Urban Drool Water Quality in Denver, Colorado: Pollutant Occurrences and Sources in Dry-Weather Flows
- 1. Department of Civil and Environmental Engineering, Colorado School of Mines, Golden, CO 80401, USA
- 2. National Science Foundation Engineering Research Center, ReNUWIt, Golden, CO 80401, USA
- 3. Intergovernmental Hydrological Programme, UNESCO, 75007 Paris, France
- 4. Hydrologic Science and Engineering Program, Colorado School of Mines, Golden, CO 80401, USA
Description
Dry-weather flows in urban channels and streams, often termed "urban drool", represent an important source of urban surface water impairment, particularly in semi-arid environments. Urban drool is a combination of year-round flows in urban channels, natural streams, and storm-sewer systems (runoff from irrigation return flow, car washes, street cleaning, leakage of groundwater or wastewater into streams or storm sewers, etc.). The purpose of this study was to better understand the extent and sources of urban drool pollution in Denver, Colorado by identifying relationships between urban catchment characteristics and pollutants. Water-quality samples were taken throughout Denver at urban drainage points that were representative of a variety of urban characteristics. Samples were analyzed for total suspended solids (TSS), coliforms, Escherichia Coli (E. coli), nutrients (nitrate, phosphorus, and potassium), dissolved and total organic carbon, and dissolved and total recoverable metals. Results from this study were as follows: (1) most contaminants (nitrate, phosphorus, arsenic, iron, manganese, nickel, selenium, and zinc) were concluded to be primarily loaded from shallow groundwater; (2) anthropogenic effects likely exacerbated groundwater pollutant concentrations and contributions to surface water; (3) nitrate, nickel, and manganese may be partially contributed by industrial inputs; (4) medical marijuana cultivation sites were identified as a potential source of nutrient and zinc pollution; (5) E. coli was a ubiquitous contaminant in all urban waterways; (6) erosion of contaminated urban soils, presumably from construction, was found to significantly increase concentrations of TSS, total phosphorus, and total metals. Increasing urbanization and predicted drier climates suggest that dry-weather flows will become more important to manage; the results from this study provide insight on dry-weather water quality management for the City and County of Denver.
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DOI
10.3390/w13233436
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References
Goonetilleke . Understanding the role of land use in urban stormwater quality ma...
Read more
Davis . Loading estimates of lead, copper, cadmium, and zinc in urban runoff fro...
Read more
Lee . Characterization of urban stormwater runoff, Water Res.. 2000; 34 1773.
Read more
002-955-261-582-403
Read more
Bale . Pollutant loading from low-density residential neighborhoods in Californi...
Read more
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