Unified Core Technology Team
Unified Core Technology Team
Descriptions of specialized laboratories and capabilities across the United States supported by the Environmental Health Program.
Chemistry and Microbiology are at the Forefront of Environmental Health Research
Chemistry and Microbiology are at the Forefront of Environmental Health Research
- Algal Toxins and Environmental Research Laboratory
- Environmental Chemistry Core Technology Team
- Michigan Bacteriological Research Core Technology Team
- Microbial Biogeochemistry Core Technology Team
- Organic Chemistry Research Core Technology Team
- Organic Geochemistry Research Core Technology Team
- Per- and Polyfluoroalkyl Substances (PFAS) Core Technology Team
Understanding and Tracking of Contaminant, Occurrence, Fate and Movement in Water Resources
Understanding and Tracking of Contaminant, Occurrence, Fate and Movement in Water Resources
Exposure and Effects of Environmental Pollutants on Aquatic and Terrestrial Ecosystems
Exposure and Effects of Environmental Pollutants on Aquatic and Terrestrial Ecosystems
Filter Total Items: 36
Per- and Polyfluoroalkyl Substance (PFAS) Core Technology Team
The Per- and Polyfluoroalkyl Substance (PFAS) Core Technology Team (CTT) within the Environmental Health Program partners with external and internal stakeholders to develop and apply analytical methods for measuring PFAS in complex matrices, addressing environmental health issues related to transport, distribution, fate, effects, and exposure.
Preliminary Research Sheds Light on Proper Analysis and Sample Handling for the Tire-Derived Contaminants 6PPD and 6PPD-quinone
Tire and road wear particles have been shown to cause acute effects to sensitive aquatic animals and degrade their habitats. U.S. Geological Survey (USGS) scientists developed methods to accurately identify aquatic compounds, such as 6PPD and 6PPD-quinone, that can cause acute mortality events in coho salmon (Oncorhynchus kisutch).
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Ecosystems Mission Area, Contaminant Biology, Environmental Health Program, Toxic Substances Hydrology, Central Midwest Water Science Center, Eastern Ecological Science Center, New Jersey Water Science Center, Oklahoma-Texas Water Science Center, South Atlantic Water Science Center (SAWSC), Washington Water Science Center, Western Fisheries Research Center
Statewide Assessment of Iowa Streams Links Landscape Characteristics to Antibiotic Resistance Signatures
U.S. Geological Survey (USGS) scientists conducted the first statewide assessment of antibiotics, antibiotic resistant bacteria (ARB), and antibiotic resistant genes (ARGs) in streams (water column and bed sediment samples) across Iowa. Results indicated that ARB and ARGs were prevalent, and a combination of watershed characteristics (such as land use, livestock population, and human population)...
U.S. Geological Survey Science Opportunities Related to the Nationally Relevant Study of Harmful Algal Blooms and Algal Toxins
In 2024, the U.S. Geological Survey (USGS) released a strategic vision document identifying harmful algal bloom (HAB) and algal toxin science gaps, while prioritizing research relevant to the mission, expertise, and capabilities of the USGS. The intention is for USGS and stakeholders to use this document as a starting point for planning, prioritizing, and designing future HAB and algal toxin...
USGS Science Opportunities Related to the Nationally Relevant Study of Microplastics
USGS recently (2024) released a strategic vision document that identifies science gaps and prioritizes research relevant to the mission, expertise, and capabilities of the USGS. The intention is for USGS and stakeholders to use this as a starting part for planning, prioritizing, and designing microplastic research projects.
U.S. Geological Survey Develops Per- and Polyfluoroalkyl Substances (PFAS) Sampling Guide
USGS scientist’s published a Per- and Polyfluoroalkyl Substances (PFAS) sampling guide for personnel involved with Natural Resource Damage Assessment and Restoration (NRDAR) activities. This guide introduces individuals involved in NRDAR efforts and other investigators to key concepts and considerations when sampling different environmental media for PFAS.
Human-Related Compounds in Water Sources in the Grand Canyon Help Identify Water Flow Pathways and Highlight Potential Water Quality Changes
U.S. Geological Survey (USGS) scientists investigated the movement of human-generated chemicals, such as pharmaceuticals and per- and polyfluorinated substances (PFAS), in groundwater along the South Rim of the Grand Canyon. This research led to a better understanding of the movement of wastewater into groundwater, of complex underground flow patterns, and of chemicals present in springs near...
Biologically Active Chemical Research Core Technology Team
About the Research. The Biologically Active Chemicals Research Core Technology Team (CTT) as part of the Environmental Health Program conducts field and laboratory research on the occurrence, fate, and effects of complex mixtures of biologically active organic and inorganic chemicals in aquatic environments.
Michigan Bacteriological Research Core Technology Team
About the Research The Michigan Bacteriological Research Laboratory (MI-BaRL) Core Technology Team (CTT) as part of the Environmental Health Program uses a wide array of traditional and modern molecular approaches to evaluate microbial pathogens and antimicrobial resistance pathways in the environment. The scientists use these approaches to advance the understanding of how environmental...
Behavioral Toxicology Core Technology Team
About the Research. The Environmental Health Program supports scientists in the Behavioral Toxicology Core Technology Team (CTT) at the Columbia Environmental Research Center. The scientists identify how contaminants alter the behavior of organisms and what implication those changes may have on individuals, populations, and communities.
Organic Chemistry Research Core Technology Team
About the Research The Organic Chemistry Research Laboratory Core Technology Team (CTT) as part of the Environmental Health Program focuses on the identification and quantitation of trace level organic contaminants (with a special focus on pesticides) in a wide array of environmental media (water, sediment/soil, plants, biota, etc.).
Microbial Biogeochemistry Core Technology Team
About the Research The Microbial Biogeochemistry Laboratory Core Technology Team (CTT) as part of the Environmental Health Program focuses on environmental questions in aquatic systems (sediment and water) involving the linkages between major biogeochemical cycles (those involving carbon, sulfur, iron and nitrogen) and those associated with contaminants of concern.