HR: 0800h
AN: H41D-0329 [Abstracts]
TI: Chemical and Isotopical Patterns of Nitrate Contamination in the Southern Willamette Valley,
Oregon
AU: Vick, C F
EM: vickc@engr.orst.edu
AF: Oregon State University, Department of Bioengineering
116 Gilmore Hall, Corvallis, OR 97331
United States
AU: * Selker, J
EM: selkerj@engr.orst.edu
AF: Oregon State University, Department of Bioengineering
116 Gilmore Hall, Corvallis, OR 97331
United States
AB:
A persistent problem with elevated NO$_{3}$ concentrations in rural drinking wells in the southern Willamette Valley, Oregon
has been documented since the 1930's. We explore the origin of this contaminant. The objective of this study was to use
isotopes of NO$_{3}$ and other ionic chemical indicators to determine the sources of NO$_{3}$ in drinking water wells in the
southern Willamette Valley, OR. Many non-point sources were found to contribute to the elevated levels of NO$_{3}$ in
ground water, including high-density residential and high-intensity agricultural. 466 wells met the criteria to be included
in the study: (1) less than 75 feet in depth (2) installed after 1960 (3) domestic use and (4) be located in the southern
Willamette Valley. 120 wells were sampled during the summer of 2003. Geologic units, dominant land use and soil types were
determined for each well in an attempt to determine vulnerability of wells for NO$_{3}$ contamination. 20 drinking water
wells were selected to undergo isotopic and further chemical analyses. In order to determine the chemical and isotopic
fingerprints of the dominant sources of NO$_{3}$ contamination soil samples were augered from 10 septic drain fields and
water samples were collected below 10 agricultural fields. NO$_{3}$-N concentrations in the study area ranged from below
detection ($<$0.20 mg/L) to 13.70 mg/L, with a mean concentration of 4.81 mg/L. There was a statistically significant trend
(i.e. P $<$ 0.05) in NO$_{3}$-N with well depth, well age, pH and SO$_{4}$. Findings suggest that geologic setting is an
important factor in predicting vulnerability, with land use also being important but less so. Determination of septic and
agricultural sources of NO$_{3}$ contamination were inconclusive, though various chemical indicators were found to suggest
the origin of the NO$_{3}$.
DE: 1803 Anthropogenic effects
DE: 1829 Groundwater hydrology
DE: 1831 Groundwater quality
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting