Item talk:Q159864
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orcid:
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Jasmann source-orcid: host: orcid.org path: 0000-0002-5251-6987 uri: https://orcid.org/0000-0002-5251-6987 start-date: day: value: '20' month: value: '01' year: value: '1999' url: null visibility: public - external-ids: external-id: [] last-modified-date: value: 1501713958900 summaries: - education-summary: created-date: value: 1501713958900 department-name: Biochemistry display-index: '0' end-date: day: value: '10' month: value: '06' year: value: '1997' external-ids: null last-modified-date: value: 1501713958900 organization: address: city: Davis country: US region: CA disambiguated-organization: disambiguated-organization-identifier: '8789' disambiguation-source: RINGGOLD name: University of California Davis path: /0000-0002-5251-6987/education/4393674 put-code: 4393674 role-title: B.S. source: assertion-origin-client-id: null assertion-origin-name: null assertion-origin-orcid: null source-client-id: null source-name: value: Jeramy R. 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country: value: US created-date: value: 1501714369502 display-index: 1 last-modified-date: value: 1501714369502 path: /0000-0002-5251-6987/address/755921 put-code: 755921 source: assertion-origin-client-id: null assertion-origin-name: null assertion-origin-orcid: null source-client-id: null source-name: value: Jeramy R. Jasmann source-orcid: host: orcid.org path: 0000-0002-5251-6987 uri: https://orcid.org/0000-0002-5251-6987 visibility: public last-modified-date: value: 1501714369502 path: /0000-0002-5251-6987/address biography: content: Jeramy Jasmann is a research Chemist within the USGS Strategic Laboratory Science Branch focused on water quality and suitability investigations for watersheds across the United States. Jeramy earned his Ph.D. in Analytical Environmental Chemistry from Colorado State University, Fort Collins with an emphasis on novel electrolytic treatment technologies and transformation mechanisms of recalcitrant organic pollutants, primarily 1,4-dioxane, chlorinated solvents, and lamotrigine. He specializes in GC/MS/MS analysis of bioactive organic contaminants and water quality tracer molecules in wastewater-impacted or disaster-impacted surface water and groundwater. An interactive wastewater mapper tool was also recently developed to make predictions of certain water quality features using the ratio of wastewater inputs into regional watersheds. Current studies involve interdisciplinary research aimed at gaining a better understanding of chemical fate and transport, exposure pathways, and toxicological 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). created-date: value: 1664222930676 last-modified-date: value: 1664222930676 path: /0000-0002-5251-6987/biography visibility: public keywords: keyword: - content: water quality, aqueous organic contaminants, environmental health, human health, remediation, elect created-date: value: 1501714351145 display-index: 1 last-modified-date: value: 1501714351145 path: /0000-0002-5251-6987/keywords/756428 put-code: 756428 source: assertion-origin-client-id: null assertion-origin-name: null assertion-origin-orcid: null source-client-id: null source-name: value: Jeramy R. Jasmann source-orcid: host: orcid.org path: 0000-0002-5251-6987 uri: https://orcid.org/0000-0002-5251-6987 visibility: public last-modified-date: value: 1501714351145 path: /0000-0002-5251-6987/keywords name: created-date: value: 1501712791103 credit-name: value: Jeramy R. Jasmann family-name: value: Jasmann given-names: value: Jeramy last-modified-date: value: 1664222837979 path: 0000-0002-5251-6987 source: null visibility: public researcher-urls: last-modified-date: value: 1664223132374 path: /0000-0002-5251-6987/researcher-urls researcher-url: - created-date: value: 1664223132374 display-index: 2 last-modified-date: value: 1664223132374 path: /0000-0002-5251-6987/researcher-urls/3386124 put-code: 3386124 source: assertion-origin-client-id: null assertion-origin-name: null assertion-origin-orcid: null source-client-id: null source-name: value: Jeramy R. Jasmann source-orcid: host: orcid.org path: 0000-0002-5251-6987 uri: https://orcid.org/0000-0002-5251-6987 url: value: https://www.usgs.gov/staff-profiles/jeramy-r-jasmann url-name: Jeramy Jasmann Profile Page visibility: public - created-date: value: 1664223132371 display-index: 1 last-modified-date: value: 1664223132371 path: /0000-0002-5251-6987/researcher-urls/3386123 put-code: 3386123 source: assertion-origin-client-id: null assertion-origin-name: null assertion-origin-orcid: null source-client-id: null source-name: value: Jeramy R. Jasmann source-orcid: host: orcid.org path: 0000-0002-5251-6987 uri: https://orcid.org/0000-0002-5251-6987 url: value: https://www.usgs.gov/mission-areas/water-resources/integrated-water-chemistry-assessment-laboratory#:~:text=The%20Integrated%20Water%20Chemistry%20Assessment%20Laboratory%20(IWCAL)%20is%20located%20in,quality%20and%20limit%20water%20availability url-name: Integrated Water Chemistry Assessment Laboratory visibility: public
usgs_staff_profile:
meta: url: https://www.usgs.gov/staff-profiles/jeramy-r-jasmann timestamp: '2024-01-30T21:21:04.904794' status_code: 200 profile: name: Jeramy R Jasmann, Ph.D. name_qualifier: null titles: - Research Chemist organizations: - !!python/tuple - Water Resources Mission Area - https://www.usgs.gov/mission-areas/water-resources email: jjasmann@usgs.gov orcid: 0000-0002-5251-6987 intro_statements: - "Dr. Jasmann\u2019s research efforts are focused on developing water quality\ \ evaluation tools, deepening our process understanding of aqueous constituents\ \ fate and transport, and providing integrative hydrological, chemical, and\ \ ecological assessment of water availability and suitability conditions in\ \ watersheds across the U.S." expertise_terms: - Environmental Impact Assessment - Environmental Analytical Chemistry - Environment Protection - Water Chemistry - Water Purification Technologies - Groundwater - Remediation - Hydrogeochemistry - Contaminant Transport Hydrology - Environmental Biochemistry professional_experience: [] education: - 'Ph.D. 2016: Department of Analytical Chemistry, Colorado State University, Fort Collins, CO. Advisors: Dr. Thomas Borch and Dr. Jens Blotevogel' - 'Teaching License 2001: Secondary Physical and Life Science. California State University, Sacramento, CA.' - 'B.S. 1997: Biochemistry. University of California, Davis, CA.' affiliations: [] honors: [] abstracts: [] personal_statement: Dr. Jeramy R. Jasmann is an environmental geochemist whose research focuses on analytical chemistry and modeling tools for assessing water quality, water uses, and water suitability for human and ecological needs through investigation of stressors, stressor sources, controlling processes of fate and transport, 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, Earth Science, Biology, and Environmental Science for 12 years before returning to university. He earned his Ph.D. in Environmental Analytical Chemistry from Colorado State University, Fort Collins with an emphasis on novel treatment technologies and transformation mechanisms of recalcitrant organic pollutants, primarily 1,4-dioxane and chlorinated solvents.Jasmann joined the U.S. Geological Survey in 2016 and is a Research Scientist in the Water Resource Mission Area's Laboratory Analytical Services Division, Strategic Laboratory Sciences Branch. Jasmann is the lab manager for the Integrated Water Chemistry Assessment Laboratory (IWCAL) in Boulder, CO and specializes in GC/MS/MS analysis of trace-levels bioactive organic chemicals in the aqueous environment and biomarkers of aquatic 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.