, 89-111. https://doi.org/10.1007/978-90-481-3354-3_5
Archana, A., Thibodeau, B., Geeraert, N., Xu, M.N., Kao, S.J. and Baker, D. (2016) Nitrogen Sources and Cycling Revealed by Dual Isotopes of Nitrate in a Complex Urbanized Environment. Water Research, 142, 459-470. https://doi.org/10.1016/j.watres.2018.06.004
Fry, B. (2006) Stable Isotope Ecology. Springer, New York. https://doi.org/10.1007/0-387-33745-8
McClelland, J.W. and Valiela, I. (2003) Linking Nitrogen in Estuarine Producers to Land-Derived Sources. Limnology and Oceanography, 43, 577-585. https://doi.org/10.4319/lo.1998.43.4.0577
Koszelnik, P. (2014) Investigating the Source of Nitrate in Poland’s San River Water by Analyzing the Nitrogen and Oxygen Isotopic Ratio. Carpathian Journal of Earth and Environmental Sciences, 9, 85-96.
Sigman, D.M., Casciotti, K.L., Andreani, M., Barford, C., Galanter, M. and Bohlke, J.K. (2001) A Bacterial Method for the Nitrogen Isotopic Analysis of Nitrate in Seawater and Freshwater. Analytical Chemistry, 73, 4145-4153. https://doi.org/10.1021/ac010088e
Casciotti, K.L., Sigman, D.M., Galanter Hastings, M., Bohlke, J.K. and Hilkert, A. (2002) Measurement of the Oxygen Isotopic Composition of Nitrate in Seawater and Freshwater Using the Denitrifier Method. Analytical Chemistry, 74, 4905-4912. https://doi.org/10.1021/ac020113w
Caschetto, M., Paola Galassi, D.M., Petitta, M. and Aravena, R. (2017) Evaluation of the Sources of Nitrogen Compounds and Their Influence on the Biological Communities in the Hyporheic Zone of the Sagittario River, Italy: An Isotopic and Biological Approach. Italian Journal of Geosciences, 136, 145-156. https://doi.org/10.3301/IJG.2016.07
Ekberg, M. and Bedaso, Z.K. (2019) Dual Isotope Tracing of Nitrate Contaminant Source in Surface and Groundwater in the Great Miami River Watershed, Southwestern Ohio. https://www.researchgate.net/publication/344810679_Dual_Isotope_Tracing_of_Nitrate_Contaminant_Source_in_Surface_and_Groundwater_in_the_Great_Miami_River_Watershed_Southwestern_Ohio
U.S. Geological Survey (2019) pH and Water. https://www.usgs.gov/
Kaushal, S.S., Likens, G.E., Jaworski, N.A., Pace, M.L., Sides, A.M., Seekell, D., Wingate, R.L., et al. (2010) Rising Stream and River Temperatures in the United States. Frontiers in Ecology and the Environment, 8, 461-466. https://doi.org/10.1890/090037
Mongolo, J., Trusso, N., Dagit, R., Aguilar, A. and Drill, S.L. (2017) A Longitudinal Temperature Profile of the Los Ageless River from June through October 2016. Bulletin, Southern California Academy of Sciences, 116, 174-192. https://doi.org/10.3160/soca-116-03-174-192.1
Caruso, B.S. (2002) Temporal and Spatial Patterns of Extreme Low Flows and Effects on Stream Ecosystems in Otago, New Zealand. Journal of Hydrology, 257, 115-133. https://doi.org/10.1016/S0022-1694(01)00546-7
Kobayashi, D., Suzuki, K. and Nomura, M. (1990) Diurnal Fluctuation in Stream Flow and in Specific Electrical Conductance during Drought Periods. Journal of Hydrology, 115, 105-114. https://doi.org/10.1016/0022-1694(90)90200-H
Sprague, L.A. (2005) Drought Effects on Water Quality in the South Platte River Basin, Colo-rado. Journal of the American Water Resources Association, 41, 11-24. https://doi.org/10.1111/j.1752-1688.2005.tb03713.x
Boxall, B. (2017) Gov. Brown Declares California Drought Emergency Is over. Los Angeles Times. https://www.latimes.com/local/lanow/la-me-brown-drought-20170407-story.html
Becker, R. (2021) Newsom Declares Drought Emergency across California. Cal Matters. https://calmatters.org/environment/2021/10/california-drought-newsom-emergency/
Sheffield, A. and Kalansky, J. (2023) California-Nevada Drought Status Update. https://www.drought.gov/drought-status-updates/california-nevada-drought-status-update-2023-04-20
Drought.gov. (2023) Drought in the California-Nevada Region. https://www.drought.gov/states/california