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orcid:
ORCiD:
   meta:
   meta:
     status_code: 200
     status_code: 200
Line 286: Line 286:
           url-name: Google Scholar
           url-name: Google Scholar
           visibility: public
           visibility: public
usgs_staff_profile:
USGS Staff Profile:
   meta:
   '@context': https://schema.org
    url: https://www.usgs.gov/staff-profiles/karl-b-haase
  '@type': Person
    timestamp: '2024-01-30T15:49:28.475140'
   affiliation: []
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     abstract: Research Chemist with the Water Resources Mission Area
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     titles:
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    - Research Chemist
     abstract: Dr. Karl Haase is the technical lead of the USGS Reston Groundwater
    - Research Chemist
      Dating Lab, and a Research Chemist with the USGS Water Resources Mission Area.
    organizations:
     additionalType: staff profile page introductory statement
    - !!python/tuple
  - '@type': TextObject
      - Water Resources Mission Area
     abstract: I am a research chemist studying methods of groundwater age determination.
      - https://www.usgs.gov/mission-areas/water-resources
       I am generally interested in the relationships between atmospheric gases and
    - !!python/tuple
       groundwater, as mediated by the interactions in the vadose zone, the layer of
      - Reston Stable Isotope Laboratory (RSIL)
       the ground that water must pass through before it enters an aquifer.I have a
      - https://www.usgs.gov/labs/reston-stable-isotope-laboratory
       background in experimental atmospheric chemistry, having worked with several
    email: khaase@usgs.gov
       groups on topics including ocean fertilization, biogeochemical impacts to atmospheric
    orcid: 0000-0002-6897-6494
       chemistry, oceanic emissions of halocarbons to the atmosphere, instrument validation
     intro_statements:
       studies, long term observations, anthropogenic emissions, and air quality measurements.Dissolved
    - Dr. Karl Haase is the technical lead of the USGS Reston Groundwater Dating Lab,
      Gases are important chemical tracers in groundwater systems. They provide information
      and a Research Chemist with the USGS Water Resources Mission Area.
      about groundwater age, aquifer mixing, and the climate conditions when water
     expertise_terms:
      entered the aquifer. This information can be used to study issue of groundwater
    - Environmental tracers research
      availability, quality, and quantity. Additionally direct measurements of these
    - Atmospheric Chemistry
      properties can be used to validate groundwater model output and improve model
    - Gas Chromatography (GC) Method and Design
      algorithms, allowing more accurate assessment of aquifer systems. I have designed,
    - Mass Spectrometer Systems Design, Development and Integration
      constructed several noble gas mass spectrometer and GC systems to measure dissolved
    - Vacuum Systems
      fixed gases (O2, N2, He, Ne, Ar, Kr, and Xe) to assess groundwater recharge
    - Process and Instrumentation Automation
      temperatures more accurately, and I am studying the behavior of various anthropogenic
    - Trace Gas and Dissolved Trace Gas Analysis
      compounds in the groundwater system.In pursuit of these research goals, I have
    - Air Water Interaction
      developed novel and customized analytical systems and sensors for research and
    - Groundwater Dating
      production operations. Among others, these include an automated economical quadruple
    - Electronics Prototyping
      mass spectrometer based noble gas analyzer, a dual channel GC-FID-AED system
    professional_experience: []
      for measuring trace hydrofluorocarbons (as novel groundwater age tracers) and
    education: []
      trace hydrocarbons (to better understand hydrocarbon geochemistry, a highly
    affiliations: []
      automated multi-port noble gas analyzer for tritium-helium dating and noble
    honors: []
      gas concentrations in groundwater, a self contained low cost pCO2 sensor, and
     abstracts: []
      GC-TCD system for measurements of He/Ne in groundwater samples.
    personal_statement: I am a research chemist studying methods of groundwater age
    additionalType: personal statement
       determination. I am generally interested in the relationships between atmospheric
  email: khaase@usgs.gov
       gases and groundwater, as mediated by the interactions in the vadose zone, the
  hasCredential: []
       layer of the ground that water must pass through before it enters an aquifer.I
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       have a background in experimental atmospheric chemistry, having worked with
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       several groups on topics including ocean fertilization, biogeochemical impacts
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       to atmospheric chemistry, oceanic emissions of halocarbons to the atmosphere,
      '@type': Organization
       instrument validation studies, long term observations, anthropogenic emissions,
      name: Water Resources Mission Area
      and air quality measurements.Dissolved Gases are important chemical tracers
      url: https://www.usgs.gov/mission-areas/water-resources
      in groundwater systems. They provide information about groundwater age, aquifer
    roleName: Research Chemist
      mixing, and the climate conditions when water entered the aquifer. This information
    startDate: '2024-05-12T15:18:10.163838'
      can be used to study issue of groundwater availability, quality, and quantity.
  - '@type': OrganizationalRole
      Additionally direct measurements of these properties can be used to validate
    affiliatedOrganization:
      groundwater model output and improve model algorithms, allowing more accurate
      '@type': Organization
      assessment of aquifer systems. I have designed, constructed several noble gas
      name: Reston Stable Isotope Laboratory (RSIL)
      mass spectrometer and GC systems to measure dissolved fixed gases (O2, N2, He,
       url: https://www.usgs.gov/labs/reston-stable-isotope-laboratory
      Ne, Ar, Kr, and Xe) to assess groundwater recharge temperatures more accurately,
    roleName: Research Chemist
      and I am studying the behavior of various anthropogenic compounds in the groundwater
    startDate: '2024-05-12T15:18:10.171656'
      system.In pursuit of these research goals, I have developed novel and customized
  identifier:
      analytical systems and sensors for research and production operations. Among
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      noble gas analyzer, a dual channel GC-FID-AED system for measuring trace hydrofluorocarbons
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      (as novel groundwater age tracers) and trace hydrocarbons (to better understand
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      hydrocarbon geochemistry, a highly automated multi-port noble gas analyzer for
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      tritium-helium dating and noble gas concentrations in groundwater, a self contained
    value: 0000-0002-6897-6494
      low cost pCO2 sensor, and GC-TCD system for measurements of He/Ne in groundwater
  jobTitle: Research Chemist
       samples.
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    name: Environmental tracers research
  - '@type': Thing
    additionalType: self-claimed expertise
    name: Atmospheric Chemistry
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    additionalType: self-claimed expertise
    name: Gas Chromatography (GC) Method and Design
  - '@type': Thing
    additionalType: self-claimed expertise
    name: Mass Spectrometer Systems Design, Development and Integration
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    additionalType: self-claimed expertise
    name: Vacuum Systems
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    name: Process and Instrumentation Automation
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    additionalType: self-claimed expertise
    name: Trace Gas and Dissolved Trace Gas Analysis
  - '@type': Thing
    additionalType: self-claimed expertise
    name: Air Water Interaction
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    name: Groundwater Dating
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    additionalType: self-claimed expertise
    name: Electronics Prototyping
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    member:
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      name: U.S. Geological Survey
    name: staff member
    startDate: '2024-05-12T15:18:10.160842'
  name: Karl B Haase, Ph.D.
  url: https://www.usgs.gov/staff-profiles/karl-b-haase

Revision as of 17:16, 12 May 2024

ORCiD:

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USGS Staff Profile:

 '@context': https://schema.org
 '@type': Person
 affiliation: []
 description:
 - '@type': TextObject
   abstract: Research Chemist with the Water Resources Mission Area
   additionalType: short description
 - '@type': TextObject
   abstract: Dr. Karl Haase is the technical lead of the USGS Reston Groundwater
     Dating Lab, and a Research Chemist with the USGS Water Resources Mission Area.
   additionalType: staff profile page introductory statement
 - '@type': TextObject
   abstract: I am a research chemist studying methods of groundwater age determination.
     I am generally interested in the relationships between atmospheric gases and
     groundwater, as mediated by the interactions in the vadose zone, the layer of
     the ground that water must pass through before it enters an aquifer.I have a
     background in experimental atmospheric chemistry, having worked with several
     groups on topics including ocean fertilization, biogeochemical impacts to atmospheric
     chemistry, oceanic emissions of halocarbons to the atmosphere, instrument validation
     studies, long term observations, anthropogenic emissions, and air quality measurements.Dissolved
     Gases are important chemical tracers in groundwater systems. They provide information
     about groundwater age, aquifer mixing, and the climate conditions when water
     entered the aquifer. This information can be used to study issue of groundwater
     availability, quality, and quantity. Additionally direct measurements of these
     properties can be used to validate groundwater model output and improve model
     algorithms, allowing more accurate assessment of aquifer systems. I have designed,
     constructed several noble gas mass spectrometer and GC systems to measure dissolved
     fixed gases (O2, N2, He, Ne, Ar, Kr, and Xe) to assess groundwater recharge
     temperatures more accurately, and I am studying the behavior of various anthropogenic
     compounds in the groundwater system.In pursuit of these research goals, I have
     developed novel and customized analytical systems and sensors for research and
     production operations. Among others, these include an automated economical quadruple
     mass spectrometer based noble gas analyzer, a dual channel GC-FID-AED system
     for measuring trace hydrofluorocarbons (as novel groundwater age tracers) and
     trace hydrocarbons (to better understand hydrocarbon geochemistry, a highly
     automated multi-port noble gas analyzer for tritium-helium dating and noble
     gas concentrations in groundwater, a self contained low cost pCO2 sensor, and
     GC-TCD system for measurements of He/Ne in groundwater samples.
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