Science & Technology
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EPA Recognizes Excellence and Innovation in South Carolina Water Infrastructure Projects
U.S. Environmental Protection Agency (EPA) Assistant Administrator for Water Jessica Kramer recently recognized 48 water infrastructure projects for excellence and innovation, including two in South Carolina.
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Workshop Report: Integrated Modeling to Characterize Climate Change Impacts and Support Decision Making
Workshop on integrated modeling to characterize climate change impacts and support decision information about proceedings including participation and report.
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Models for Pesticide Risk Assessment
EPA considers the toxicity of the pesticide as well as the amount of pesticide to which a person or the environments may be exposed in risk assessment. Scientists use mathematical models to predict pesticide concentrations in exposure assessment.
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MERPs View Qlik
MERPs VIEW Qlik Applications
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Modeling Applications and Tools
The U.S. EPA's Air Quality Modeling Group (AQMG) conducts modeling analyses to support policy and regulatory decisions in OAR and provides leadership and direction on the full range of air quality models and other mathematical simulation techniques used in
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Regional 4 Superfund X-Ray Fluorescence Field Operations Guide
The Field Operations Guide was developed by EPA's Region 4 Superfund Division’s staff for consideration by on-scene coordinators and remedial project managers.
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EPA Recognizes Excellence and Innovation in Alabama Water Infrastructure Project
EPA Recognizes Excellence and Innovation in Alabama Water Infrastructure Project
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EPA Recognizes Excellence and Innovation in Florida Water Infrastructure Project
EPA Recognizes Excellence and Innovation in Florida Water Infrastructure Project
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Presidential Green Chemistry Challenge: 2009 Greener Synthetic Pathways Award
Presidential Green Chemistry Challenge 2009 award winner, Eastman Chemical Co., makes esters for emollients and emulsifiers in cosmetics with immobilized enzymes, saving energy and avoiding strong acids and organic solvents.
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Presidential Green Chemistry Challenge: 2008 Small Business Award
Presidential Green Chemistry Challenge 2008 award winner, SiGNa Chemistry, stabilized highly reactive sodium and lithium by encapsulating them in porous, sand-like powder, maintaining their usefulness in synthetic reactions.
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Presidential Green Chemistry Challenge: 2008 Greener Synthetic Pathways Award
Presidential Green Chemistry Challenge 2008 award winner, Battelle, developed a biobased soy toner for laser printers and copiers. The technology saves energy and improves de-inking, allowing more paper fiber to be recycled.
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Presidential Green Chemistry Challenge: 2005 Designing Greener Chemicals Award
Presidential Green Chemistry Challenge 2005 award winner, Archer Daniels Midland, developed Archer RC, a nonvolatile, biobased, reactive coalescent that replaces volatile organic coalescents in architectural latex paints.
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Presidential Green Chemistry Challenge: 2004 Greener Reaction Conditions Award
Presidential Green Chemistry Challenge 2004 award winner, Buckman Laboratories International, developed Optimyze technology, which uses an esterase enzyme to remove sticky contaminants from paper products prior to recycling.
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Presidential Green Chemistry Challenge: 2003 Designing Greener Chemicals Award
Presidential Green Chemistry Challenge 2003 award winner, Shaw Industries, developed EcoWorx carpet tiles with a backing that uses less toxic materials. The carpet tile fiber and backing are readily separated for recycling.
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Presidential Green Chemistry Challenge: 2003 Greener Synthetic Pathways Award
Presidential Green Chemistry Challenge 2003 winner, Sud-Chemie, developed a synthesis for solid oxide catalysts used to make hydrogen and clean fuels. The process creates little wastewater, no nitrates, and no or little NOx.
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Presidential Green Chemistry Challenge: 2003 Academic Award
Presidential Green Chemistry Challenge 2003 award winner, Professor Richard A. Gross, developed a transesterification to make polyol-containing polyesters using lipase, replacing heavy metal catalysts and hazardous solvents.
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Presidential Green Chemistry Challenge: 2001 Designing Greener Chemicals Award
Presidential Green Chemistry Challenge 2001 award winner, PPG Industries, developed cationic electrodeposition coatings with yttrium that resist corrosion in automobiles. Yttrium is a safe replacement for lead in this use.
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Presidential Green Chemistry Challenge: 2001 Academic Award
Presidential Green Chemistry Challenge 2001 award winner, Professor Chao-Jun Li, uses metal catalysts in water to carry out chemical reactions that used to need both an oxygen-free atmosphere and hazardous organic solvents.
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Presidential Green Chemistry Challenge: 2002 Academic Award
Presidential Green Chemistry Challenge 2002 award winner, Professor Eric J. Beckman, developed fluorine-free detergents that help supercritical carbon dioxide (CO2) dissolve many chemicals, so it can be a solvent for industrial processes.
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Presidential Green Chemistry Challenge: 2000 Greener Reaction Conditions Award
Presidential Green Chemistry Challenge 2000 award winners, Bayer and Bayer AG, Covestro, developed high-performance, water-based, two-component polyurethane (PU) coatings that eliminate most or all VOCs and HAPs in other PU coatings.