Works matching Atmospheric methane


Results: 2352
    1
    2

    MERLIN: A French-German Space Lidar Mission Dedicated to Atmospheric Methane.

    Published in:
    Remote Sensing, 2017, v. 9, n. 10, p. 1052, doi. 10.3390/rs9101052
    By:
    • Ehret, Gerhard;
    • Bousquet, Philippe;
    • Pierangelo, Clémence;
    • Alpers, Matthias;
    • Millet, Bruno;
    • Abshire, James B.;
    • Bovensmann, Heinrich;
    • Burrows, John P.;
    • Chevallier, Frédéric;
    • Ciais, Philippe;
    • Crevoisier, Cyril;
    • Fix, Andreas;
    • Flamant, Pierre;
    • Frankenberg, Christian;
    • Gibert, Fabien;
    • Heim, Birgit;
    • Heimann, Martin;
    • Houweling, Sander;
    • Hubberten, Hans W.;
    • Jöckel, Patrick
    Publication type:
    Article
    3
    4
    5
    6
    7
    8

    Global environmental implications of atmospheric methane removal through chlorine-mediated chemistry-climate interactions.

    Published in:
    Nature Communications, 2023, v. 14, n. 1, p. 1, doi. 10.1038/s41467-023-39794-7
    By:
    • Li, Qinyi;
    • Meidan, Daphne;
    • Hess, Peter;
    • Añel, Juan A.;
    • Cuevas, Carlos A.;
    • Doney, Scott;
    • Fernandez, Rafael P.;
    • van Herpen, Maarten;
    • Höglund-Isaksson, Lena;
    • Johnson, Matthew S.;
    • Kinnison, Douglas E.;
    • Lamarque, Jean-François;
    • Röckmann, Thomas;
    • Mahowald, Natalie M.;
    • Saiz-Lopez, Alfonso
    Publication type:
    Article
    9
    10
    11

    Opinion: A research roadmap for exploring atmospheric methane removal via iron salt aerosol.

    Published in:
    Atmospheric Chemistry & Physics, 2024, v. 24, n. 9, p. 5659, doi. 10.5194/acp-24-5659-2024
    By:
    • Gorham, Katrine A.;
    • Abernethy, Sam;
    • Jones, Tyler R.;
    • Hess, Peter;
    • Mahowald, Natalie M.;
    • Meidan, Daphne;
    • Johnson, Matthew S.;
    • van Herpen, Maarten M. J. W.;
    • Xu, Yangyang;
    • Saiz-Lopez, Alfonso;
    • Röckmann, Thomas;
    • Brashear, Chloe A.;
    • Reinhardt, Erika;
    • Mann, David
    Publication type:
    Article
    12
    13
    14

    Physiological basis for atmospheric methane oxidation and methanotrophic growth on air.

    Published in:
    Nature Communications, 2024, v. 15, n. 1, p. 1, doi. 10.1038/s41467-024-48197-1
    By:
    • Schmider, Tilman;
    • Hestnes, Anne Grethe;
    • Brzykcy, Julia;
    • Schmidt, Hannes;
    • Schintlmeister, Arno;
    • Roller, Benjamin R. K.;
    • Teran, Ezequiel Jesús;
    • Söllinger, Andrea;
    • Schmidt, Oliver;
    • Polz, Martin F.;
    • Richter, Andreas;
    • Svenning, Mette M.;
    • Tveit, Alexander T.
    Publication type:
    Article
    15

    Physiological basis for atmospheric methane oxidation and methanotrophic growth on air.

    Published in:
    Nature Communications, 2024, v. 15, n. 1, p. 1, doi. 10.1038/s41467-024-48197-1
    By:
    • Schmider, Tilman;
    • Hestnes, Anne Grethe;
    • Brzykcy, Julia;
    • Schmidt, Hannes;
    • Schintlmeister, Arno;
    • Roller, Benjamin R. K.;
    • Teran, Ezequiel Jesús;
    • Söllinger, Andrea;
    • Schmidt, Oliver;
    • Polz, Martin F.;
    • Richter, Andreas;
    • Svenning, Mette M.;
    • Tveit, Alexander T.
    Publication type:
    Article
    16
    17
    18
    19
    20

    The recent increase of atmospheric methane from 10 years of ground-based NDACC FTIR observations since 2005.

    Published in:
    Atmospheric Chemistry & Physics, 2017, v. 17, n. 3, p. 2255, doi. 10.5194/acp-17-2255-2017
    By:
    • Bader, Whitney;
    • Bovy, Benoît;
    • Conway, Stephanie;
    • Strong, Kimberly;
    • Smale, Dan;
    • Turner, Alexander J.;
    • Blumenstock, Thomas;
    • Boone, Chris;
    • Coen, Martine Collaud;
    • Coulon, Ancelin;
    • Garcia, Omaira;
    • Griffith, David W. T.;
    • Hase, Frank;
    • Hausmann, Petra;
    • Jones, Nicholas;
    • Krummel, Paul;
    • Murata, Isao;
    • Morino, Isamu;
    • Nakajima, Hideaki;
    • O'Doherty, Simon
    Publication type:
    Article
    21
    22
    23
    24
    25
    26
    27
    28

    Ten years of atmospheric methane from ground-based NDACC FTIRobservations.

    Published in:
    Atmospheric Chemistry & Physics Discussions, 2016, p. 1, doi. 10.5194/acp-2016-699
    By:
    • Bader, Whitney;
    • Bovy, Benoît;
    • Conway, Stephanie;
    • Strong, Kimberly;
    • Smale, Dan;
    • Turner, Alexander J.;
    • Blumenstock, Thomas;
    • Boone, Chris;
    • Coulon, Ancelin;
    • Garcia, Omaira;
    • Griffith, David W. T.;
    • Hase, Frank;
    • Hausmann, Petra;
    • Jones, Nicholas;
    • Krummel, Paul;
    • Murata, Isao;
    • Morino, I.;
    • Hideaki Nakajima;
    • O'Doherty, Simon;
    • Paton-Walsh, Clare
    Publication type:
    Article
    29
    30
    31

    Interpreting the Seasonality of Atmospheric Methane.

    Published in:
    Geophysical Research Letters, 2024, v. 51, n. 10, p. 1, doi. 10.1029/2024GL108494
    By:
    • East, James D.;
    • Jacob, Daniel J.;
    • Balasus, Nicholas;
    • Bloom, A. Anthony;
    • Bruhwiler, Lori;
    • Chen, Zichong;
    • Kaplan, Jed O.;
    • Mickley, Loretta J.;
    • Mooring, Todd A.;
    • Penn, Elise;
    • Poulter, Benjamin;
    • Sulprizio, Melissa P.;
    • Worden, John R.;
    • Yantosca, Robert M.;
    • Zhang, Zhen
    Publication type:
    Article
    32
    33
    34
    35

    Anthropogenic emission is the main contributor to the rise of atmospheric methane during 1993–2017.

    Published in:
    National Science Review, 2022, v. 9, n. 5, p. 1, doi. 10.1093/nsr/nwab200
    By:
    • (张臻), Zhen Zhang;
    • Poulter, Benjamin;
    • Knox, Sara;
    • Stavert, Ann;
    • McNicol, Gavin;
    • Fluet-Chouinard, Etienne;
    • Feinberg, Aryeh;
    • (赵园红), Yuanhong Zhao;
    • Bousquet, Philippe;
    • Canadell, Josep G;
    • Ganesan, Anita;
    • Hugelius, Gustaf;
    • Hurtt, George;
    • Jackson, Robert B;
    • Patra, Prabir K;
    • Saunois, Marielle;
    • Höglund-Isaksson, Lena;
    • (黄春林), Chunlin Huang;
    • Chatterjee, Abhishek;
    • (李新), Xin Li
    Publication type:
    Article
    36
    37
    38

    Contribution of anthropogenic and natural sources to atmospheric methane variability.

    Published in:
    Nature, 2006, v. 443, n. 7110, p. 439, doi. 10.1038/nature05132
    By:
    • Bousquet, P.;
    • Ciais, P.;
    • Miller, J. B.;
    • Dlugokencky, E. J.;
    • Hauglustaine, D. A.;
    • Prigent, C.;
    • Van der Werf, G. R.;
    • Peylin, P.;
    • Brunke, E.-G.;
    • Carouge, C.;
    • Langenfelds, R. L.;
    • Lathière, J.;
    • Papa, F.;
    • Ramonet, M.;
    • Schmidt, M.;
    • Steele, L. P.;
    • Tyler, S. C.;
    • White, J.
    Publication type:
    Article
    39
    40
    41
    42
    43
    44
    45
    46
    47
    48
    49
    50