Christopher Knightes
Christopher Knightes
Research Environmental Engineer, Office of Research and Development, US EPA
Verified email at
Cited by
Cited by
Long-term composition dynamics of PAH-containing NAPLs and implications for risk assessment
CA Peters, CD Knightes, DG Brown
Environmental Science & Technology 33 (24), 4499-4507, 1999
An overview of rainfall-runoff model types
J Sitterson, C Knightes, R Parmar, K Wolfe, B Avant, M Muche
Hydrologic connectivity between geographically isolated wetlands and surface water systems: A review of select modeling methods
HE Golden, CR Lane, DM Amatya, KW Bandilla, HR Kiperwas, ...
Environmental Modelling & Software 53, 190-206, 2014
Comparison of radar and gauge precipitation data in watershed models across varying spatial and temporal scales
K Price, ST Purucker, SR Kraemer, JE Babendreier, CD Knightes
Hydrological Processes 28 (9), 3505-3520, 2014
Sources of mercury exposure for US seafood consumers: implications for policy
NE Selin, EM Sunderland, CD Knightes, RP Mason
Environmental health perspectives 118 (1), 137-143, 2010
Statistical analysis of nonlinear parameter estimation for Monod biodegradation kinetics using bivariate data
CD Knightes, CA Peters
Biotechnology and bioengineering 69 (2), 160-170, 2000
Application of ecosystem‐scale fate and bioaccumulation models to predict fish mercury response times to changes in atmospheric deposition
CD Knightes, EM Sunderland, MC Barber, JM Johnston, RB Ambrose Jr
Environmental Toxicology and Chemistry: An International Journal 28 (4), 881-893, 2009
Risk assessment for polycyclic aromatic hydrocarbon NAPLs using component fractions
DG Brown, CD Knightes, CA Peters
Environmental science & technology 33 (24), 4357-4363, 1999
An integrated modeling framework for performing environmental assessments: Application to ecosystem services in the Albemarle-Pamlico basins (NC and VA, USA)
JM Johnston, DJ McGarvey, MC Barber, G Laniak, J Babendreier, ...
Ecological Modelling 222 (14), 2471-2484, 2011
Phase stability of multicomponent NAPLs containing PAHs
CA Peters, S Mukherji, CD Knightes, WJ Weber
Environmental science & technology 31 (9), 2540-2546, 1997
Aqueous phase biodegradation kinetics of 10 PAH compounds
CD Knightes, CA Peters
Environmental engineering science 20 (3), 207-218, 2003
Hydraulic fracturing for oil and gas: Impacts from the hydraulic fracturing water cycle on drinking water resources in the United States
S Burden, MM Fleming, J Frithsen, L Hills, K Klewicki, CD Knightes, ...
Washington, DC: US EPA, 2016
Urban stream burial increases watershed-scale nitrate export
JJ Beaulieu, HE Golden, CD Knightes, PM Mayer, SS Kaushal, ...
PLoS One 10 (7), e0132256, 2015
Multisubstrate biodegradation kinetics for binary and complex mixtures of polycyclic aromatic hydrocarbons
CD Knightes, CA Peters
Environmental Toxicology and Chemistry: An International Journal 25 (7 …, 2006
Environmental fate of multiwalled carbon nanotubes and graphene oxide across different aquatic ecosystems
B Avant, D Bouchard, X Chang, HS Hsieh, B Acrey, Y Han, J Spear, ...
NanoImpact 13, 1-12, 2019
Modeling framework for simulating concentrations of solute chemicals, nanoparticles, and solids in surface waters and sediments: WASP8 Advanced Toxicant Module
CD Knightes, RB Ambrose Jr, B Avant, Y Han, B Acrey, DC Bouchard, ...
Environmental modelling & software 111, 444-458, 2019
Optimizing fish sampling for fish–mercury bioaccumulation factors
BCS Eikenberry, K Riva-Murray, CD Knightes, CA Journey, LC Chasar, ...
Chemosphere 135, 467-473, 2015
Development and test application of a screening-level mercury fate model and tool for evaluating wildlife exposure risk for surface waters with mercury-contaminated sediments …
CD Knightes
Environmental Modelling & Software 23 (4), 495-510, 2008
Multicomponent NAPL solidification thermodynamics
CA Peters, KH Wammer, CD Knightes
Transport in porous media 38, 57-77, 2000
Simulating multiwalled carbon nanotube transport in surface water systems using the water quality analysis simulation program (WASP)
D Bouchard, C Knightes, X Chang, B Avant
Environmental science & technology 51 (19), 11174-11184, 2017
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