Bibliographie
- Ozone. In : Registration dossier, ECHA (https://chem.echa.europa.eu/).
- Ozone. In : PubChem. US NLM (https://pubchem.ncbi.nlm.nih.gov/).
- Ozone. Encyclopédie des gaz - Air liquide (https://encyclopedia.airliquide.com/fr).
- Ozone. In : Gestis Substance Database on hazardous substance. IFA (https://gestis-database.dguv.de/).
- Ozone. In : Répertoire Toxicologique. CNESST (https://reptox.cnesst.gouv.qc.ca/Pages/repertoire-toxicologique.aspx).
- Ozone. Portail des substances chimiques. INERIS. Mise à jour 03/2024 (https://substances.ineris.fr/).
- Ozone. In : Base de données « Réactions chimiques dangereuses ». INRS, (https://www.inrs.fr/publications/bdd/rcdAG.html).
- Ozone. In : Base de données « Valeurs limites d’exposition professionnelle (VLEP) » – Substances chimiques. INRS (https://www.inrs.fr/publications/bdd/vlep.html).
- Ozone. Documentation of the TLVs® and BEIs® with worldwide occupational exposure values. Cincinnati : ACGIH, CD-ROM, 2025.
- Exposition sur les lieux de travail — Procédures pour déterminer la concentration d'agents chimiques — Exigences élémentaires relatives aux performances. Norme NF EN 482. Indice de classement X43-277. La Plaine Saint Denis: AFNOR ; Mars 2021 – 24p.
- Ozone In Workplace Atmospheres (Impregnated Glass Fiber Filter). Method ID-214. In : Sampling and Analytical Methods. OSHA, 2008 (https://www.osha.gov/chemicaldata/sampling-analytical-methods).
- Emili A, Burzoni S. Portrait rétrospectif des expositions professionnelles à l’ozone en France de 2002 à 2022. Hygiène et Sécurité du Travail n° 274. INRS, 2024 (https://www.inrs.fr/publications/hst/dans-ce-numero.html).
- Ghazaly C et al. Real-Time Ozone Sensor Based on Selective Oxidation of Methylene Blue in Mesoporous Silica Films. Sensors 2019, 19 (16), 3508 (https://doi.org/10.3390/s19163508).
- Développement d'un capteur pour la mesure en temps réel des expositions professionnelles à l'ozone : essais d'intercomparaison avec les capteurs commerciaux. Hygiène et Sécurité du Travail n° 283. INRS, 2026 (https://www.inrs.fr/media.html?refINRS=NT+131).
- Mise en œuvre de la réglementation relative aux atmosphères explosives (ATEX) – Guide méthodologique. Brochure ED 945. INRS (https://www.inrs.fr).
- Evaluation du risque incendie dans l'entreprise. Guide méthodologique. Brochure INRS ED 970 (https://www.inrs.fr).
- Les extincteurs d'incendie portatifs, mobiles et fixe. Brochure INRS ED 6054 (https://www.inrs.fr).
- Hatch GE, McKee J, Brown J, McDonnell W et al. – Biomarkers of dose and effect of inhaled ozone in resting versus exercising human subjects : comparison with resting rats. Biomarkers Insights. 2013 ; 8 : 53-67 (https://doi.org/10.4137/BMI.S11102).
- Wiester MJ, Stevens MA, Menache MG, McKee JL et al. – Ozone uptake in healthy adult males during quiet breathing. Fund Appl Toxicol. 1996 ; 29(1) : 102-109 (https://doi.org/10.1006/faat.1996.0011).
- Patty's toxicology - 5th edition. Vol.3 John Wiley & Sons ; 2001 : 679-687.
- Bignami G, Musi B, Del’Omo G, Laviola G et al. - Limited effects of ozone exposure during pregnancy on physical and neurobehavioral development of CD-1 mice. Toxicol Appl Pharmacol. 1994 ; 129 : 264-271 (https://doi.org/10.1006/taap.1994.1251).
- Hu SE, Ben-Jebria A et Ultman JS - Longitudinal distribution of ozone absorption in the lung: quiet respiration in healthy subjects. J Appl Physiol. 1992 ; 73(4) : 1655-1661 (https://doi.org/10.1152/jappl.1992.73.4.165).
- Critères d'hygiène de l'environnement. Oxydants photochimiques. Genève, OMS, 1979, 121 p (https://iris.who.int/items/dacb0091-83ef-465b-8a8b-beecb73dcede).
- Pino MV, Levin JR, Stovall MY et Hyde DM - Pulmonary inflammation and epithelial injury in response to acute ozone exposure in the rat. Toxicol Appl Pharmacol. 1992 ; 112 : 64-72 (https://doi.org/10.1016/0041-008X(92)90280-6).
- Tan WC et Bethel RA - The effect of platelet activating factor antagonist on ozone-induced airway inflammation and bronchial hyperresponsiveness in guinea-pigs. Am Rev Respir Dis. 1992 ; 146 : 916-922 (https://doi.org/10.1164/ajrccm/146.4.916).
- Lauwerys A - Gaz et vapeurs irritants et asphyxiants. ln: Toxicologie industrielle et intoxications professionnelles, 38e édition. Paris, Masson, 1990, pp. 394-397.
- Goodman JE, Prueitt RL, Sax SN, Lynch HN et al – Weight-of-evidence evaluation of short-term ozone exposure and cardiovascular effects. Crit Rev Toxicol. 2014 ; 44(9) : 725-790 (https://doi.org/10.3109/10408444.2014.937854).
- Avila-Costa MR, Colin-Barenque L, Fortoul TI, Machado-Salas JP et al. – Memory deterioration in an oxidative stress model and its correlation with cytological changes on rat hippocampus CA1. Neurosci Lett. 1999 ; 270(2) : 107-109 (https://doi.org/10.1016/S0304-3940(99)00458-9).
- Annex 1 Background document to the Opinion proposing harmonised classification and labelling at EU level of ozone. Adopted 16 March 2023. ECHA, 2023 (https://chem.echa.europa.eu/). Committee for Risk Assessment RAC Opinion proposing harmonised classification and labelling at EU level of ozone EC Number: 233-069-2 CAS Number: 10028-15-6 CLH-O-0000007279-64-01/F Adopted 16 March 2023
- Depuydt P, Joos GF et Pauwels RA – Ambient ozone concentrations induce airway hyperresponsiveness in some rat strains. Eur Respir. 1999 ; 14(1) : 125-131 (https://doi.org/10.1034/j.1399-3003.1999.14a21.x).
- Ozone In Workplace Atmospheres (Impregnated Glass Fiber Filter). Method ID-214. In : Sampling and Analytical Methods. OSHA, 2008 (https://www.osha.gov/chemicaldata/sampling-analytical-methods).
- Hasset C, Mustafa MG, Coulson WF et Elashoff RM – Murine lung carcinogenesis following exposure to ambient ozone concentrations. J Natl Cancer Inst. 1985 ; 75(4) : 771-777 (https://doi.org/10.1093/jnci/77.4.991).
- Chang LY, Huang Y, Stockstill BL, Graham JA et al. - Epithelial injury and interstitial fibrosis in the proximal alveolar regions of rats chronically exposed to a simulated pattem of urban ambiant ozone. Toxicol Appl Pharmacol. 1992 ; 115 : 241-252 (https://doi.org/10.1016/0041-008X(92)90329-Q).
- Li M, Chen S, Jiang W, Ye L et al. – Subchronic ozone exposure leads to multi-organ injuries with differential reversibility in male C57BL/6 J mice. J Hazard Mat. 2025 ; 492 : 138049 (https://doi.org/10.1016/j.jhazmat.2025.138049).
- Wiester MJ, Tepper JS, Doerfler DL et Costa DL - Ozone adaptation in rats after chronic exposure to a simulated urban profile of ozone. Fund Appl Toxicol. 1995 ; 24 : 42-51 (https://doi.org/10.1006/faat.1995.1006).
- Toxicology and Carcinogenesis Studies of Ozone (CAS 10028-15-6) and Ozone/NNK (CAS 10028-15-6/64091-91-4) in F344/N Rats and B6C3F1 Mice (Inhalation Studies). NTP Technical Report Series TR-440. US Department of Health and Human Services, 1994 (https://ntp.niehs.nih.gov/results/pubs/index.html).
- Ichinose T et Sagai M – Combined exposure to NO2, O3 and H2SO4-aerosol and lung tumor formation in rats. Toxicology. 1992 ; 74(2-3) : 173-184 (https://doi.org/10.1016/0300-483X(92)90137-4).
- Kim MY, Son JW et Cho MH – Genotoxicity in B6C3F1 mice following 0.5 ppm ozone inhalation. J Toxicol Pub Health. 2001 ; 17(1) : 1-6.
- Monchaux G, Morlier JP, Morin M, Fritsch P et al. - Etude des effets cancérogènes et cocancérogènes de l'ozone chez le rat : résultats préliminaires. Pollution Atmosphérique. 1993 ; 140 : 43.
- Victorin K - Review of the genotoxicity of ozone. Mutat Res. 1992 ; 277(3) : 221-238 (https://doi.org/10.1016/0165-1110(92)90045-B).
- Jedlinska-Krakowska M, Gizejewski Z, Dietrich GJ, Jakubowski K et al. – The effect of inscreased ozone concentrations in the air on selected aspects of rat reproduction. Pol J Vet Sci. 2006 ; 9(1) : 11-16.
- Petruzzi S, Fiore M, Dell’Omo G, Bignami G et al. – Medium and long-term behavioral effects in mice of extended gestational exposure to ozone. Neurotoxicol Teratol. 1995 ; 17(4) : 463-470 (https://doi.org/10.1016/0892-0362(95)00003-a).
- Dell’Omo G, Fiore m, Petruzzi S, Alleva E et al. - Neurobehavioral development of CD-1 mice after combined gestational and postnatal exposure to ozone. Arch Toxicol. 1995 ; 69(9) : 608-616 (https://doi.org/10.1007/s002040050221).
- Petruzzi S, De Acetis L, Chiarotti F, Sorace A et al. – Limited changes in handedness and morphine reactivity in CD-1 mice after pre- and postnatal ozone exposure. Acta Neurobiol Exp. 1999 ; 59(2) : 115-122.
- Santucci D, Sorace A, Francia N, Aloe L et al. - Prolonged prenatal exposure to low-level ozone affects aggressive behaviour as well as NGF and BDNF levels in the central nervous system of CD-1 mice. Behav Brain Res. 2006 ; 166(1) : 124-130 (https://doi.org/10.1016/j.bbr.2005.07.032).
- Sharkhuu T, Doerfler DL, Copeland C, Luebke RW et al. – Effect of maternal exposure to ozone on reproductive outcome and immune, inflammatory and allergic responses in the offspring. J Immunotoxicol. 2011 ; 8(2) : 183-194 (https://doi.org/10.3109/1547691X.2011.568978).
- Sorace A, De Caetis L, Alleva E et Santucci D – Prolonged exposure to low doses of ozone : short- and long-term changes in behavioral performance in mice. Environ Res. 2001 ; 85(2) : 122-134 (https://doi.org/10.1006/enrs.2000.4097).
- Kavlock A, Meyer E et Grabovski CT - Studies on the developmental toxicity of ozone: postnatal affects. Toxicol Lett, 1980 ; 5 : 3-9 (https://doi.org/10.1016/0378-4274(80)90141-1).
- Lopez I, Sanchez I, Bizarro P, Acevedo S et al. – Ultrastructural alterations during embryonic rats’ lung development caused by ozone. J Elec Mic. 2008 ; 57(1) : 19-23 (https://doi.org/10.1093/jmicro/dfm033).
- Velasquez RM, Alfaro-Rodriguez A, Gonzalez-Pina R et Gonzalez-Maciel A – Effect of ozone prenatal exposure on postnatal development of cerebellum. Proc West Pharacol Soc. 2002 ; 45 : 65-67.
- Yue H, Zhang J, Wu X, Tian Y et al. – Abnormal liver lipid metabolism in adult offspring induced by prenatal ozone exposure. J Haz Mat. 2025 ; 496(15) : 139222 (https://doi.org/10.1016/j.jhazmat.2025.139222).
- Baud F, Garnier R (Eds) - Toxicologie clinique. 6e édition. Paris : Lavoisier Médecine-Sciences ; 2017 : 1654 p.
- Schelegle ES, Morales CA, Walby WF, Marion S et al. 6.6-hour inhalation of ozone concentrations from 60 to 87 parts per billion in healthy humans. American Journal of Respiratory and Critical Care Medicine, Volume 180, Issue 3, August 2009 : 265-272 (https://doi.org/10.1164/rccm.200809-1484OC).
- Kim CS, Alexis NE, Rappold AG, Kehrl H et al. Lung function and inflammatory responses in healthy young adults exposed to 0.06 ppm ozone for 6.6 hours. American Journal of Respiratory and Critical Care Medicine, Volume 183, Issue 9, May 2011 :1215–1221 (https;//doi.org/10.1164/rccm.201011-1813OC).
- Lebuisson A - Le nettoyage sans utilisation de produits chimiques est-il vraiment sans risques ? Le cas de l’eau ozonée. Archives des Maladies Professionnelles et de l'Environnement, Volume 85, Issue 5, 2024, 101986, ISSN 1775-8785 (https://doi.org/10.1016/j.admp.2024.101986).
- Hazucha MJ, Bates DV, Bromberg PA. Mechanism of action of ozone on the human lung. J Appl Physiol (1985). 1989 Oct;67(4):1535-41 (https://doi.org/10.1152/jappl.1989.67.4.1535).
- Lee HS, Wang YT, Tan KT. Occupational asthma due to ozone. Singapore Med J. 1989 Oct;30(5):485-7. PMID: 2617302.
- Mehta AJ, Henneberger PK, Torén K, Olin AC - Airflow limitation and changes in pulmonary function among bleachery workers. European Respiratory Journal 2005 26(1): 133-139 (https://doi.org/10.1183/09031936.05.00083604).
- Hoffman CD, Henneberger PK, Olin AC, Mehta A et al. Exposure to ozone gases in pulp mills and the onset of rhinitis. Scand J Work Environ Health. 2004 Dec ; 30(6) : 445-9 (https://doi.org/10.5271/sjweh.833).
- Henneberger PK, Olin AC, Andersson E, Hagberg S et al. The incidence of respiratory symptoms and diseases among pulp mill workers with peak exposures to ozone and other irritant gases. Chest. 2005 Oct ; 128(4) : 3028-37 (https://doi.org/10.1378/chest.128.4.3028).
- Hackney JD, Linn WS, Mohler JG, Collier CR. Adaptation to short-term respiratory effects of ozone in men exposed repeatedly. J Appl Physiol Respir Environ Exerc Physiol. 1977 Jul ; 43(1):82-5 (https://doi.org/10.1152/jappl.1977.43.1.82).
- Principes généraux de ventilation. Guide pratique de ventilation ED 695. INRS (https://www.inrs.fr).
- Signalisation de santé et de sécurité au travail - Réglementation. Brochure ED 6293. INRS (https://www.inrs.fr).
- Cuves et réservoirs. Interventions à l'extérieur ou à l'intérieur des équipements fixes utilisés pour contenir ou véhiculer des produits gazeux, liquides ou solides. Recommandation CNAM R 435. Assurance Maladie, 2008 (https://www.ameli.fr/val-de-marne/entreprise/tableau_recommandations).
- Equipements de premiers secours en entreprise : douches de sécurité et lave-œil. Fiche pratique de sécurité ED 151. INRS (https://www.inrs.fr).