Nitrates leach into the groundwater from septic systems, and are removed by domestic well pumping. (Photo credit: USGS)
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Residents of Carson Valley rely on groundwater from an alluvial aquifer for domestic use and agricultural irrigation. Since the 1970s, there has been an increase in population in several parts of the valley that rely on domestic wells for drinking water and septic systems for treatment of household waste. As a result, the density of septic systems in the developed areas is greater than one septic system per three acres, and the majority of the domestic wells are less than 100 feet in depth.
The study found that the continued use of septic systems for treatment of domestic waste results in ongoing loading of nitrates to the aquifer. Increasing over time, this will result in the extent of the nitrate plume in the aquifer with concentrations exceeding the U.S. Environmental Protection Agency (EPA) maximum contaminant level of 10 milligrams per liter.
The concentration of nitrates in the aquifer below Carson Valley is affected by the input from septic systems and the withdrawal by domestic well-water pumping. Results from computer models indicate that nitrate concentrations may decline if septic tank systems are removed but can remain in the aquifer more than 30 years if not pumped out. Nitrate concentrations may decline more rapidly with the removal of septic tanks and continuation of domestic pumping, but this comes with greater risks to human health due to the ongoing consumptive use of groundwater in areas with elevated nitrate concentrations.
Modeled nitrate concentrations decline at a slower rate when both septic tank systems are removed and domestic wells are abandoned, reducing the risk to human health but prolonging the persistence of nitrate in the aquifer. Ongoing monitoring of the nitrate concentrations in groundwater and surface water, including the discharge of nitrates to the Carson River from groundwater, is needed and would help scientists to understand the current distribution and future occurrence and movement of nitrates and other effluent-related compounds in the high concentration areas.
See also: "Carson river water users battle arsenic."
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