Ozone troposphérique (French Wikipedia)

Analysis of information sources in references of the Wikipedia article "Ozone troposphérique" in French language version.

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ademe.fr

librairie.ademe.fr

archives-ouvertes.fr

tel.archives-ouvertes.fr

atsjournals.org

ajrccm.atsjournals.org

cnrs.fr

insu.cnrs.fr

doi.org

dx.doi.org

  • Nataliya P. Didyk et Oleg B. Blum, Review Natural antioxidants of plant origin against ozone damage of sensitive crops, Acta Physiologiae Plantarum, vol. 33, no 1, 25-34, DOI 10.1007/s11738-010-0527-5 (Résumé)
  • K. Vandermeiren, H. Harmens, G. Mills and L. De Temmerman Impacts of Ground-Level Ozone on Crop Production in a Changing Climate, Climate Change and Crops Environmental Science and Engineering, 2009, 213-243, DOI 10.1007/978-3-540-88246-6_10 (Accès au document)
  • ZhaoZhong Feng, Kazuhiko Kobayashi, XiaoKe Wang et ZongWei Feng, A meta-analysis of responses of wheat yield formation to elevated ozone concentration, Chinese Science Bulletin, 2009, vol. 54, no 2, 249-255, DOI 10.1007/s11434-008-0552-6 (Résumé)
  • Kaliakatsou, E. et al., The impact of tropospheric ozone pollution on trial plot winter wheat yields in Great…, Environ. Pollut., 2009, DOI 10.1016/j.envpol.2009.10.033 (Article complet)
  • (en) Colin Gillespie, Daniel Stabler, Eva Tallentire et Eleni Goumenaki, « Exposure to environmentally-relevant levels of ozone negatively influence pollen and fruit development », Environmental Pollution, vol. 206,‎ , p. 494–501 (DOI 10.1016/j.envpol.2015.08.003, lire en ligne, consulté le )
  • (en) Helena Ribeiro, Célia Costa, Ilda Abreu et Joaquim C.G. Esteves da Silva, « Effect of O3 and NO2 atmospheric pollutants on Platanus x acerifolia pollen: Immunochemical and spectroscopic analysis », Science of The Total Environment, vol. 599-600,‎ , p. 291–297 (DOI 10.1016/j.scitotenv.2017.04.206, lire en ligne, consulté le )
  • Cuesta, J., Eremenko, M., Liu, X., Dufour, G., Cai, Z., Höpfner, M., von Clarmann, T., Sellitto, P., Foret, G., Gaubert, B., Beekmann, M., Orphal, J., Chance, K., Spurr, R. et Flaud, J.-M., Satellite observation of lowermost tropospheric ozone by multispectral synergism of IASI thermal infrared and GOME-2 ultraviolet measurements over Europe, Atmos. Chem. Phys., 13, 9675-9693, DOI 10.5194/acp-13-9675-2013, 2013.

doi.org

  • Ziemke, J. R., Oman, L. D., Strode, S. A., Douglass, A. R., Olsen, M . A., McPeters, R. D., Bhartia, P. K., Froidevaux, L., Labow, G. J., Witte, J. C., Thompson, A. M., Haffner, D. P., Kramarova, N. A., Frith, S. M., Huang, L.-K., Jaross, G. R., Seftor, C. J., Deland, M. T., et Taylor, S. L. (2019) Trends in global tropospheric ozone inferred from a composite record of TOMS/OMI/MLS/OMPS satellite measurements and the MERRA-2 GMI simulation , Atmos. Chem. Phys., 19, 3257-3269, https://doi.org/10.5194/acp-19-3257-2019

elsevier.com

linkinghub.elsevier.com

  • (en) Colin Gillespie, Daniel Stabler, Eva Tallentire et Eleni Goumenaki, « Exposure to environmentally-relevant levels of ozone negatively influence pollen and fruit development », Environmental Pollution, vol. 206,‎ , p. 494–501 (DOI 10.1016/j.envpol.2015.08.003, lire en ligne, consulté le )
  • (en) Helena Ribeiro, Célia Costa, Ilda Abreu et Joaquim C.G. Esteves da Silva, « Effect of O3 and NO2 atmospheric pollutants on Platanus x acerifolia pollen: Immunochemical and spectroscopic analysis », Science of The Total Environment, vol. 599-600,‎ , p. 291–297 (DOI 10.1016/j.scitotenv.2017.04.206, lire en ligne, consulté le )

europa.eu

reports.eea.europa.eu

eea.europa.eu

eur-lex.europa.eu

futura-sciences.com

informaworld.com

liege.eu

  • Service public fédéral Santé publique, Sécurité de la Chaîne alimentaire et Environnement, Moins d’ozone plus d’air, , 34 p. (lire en ligne), p. 12

nejm.org

content.nejm.org

nerc.ac.uk

nora.nerc.ac.uk

  • Holland, M., Kinghorn, S., Emberson, L., Cinderby, S., Ashmore, M., Mills, G. et Harmens, H. (2006). Development of a framework for probabilistic assessment of the economic losses caused by ozone damage to crops in Europe. Projet CEH no C02309NEW. Centre pour l'écologie et l'hydrologie, Conseil de la recherche sur l'environnement naturel, Bangor, Pays de Galles (Accès au document)

nih.gov

ncbi.nlm.nih.gov

springer.com

link.springer.com

  • Yu, S. (2019). Fog geoengineering to abate local ozone pollution at ground level by enhancing air moisture. Environmental Chemistry Letters, 17(1), 565-580 (résumé).

springerlink.com

  • Nataliya P. Didyk et Oleg B. Blum, Review Natural antioxidants of plant origin against ozone damage of sensitive crops, Acta Physiologiae Plantarum, vol. 33, no 1, 25-34, DOI 10.1007/s11738-010-0527-5 (Résumé)
  • K. Vandermeiren, H. Harmens, G. Mills and L. De Temmerman Impacts of Ground-Level Ozone on Crop Production in a Changing Climate, Climate Change and Crops Environmental Science and Engineering, 2009, 213-243, DOI 10.1007/978-3-540-88246-6_10 (Accès au document)
  • ZhaoZhong Feng, Kazuhiko Kobayashi, XiaoKe Wang et ZongWei Feng, A meta-analysis of responses of wheat yield formation to elevated ozone concentration, Chinese Science Bulletin, 2009, vol. 54, no 2, 249-255, DOI 10.1007/s11434-008-0552-6 (Résumé)

thelancet.com

theses.fr

  • L. L. Olea (2009) Influence de la pollution extérieure sur la qualité de l'air intérieur: rôle des fissures dans le transfert de particules solides ; https://www.theses.fr/2009LAROS287 (thèse de doctorat, La Rochelle).

up.ac.za

usna.edu

wallonie.be

sante.wallonie.be

who.int