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Records 1 to 15 of 15 records from [ORD-NERL] published between 06/21/2013 and 06/21/2018 from author Eric Weber

2018
Stevens, C., J. Patel, M. Koopmans, J. Olmstead, S. Hilal, N. Pope, E. Weber, AND K. Wolfe. Demonstration of a consensus approach for the calculation of physicochemical properties required for environmental fate assessments. CHEMOSPHERE. Elsevier Science Ltd, New York, NY, 194:94-106, (2018). https://doi.org/10.1016/j.chemosphere.2017.11.137
Yuan, C., C. Stevens, AND E. Weber. Predicting transformation products from the direct photolysis of organic compounds in aquatic systems. ACS Spring 2018 National Meeting, LA, New Orleans, March 18 - 22, 2018.
2017
Washington, J., T. Jenkins, Jack Jones, C. Stevens, AND E. Weber. Efforts to estimate pesticide degradation rates in subsurface vadose and aquifer materials. Environmental Modeling Public Meeting, DC, Washington, June 28, 2017.
Patel, J., C. Stevens, AND E. Weber. Estimation of hydrolysis rate constants for carbamates. ACS 2017 Annual Spring Meeting, San Francisco, CA, April 02 - 06, 2017.
Stevens, C., J. Patel, Jack Jones, AND E. Weber. Prediction of Hydrolysis Products of Organic Chemicals under Environmental pH Conditions. ENVIRONMENTAL SCIENCE & TECHNOLOGY. American Chemical Society, Washington, DC, 51(9):5008–5016, (2017). https://doi.org/10.1021/acs.est.6b05412
2016
Wolfe, K., N. Pope, R. Parmar, M. Galvin, C. Stevens, E. Weber, J. Flaishans, AND Tom Purucker. Chemical Transformation System: Cloud Based Cheminformatic Services to Support Integrated Environmental Modeling. 8th International Congress on Environmental Modelling and Software, Toulouse, FRANCE, July 10 - 14, 2016.
Wolfe, K., N. Pope, R. Parmar, M. Galvin, C. Stevens, E. Weber, J. Flaishans, AND Tom Purucker. Chemical Transformation System: Cloud Based Cheminformatic Services to Support Integrated Environmental Modeling (proceedings). In Proceedings, iEMSs 2016, Toulouse, FRANCE, July 10 - 14, 2016. International Environmental Modelling and Software Society, Manno, Switzerland, 19, (2016).
Stevens, C., M. Card, J. Patel, AND E. Weber. Cheminformatics Applications and Physicochemical Property Calculators: A Powerful Combination for the Encoding of Process Science. Gordon Research Conference: Water, NH, Holderness, June 26 - July 01, 2016.
Stevens, C., M. Card, J. Patel, AND E. Weber. Cheminformatics and Computational Chemistry: A Powerful Combination for the Encoding of Process Science. 252nd American Chemical Society National Meeting, Philadelphia, PA, August 21 - 25, 2016.
2015
Card, M., C. Stevens, AND E. Weber. Assessing the accuracy of software predictions of mammalian and microbial metabolites. 250th American Chemical Society National Meeting & Exposition, Boston, MA, August 16 - 20, 2015.
Washington, J., Tom Jenkins, AND E. Weber. Identification of Unsaturated and 2H Polyfluorocarboxylate Homologous Series and Their Detection in Environmental Samples and as Polymer Degradation Products. ENVIRONMENTAL SCIENCE & TECHNOLOGY. American Chemical Society, Washington, DC, 49(22):13256-13263, (2015).
2014
Whelan, G., E. Weber, C. Stevens, M. Pelton, K. Wolfe, R. Parmar, M. Galvin, S. Hilal, AND J. Babendreier. A Chemical Properties Simulator to Support Integrated Environmental Modeling. Presented at th International Congress on Environmental Modelling and Software (iEMSs), San Diego, CA, June 15 - 19, 2014.
Whelan, G., E. Weber, C. Stevens, M. Pelton, K. Wolfe, R. Parmar, M. Galvin, S. Hilal, AND J. Babendreier. A Chemical Properties Simulator to Support Integrated Environmental Modeling (proceeding). In Proceedings, 7th International Congress on Environmental Modelling and Software (iEMSs), San Diego, CA, June 15 - 19, 2014. International Environmental Modelling and Software Society, Manno, Switzerland, 1229-1235, (2014).
Weber, E. The Environmental Fate Simulator: A tool for predicting the degradation pathways of organic chemicals in groundwater aquifers. Presented at Organic Chemistry and Toxicity of Contaminants in the Ground, London, UK, February 13, 2014.
2013
Zhang, H. AND E. J. WEBER. Identifying Indicators of Reactivity for Chemical Reductants in Sediments. ENVIRONMENTAL SCIENCE & TECHNOLOGY. American Chemical Society, Washington, DC, 47(13):6959-6968, (2013).