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Tomas Mikoviny

Tomas Mikoviny

D-Index & Metrics

Environmental Sciences

D-Index
53
Citations
8566
World Ranking
4320
National Ranking
50

Overview

Tomas Mikoviny is affiliated with the University of Oslo in Norway. Their research encompasses several interconnected fields, predominantly focused on Earth and Planetary Sciences, Environmental Science, and Engineering.

The primary subfields within their work include Atmospheric Science, Health, Toxicology and Mutagenesis, Mechanical Engineering, Global and Planetary Change, and Biomedical Engineering.

Their research topics cover a range of subjects such as Atmospheric chemistry and aerosols, Atmospheric Ozone and Climate, Air Quality and Health Impacts, Carbon Dioxide Capture Technologies, Atmospheric and Environmental Gas Dynamics, Catalytic Processes in Materials Science, and Indoor Air Quality and Microbial Exposure.

The scientist has published papers in various venues, with frequent publications appearing in:

  • SSRN Electronic Journal
  • The Journal of Physical Chemistry A
  • Elementa Science of the Anthropocene
  • Atmospheric chemistry and physics
  • Atmospheric Environment

Recent papers include:

  • Characterization, sources and reactivity of volatile organic compounds (VOCs) in Seoul and surrounding regions during KORUS-AQ, 2020, Elementa Science of the Anthropocene
  • Observation-based modeling of ozone chemistry in the Seoul metropolitan area during the Korea-United States Air Quality Study (KORUS-AQ), 2020, Elementa Science of the Anthropocene
  • Validation of IASI Satellite Ammonia Observations at the Pixel Scale Using In Situ Vertical Profiles, 2021, Journal of Geophysical Research Atmospheres
  • Performance of an amine-based CO2 capture pilot plant at the Fortum Oslo Varme Waste to Energy plant in Oslo, Norway, 2021, International journal of greenhouse gas control
  • Airborne formaldehyde and volatile organic compound measurements over the Daesan petrochemical complex on Korea's northwest coast during the Korea-United States Air Quality study, 2020, Elementa Science of the Anthropocene

Frequent co-authors include:

  • Armin Wisthaler (31 collaborations)
  • Claus J. Nielsen (10 collaborations)
  • Glenn S. Diskin (7 collaborations)
  • D. R. Blake (6 collaborations)
  • J. H. Crawford (6 collaborations)

Best Publications

  • Effects of aging on organic aerosol from open biomass burning smoke in aircraft and laboratory studies

    M. J. Cubison;M. J. Cubison;A. M. Ortega;A. M. Ortega;P. L. Hayes;P. L. Hayes;D. K. Farmer;D. K. Farmer

  • Airborne measurements of western U.S. wildfire emissions: Comparison with prescribed burning and air quality implications

    Xiaoxi Liu;Xiaoxi Liu;Xiaoxi Liu;L. Gregory Huey;Robert J. Yokelson;Vanessa Selimovic

  • On-Line Monitoring of Microbial Volatile Metabolites by Proton Transfer Reaction-Mass Spectrometry

    Michael Bunge;Nooshin Araghipour;Tomas Mikoviny;Jürgen Dunkl

  • Emissions of Black Carbon, Organic, and Inorganic Aerosols From Biomass Burning in North America and Asia in 2008

    Y. Kondo;H. Matsui;N. Moteki;L. Sahu;L. Sahu

  • Characterization of a real-time tracer for isoprene epoxydiols-derived secondary organic aerosol (IEPOX-SOA) from aerosol mass spectrometer measurements

    W. W. Hu;P. Campuzano-Jost;B. B. Palm;D. A. Day

  • Organic nitrate chemistry and its implications for nitrogen budgets in an isoprene- and monoterpene-rich atmosphere: constraints from aircraft (SEAC 4 RS) and ground-based (SOAS) observations in the Southeast US

    Jenny A. Fisher;Daniel J. Jacob;Katherine R. Travis;Patrick S. Kim

  • Nitrogen oxides and PAN in plumes from boreal fires during ARCTAS-B and their impact on ozone: an integrated analysis of aircraft and satellite observations

    M. J. Alvarado;J. A. Logan;J. Mao;E. Apel

  • Release of volatile organic compounds (VOCs) from the lung cancer cell line CALU-1 in vitro.

    Wojciech Filipiak;Wojciech Filipiak;Andreas Sponring;Andreas Sponring;Tomas Mikoviny;Clemens Ager;Clemens Ager

  • The Deep Convective Clouds and Chemistry (DC3) Field Campaign

    Mary C. Barth;Christopher A. Cantrell;William H. Brune;Steven A. Rutledge

  • Measured and modeled CO and NOy in DISCOVER-AQ: An evaluation of emissions and chemistry over the eastern US

    Daniel C. Anderson;Christopher P. Loughner;Christopher P. Loughner;Glenn Diskin;Andrew Weinheimer

  • New insights into the column CH2O/NO2 ratio as an indicator of near-surface ozone sensitivity

    Jason R. Schroeder;James H. Crawford;Alan Fried;James Walega

  • Brown carbon in the continental troposphere

    Jiumeng Liu;Jiumeng Liu;Eric Scheuer;Jack Dibb;Luke D. Ziemba

  • A new software tool for the analysis of high resolution PTR-TOF mass spectra

    Markus Müller;Tomáš Mikoviny;Werner Jud;Barbara D'Anna

  • Airborne measurements of organosulfates over the continental U.S.

    Jin Liao;Jin Liao;Karl D. Froyd;Karl D. Froyd;Daniel M. Murphy;Frank N. Keutsch;Frank N. Keutsch

  • Brown carbon aerosol in the North American continental troposphere: sources, abundance, and radiative forcing

    J. Liu;J. Liu;E. Scheuer;J. Dibb;G. S. Diskin

  • Conversion of hydroperoxides to carbonyls in field and laboratory instrumentation: Observational bias in diagnosing pristine versus anthropogenically controlled atmospheric chemistry

    J. C. Rivera-Rios;T. B. Nguyen;J. D. Crounse;W. Jud

  • Upper tropospheric ozone production from lightning NOx-impacted convection: Smoke ingestion case study from the DC3 campaign

    E. C. Apel;R. S. Hornbrook;A. J. Hills;N. J. Blake

  • Agricultural fires in the southeastern U.S. during SEAC4RS: emissions of trace gases and particles and evolution of ozone, reactive nitrogen, and organic aerosol.

    Xiaoxi Liu;Y. Zhang;L. G. Huey;R. J. Yokelson

  • Atmospheric benzene observations from oil and gas production in the Denver‐Julesburg Basin in July and August 2014

    Hannah S. Halliday;Anne M. Thompson;Anne M. Thompson;Armin Wisthaler;Armin Wisthaler;Donald R. Blake

  • A compact PTR-ToF-MS instrument for airborne measurements of volatile organic compounds at high spatiotemporal resolution

    M. Müller;T. Mikoviny;T. Mikoviny;T. Mikoviny;S. Feil;S. Haidacher

  • Comparison of chemical characteristics of 495 biomass burning plumes intercepted by the NASA DC-8 aircraft during the ARCTAS/CARB-2008 field campaign

    A. Hecobian;A. Hecobian;Z. Liu;C. J. Hennigan;C. J. Hennigan;L. G. Huey

Frequent Co-Authors

Armin Wisthaler
Armin Wisthaler University of Oslo
Glenn S. Diskin
Glenn S. Diskin Langley Research Center
Jose L. Jimenez
Jose L. Jimenez University of Colorado Boulder
Paul O. Wennberg
Paul O. Wennberg California Institute of Technology
John D. Crounse
John D. Crounse California Institute of Technology
Jeff Peischl
Jeff Peischl Cooperative Institute for Research in Environmental Sciences
Alan Fried
Alan Fried University of Colorado Boulder
Donald R. Blake
Donald R. Blake University of California, Irvine
Andrew J. Weinheimer
Andrew J. Weinheimer National Center for Atmospheric Research
Pedro Campuzano-Jost
Pedro Campuzano-Jost University of Colorado Boulder

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