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Kevin J. Noone

Kevin J. Noone

D-Index & Metrics

Environmental Sciences

D-Index
51
Citations
45697
World Ranking
4611
National Ranking
87

Overview

Kevin J. Noone is affiliated with Stockholm University in Sweden and conducts research primarily in the field of Environmental Science. Their work encompasses several subfields, including Global and Planetary Change, Atmospheric Science, Health, Toxicology and Mutagenesis, Renewable Energy, Sustainability and the Environment, as well as Radiological and Ultrasound Technology.

The main topics they focus on include Atmospheric aerosols and clouds, Atmospheric chemistry and aerosols, Atmospheric Ozone and Climate, Global Energy and Sustainability Research, Radioactivity and Radon Measurements, Atmospheric and Environmental Gas Dynamics, and Climate Change and Health Impacts.

Among their recent publications are:

  • "Augmenting the Grammar of Science-The Community Science Exchange," 2022, Community Science
  • "Lockdown Measures Which Reduced Greenhouse Gas Emissions With Little Negative Impact on Quality of Life," 2021, Earth's Future
  • "The Case for the Anthropocene Epoch Is Stronger Than the Case for the Holocene Epoch," 2025, Earth's Future
  • "Unmasking the Effects of Aerosols on Greenhouse Warming Over Europe," 2022, Journal of Geophysical Research Atmospheres
  • "Identifying the safe operating space for food systems," 2025, Nature Food

Their frequent co-authors include Alasdair Skelton, Jean J. Schensul, Paul Glantz, Olusegun G. Fawole, and J. Ström.

Kevin J. Noone's research is regularly published in venues such as Earth's Future, Community Science, Journal of Geophysical Research Atmospheres, and Nature Food, reflecting their engagement with both interdisciplinary and specialized scientific outlets.

Best Publications

  • A safe operating space for humanity

    Johan Rockström;Johan Rockström;Will Steffen;Will Steffen;Kevin Noone;Åsa Persson;Åsa Persson

  • Planetary boundaries: Exploring the safe operating space for humanity

    Johan Rockström;Johan Rockström;Will Steffen;Will Steffen;Kevin Noone;Åsa Persson;Åsa Persson

  • Organic atmospheric aerosols: Review and state of the science

    M. C. Jacobson;H. C. Hansson;K. J. Noone;R. J. Charlson

  • Soot in the Arctic snowpack: a cause for perturbations in radiative transfer

    Antony D. Clarke;Kevin J. Noone

  • Science Plan and Implementation Strategy

    Bill Young;Kevin Noone;Will Steffen

  • Design and Calibration of a Counterflow Virtual Impactor for Sampling of Atmospheric Fog and Cloud Droplets

    Kevin J. Noone;John A. Ogren;Jost Heintzenberg;Robert J. Charlson

  • A comparison of scavenging and deposition processes in global models: results from the WCRP Cambridge Workshop of 1995

    P. J. Rasch;J. Feichter;K. Law;N. Mahowald

  • Hygroscopic growth of aerosol particles in the Po Valley

    I. B. Svenningsson;H.-C. Hansson;A. Wiedensohler;J. A. Ogren

  • Aerosol direct radiative effects over the northwest Atlantic, northwest Pacific, and North Indian Oceans: estimates based on in-situ chemical and optical measurements and chemical transport modeling

    T. S. Bates;T. L. Anderson;T. Baynard;Tami C Bond

  • The Po Valley Fog Experiment 1989

    S. Fuzzi;M. C. Facchini;G. Orsi;J. A. Lind

  • Influence of humidity on the aerosol scattering coefficient and its effect on the upwelling radiance during ACE-2

    S. Gassó;D. A. Hegg;D. S. Covert;D. Collins

  • The Monterey Area Ship Track Experiment

    Philip A. Durkee;Kevin J. Noone;Robert T. Bluth

  • Hygroscopic Growth of Aerosol Particles and its Influence on Nucleation Scavenging in Cloud: Experimental Results from Kleiner Feldberg

    Birgitta Svenningsson;Hans-Christen Hansson;Alfred Wiedensohler;Kevin Noone

  • Cloud droplets: Solute concentration is size dependent

    Kevin J. Noone;Robert J. Charlson;David S. Covert;John A. Ogren

  • Changes in aerosol size‐ and phase distributions due to physical and chemical processes in fog

    Kevin J. Noone;John A. Ogren;Anneli Hallberg;Jost Heintzenberg

  • Aerosol light absorption measurement techniques: Analysis and intercomparisons

    Antony D. Clarke;Kevin J. Noone;Jost Heintzenberg;Stephen G. Warren

  • Sulfate, nitrate, methanesulfonate, chloride, ammonium, and sodium measurements from ship, island, and aircraft during the Atlantic Stratocumulus Transition Experiment/Marine Aerosol Gas Exchange

    Barry J. Huebert;Liangzhong Zhuang;Steven Howell;Kevin Noone

  • Clear-sky closure studies of lower tropospheric aerosol and water vapor during ACE-2 using airborne sunphotometer, airborne in-situ, space-borne, and ground-based measurements

    Beat Schmid;John M. Livingston;Philip B. Russell;Philip A. Durkee

  • The impact of ship-produced aerosols on the microstructure and albedo of warm marine stratocumulus clouds: A test of MAST hypotheses 1i and 1ii

    Philip A. Durkee;K. J. Noone;R. J. Ferek;R. J. Ferek;D. W. Johnson

  • In situ aerosol‐size distributions and clear‐column radiative closure during ACE‐2

    D. R. Collins;H. H. Johnsson;J. H. Seinfeld;R. C. Flagan

  • Primary marine aerosol‐cloud interactions off the coast of California

    R. L. Modini;R. L. Modini;A. A. Frossard;A. A. Frossard;L. Ahlm;L. Ahlm;L. M. Russell

Frequent Co-Authors

John A. Ogren
John A. Ogren National Oceanic and Atmospheric Administration
John H. Seinfeld
John H. Seinfeld California Institute of Technology
Alfred Wiedensohler
Alfred Wiedensohler Leibniz Institute for Tropospheric Research
Lynn M. Russell
Lynn M. Russell University of California, San Diego
Jost Heintzenberg
Jost Heintzenberg Leibniz Institute for Tropospheric Research
Richard C. Flagan
Richard C. Flagan California Institute of Technology
Colin D. O'Dowd
Colin D. O'Dowd University of Galway
Meinrat O. Andreae
Meinrat O. Andreae Max Planck Institute for Chemistry
Axel Berner
Axel Berner University of Vienna
Sandro Fuzzi
Sandro Fuzzi Institute of Atmospheric Sciences and Climate

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