Item talk:Q47631: Difference between revisions

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orcid:
ORCiD:
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Line 1,736: Line 1,736:
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USGS Staff Profile:
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    timestamp: '2024-01-30T21:05:46.202854'
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    name: Michelle Lorah
     abstract: Research Hydrologist with the Maryland-Delaware-D.C. Water Science Center
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    - Research Hydrologist
     abstract: Dr. Michelle Lorah is a Research Hydrologist and has been with the U.S.
    organizations:
       Geological Survey in the Maryland Water Sciences Center since 1985, where she
    - !!python/tuple
      directs the Fate and Bioremediation Team.  Her research focuses on contaminant
      - Maryland-Delaware-D.C. Water Science Center
      fate, microbial community dynamincs, and developing bioremediation methods for
      - https://www.usgs.gov/centers/md-de-dc-water
      a wide range of organic and inorganic contaminants in groundwater...
    email: mmlorah@usgs.gov
     additionalType: staff profile page introductory statement
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     abstract: My research is focused on determining natural attenuation processes
    - Dr. Michelle Lorah is a Research Hydrologist and has been with the U.S. Geological
       in complex environments, such as wetlands, sediment, and fractured rock, with
       Survey in the Maryland Water Sciences Center since 1985, where she directs the
      the goal of enhancing or augmenting these processes to obtain efficient remediation
      Fate and Bioremediation Team.  Her research focuses on contaminant fate, microbial
       of contaminants. This research includes defining anaerobic and aerobic degradation
      community dynamincs, and developing bioremediation methods for a wide range
       processes, microbial community dynamics, and controlling environmental factors.  Much
      of organic and inorganic contaminants in groundwater...
      of my research has focused on chlorinated volatile organic compounds, including
     expertise_terms:
       chlorinated methanes, ethenes, and benzenes, and development of bioremediation
    - Biogeochemistry
    - Bioremediation
    professional_experience:
    - 1994-Present, Research Hydrologist, U.S. Geological Survey, Baltimore, Maryland
    - Technical director of Fate and Bioremediation Team. Principal or co-principal
      investigator on projects investigating contaminant fate and remediation, with
      a specialization on complex hydrogeologic environments, including wetlands and
      other areas of ground-water-surface water interaction and fractured rock.
    education:
    - B.S.    Pennsylvania State University, Geosciences/Minor- Marine Science, 1983
    - M.S.    University of Virginia, Environmental Sciences- Geochemistry, 1987
    - Ph.D.  University of Maryland, Marine-Estuarine-Environmental Sciences Program-
      Environmental Chemistry, 1999
    affiliations: []
    honors: []
     abstracts: []
    personal_statement: My research is focused on determining natural attenuation
       processes in complex environments, such as wetlands, sediment, and fractured
      rock, with the goal of enhancing or augmenting these processes to obtain efficient
       remediation of contaminants. This research includes defining anaerobic and aerobic
       degradation processes, microbial community dynamics, and controlling environmental
      factors.  Much of my research has focused on chlorinated volatile organic compounds,
       including chlorinated methanes, ethenes, and benzenes, and development of bioremediation
       technologies for these widespread groundwater contaminants.  I have led the
       technologies for these widespread groundwater contaminants.  I have led the
       development of an anaerobic dechlorinating consortium (WBC-2) for degradation
       development of an anaerobic dechlorinating consortium (WBC-2) for degradation
Line 1,789: Line 1,766:
       attenuation of landfill leachate, and fate of nutrients in groundwater/surface-water
       attenuation of landfill leachate, and fate of nutrients in groundwater/surface-water
       discharge area.
       discharge area.
    additionalType: personal statement
  email: mmlorah@usgs.gov
  hasCredential:
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    name: B.S.    Pennsylvania State University, Geosciences/Minor- Marine Science,
      1983
  - '@type': EducationalOccupationalCredential
    name: M.S.    University of Virginia, Environmental Sciences- Geochemistry, 1987
  - '@type': EducationalOccupationalCredential
    name: Ph.D.  University of Maryland, Marine-Estuarine-Environmental Sciences Program-
      Environmental Chemistry, 1999
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      name: Maryland-Delaware-D.C. Water Science Center
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    roleName: Research Hydrologist
    startDate: '2024-05-12T15:40:55.842340'
  - '@type': Occupation
    additionalType: self-claimed professional experience
    name: '1994-Present, Research Hydrologist, U.S. Geological Survey, Baltimore,
      Maryland
      Technical director of Fate and Bioremediation Team. Principal or co-principal
      investigator on projects investigating contaminant fate and remediation, with
      a specialization on complex hydrogeologic environments, including wetlands and
      other areas of ground-water-surface water interaction and fractured rock.'
  identifier:
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    value: https://geokb.wikibase.cloud/entity/Q47631
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    value: 0000-0002-9236-587X
  jobTitle: Research Hydrologist
  knowsAbout:
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    additionalType: self-claimed expertise
    name: Biogeochemistry
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    additionalType: self-claimed expertise
    name: Bioremediation
  memberOf:
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      name: U.S. Geological Survey
    name: staff member
    startDate: '2024-05-12T15:40:55.839572'
  name: Michelle Lorah
  url: https://www.usgs.gov/staff-profiles/michelle-lorah

Revision as of 16:43, 12 May 2024

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   abstract: Research Hydrologist with the Maryland-Delaware-D.C. Water Science Center
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   abstract: Dr. Michelle Lorah is a Research Hydrologist and has been with the U.S.
     Geological Survey in the Maryland Water Sciences Center since 1985, where she
     directs the Fate and Bioremediation Team.  Her research focuses on contaminant
     fate, microbial community dynamincs, and developing bioremediation methods for
     a wide range of organic and inorganic contaminants in groundwater...
   additionalType: staff profile page introductory statement
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   abstract: My research is focused on determining natural attenuation processes
     in complex environments, such as wetlands, sediment, and fractured rock, with
     the goal of enhancing or augmenting these processes to obtain efficient remediation
     of contaminants. This research includes defining anaerobic and aerobic degradation
     processes, microbial community dynamics, and controlling environmental factors.  Much
     of my research has focused on chlorinated volatile organic compounds, including
     chlorinated methanes, ethenes, and benzenes, and development of bioremediation
     technologies for these widespread groundwater contaminants.  I have led the
     development of an anaerobic dechlorinating consortium (WBC-2) for degradation
     of chlorinated solvents and of bio-reactive barriers or caps for application
     in bottom sediment and groundwater discharge areas.  Additional research has
     included study of biodegradation of explosives compounds and perchlorate, natural
     attenuation of landfill leachate, and fate of nutrients in groundwater/surface-water
     discharge area.
   additionalType: personal statement
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   name: B.S.     Pennsylvania State University, Geosciences/Minor- Marine Science,
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   name: M.S.    University of Virginia, Environmental Sciences- Geochemistry, 1987
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   name: Ph.D.  University of Maryland, Marine-Estuarine-Environmental Sciences Program-
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     Technical director of Fate and Bioremediation Team. Principal or co-principal
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     a specialization on complex hydrogeologic environments, including wetlands and
     other areas of ground-water-surface water interaction and fractured rock.'
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