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                value: Synergistic Treatment of Mixed 1,4-Dioxane and Chlorinated
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        content: Jeramy Jasmann is a research Chemist within the USGS Strategic Laboratory
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          effects that anthropogenic chemicals, like PFAS, have on aquatic organisms
          and drinking water sources using fish exposure experiments in mobile laboratories.
          Additionally, method capabilities exist for wildfire biomarkers to use as
          tracers to monitor for air and water quality changes, source appropriation
          of aerosol deposition events, and risks that come with the increasing frequency
          and intensity of wildfires (e.g. smoke aerosol transport and deposition
          of PAHs, nitrogen, or mercury).
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Revision as of 16:59, 23 May 2024

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   abstract: Dr. Jeramy R. Jasmann is an environmental geochemist whose research
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     along with real and perceived exposure effects. Jasmann earned his B.S. in Biochemistry
     from University of California Davis in 1997 and taught high school Chemistry,
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     stressor sources. A full suite of organic and inorganic water quality constituents
     including trace metals and rare earth elements are collected for interpretive
     science studies and for validating hydrologic models for predicting environmental
     concentrations of contaminants in wastewater-impacted watersheds. His research
     is interdisciplinary and holistic in its approach, integrating hydrologic, chemical,
     and biological analyses, field work, on-site mobile fish exposure laboratories,
     and web-accessible, map-based modeling applications to synthesize and interpret
     the complicated hydrologic and ecological interactions within complex aqueous
     mixtures. Current research is on developing GC-MS/MS methods for screening multiple
     chemical classes of high priority aqueous contaminants with toxicological or
     regulatory implications, including pesticides, pharmaceuticals, consumer product
     chemicals, endocrine disruptors, fuel-based hydrocarbons and combustion products,
     surfactants and ubiquitous industrial chemicals (like PFAS and 1,4-dioxane),
     along with other livestock or urban runoff chemicals of interest. For more information,
     please visit the Integrated Water Chemistry Assessment Laboratory website.
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