U2.05 Gilliom 2017 ReNUWIt Annual Meeting Poster

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Abstract/Contents

Abstract
A simple, data-based method to estimate BMP efficiency in stormwater pollutant removal is needed to facilitate green infrastructure planning and more accurate water quality crediting. Commonly accepted BMP efficiency equations rely on parameterizing the Kadlec (2000) k-C* wetland equation. However, no systematic method exists for obtaining first-order removal rate constants needed to use the k- C* equation. This research analyzes the wealth of water quality data in the International Stormwater BMP Database to provide statistically supported screening-level parameterization of the k-C* equation. The resulting method should aid stormwater professionals in planning implementation of green infrastructure for stormwater management.

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Type of resource other
Date created May 2017

Creators/Contributors

Author Gilliom, Ryan
Author Bell, Colin
Author Hogue, Terri
Author Panos, Chelsea
Author Holley, Jeff
Author Eisenstein, William
Author Mollendor, Darren
Author McCray, John

Subjects

Subject Re-inventing the Nation’s Urban Water Infrastructure
Subject ReNUWIt
Subject U2.05
Subject Urban Systems Integration and Institutions
Subject Visioning
Subject assessment
Subject and implementation tools for regional and municipal water planning
Subject Colorado

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User agrees that, where applicable, content will not be used to identify or to otherwise infringe the privacy or confidentiality rights of individuals. Content distributed via the Stanford Digital Repository may be subject to additional license and use restrictions applied by the depositor.
License
This work is licensed under an Open Data Commons Attribution License v1.0.

Preferred citation

Preferred Citation
Gilliom, R. L., Bell, C. D., Hogue, T. S., Panos, C. L., Holley, J., Eisenstein, W. A., Mollendor, D., & McCray, J. E. (2017). U2.05 Gilliom 2017 ReNUWIt Annual Meeting Poster. Stanford Digital Repository. Available at: https://purl.stanford.edu/kx842cv0827

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Re-inventing the Nation's Urban Water Infrastructure (ReNUWIt)

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