Letteratura scientifica selezionata sul tema "Oxyde de titane – Environnement"
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Articoli di riviste sul tema "Oxyde de titane – Environnement":
Remy, F., O. Monnereau, A. Casalot, F. Dahan e J. Galy. "Titane à valence mixte, un nouvel oxyde ternaire: Al2Ti7O15". Journal of Solid State Chemistry 76, n. 1 (settembre 1988): 167–77. http://dx.doi.org/10.1016/0022-4596(88)90204-6.
CHABANNE, Y., C. SARRAZINBAUDOUX e J. PETIT. "Comportement en fatigue-corrosion et corrosion sous contrainte d'alliages de titane sous environnement gazeux a 500 �c". Annales de Chimie Science des Mat�riaux 24, n. 4-5 (1999): 377–93. http://dx.doi.org/10.1016/s0151-9107(99)80076-2.
FEHR, Bernard. "Oxyde de titane pigmentaire". Opérations unitaires. Génie de la réaction chimique, settembre 1986. http://dx.doi.org/10.51257/a-v1-j6020-j1963.
Sahli, Youcef, Bariza Zitouni e Hocine Benmoussa. "Etude numérique tridimensionnelle de l'effet de la température d'entrée des gaz sur la production de chaleur dans une pile à combustible SOFC planaire". Journal of Renewable Energies 21, n. 2 (30 giugno 2018). http://dx.doi.org/10.54966/jreen.v21i2.680.
Yu, Katherine. "Titanium Dioxide Nanoparticles in Sunscreens: Properties, Current Regulations, and Potential Effects on Human and Environmental Wellbeing". Journal of Student Science and Technology 10, n. 1 (19 agosto 2017). http://dx.doi.org/10.13034/jsst.v10i1.113.
Tesi sul tema "Oxyde de titane – Environnement":
Dumeignil, Franck Payen Edmond Grimblot Jean. "Catalyse et environnement". Villeneuve d'Ascq : Université des sciences et technologies de Lille, 2007. https://iris.univ-lille1.fr/dspace/handle/1908/177.
Synthèse des travaux en français et curriculum vitae. Recueil de publications en anglais non reproduit dans la version électronique. N° d'ordre (Lille 1) : 501. Titre provenant de la page de titre du document numérisé. Bibliogr. 5 p. Liste des publications et des communications.
Mignotte, Carole Denise. "Environnement local de l'erbium dans des monocristaux de LiNbO3 implantés et des couches sol-gel de TiO2 et ZrO2 dopées". Lyon 1, 1998. http://www.theses.fr/1998LYO10069.
Arsac, Fabrice. "Dégradation photocatalytique de composés organiques volatils : étude de l'interface gaz-solide et de la phase gazeuse : application au traitement de l'air dans les environnements maîtrisés". Lyon 1, 2006. http://www.theses.fr/2006LYO10043.
Nguyen, Dinh An Christine. "Conception et réalisation d'un pilote pour le traitement photocatalytique d'effluents gazeux pollués en composés organiques volatils : application à l'élimination du méthanol dans l'air". Grenoble INPG, 2001. http://www.theses.fr/2001INPG0003.
Schulz, Aurélie. "Analyse de l'impact du cycle de vie des NPs TiO2 manufacturées à l'échelle du site spécifiqe : cas de la vallée de la Thur, 68, France". Electronic Thesis or Diss., Strasbourg, 2020. http://www.theses.fr/2020STRAH022.
The impact of engineered TiO2 NPs was assessed using the Life cycle assessment methodology at a site-specific scale. A first approach was carried out to detect them in the environment. Experimental data collected in the field were used to characterize these nanoparticles for terrestrial ecotoxicity at a local scale. TiO2 NPs were detected in the water and sediments of the Thur river and in soils of the study area up to 2,5 km from a production site. The residence time (fate factor) of TiO2 NPs in area soils of Thann is approximately 8500 years. A specific effect factor (12,46 PAF.m3.kg-1) was also developed using date from a bibliographic synthesis on the toxicity of TiO2 NPs for organisms in terrestrial ecosystem. The determination of these two parameters allows us to calculate the first characterization factor for TiO2 NPs for terrestrial ecotoxicity in the Thann region (1,06.105 PAF.m3.an.kg-1)
Nguyen, Lucie. "Approche du frittage et du co-frittage de matériaux céramiques et métalliques pour l'élaboration par le procédé d'impression jet d'encre de composants magnétiques". Limoges, 2013. http://www.theses.fr/2013LIMO4005.
This work deals with the study of the sintering of ceramic and metallic materials to allow their co-sintering for the development of a magnetic component shaped by ink-jet printing. The study and understanding of the sintering of the dielectric material (composed of silica) with or without additives such as TiO2, Bi2O3, ZnO relied on the in situ characterizations by ESEM and XRD of the phase transformations, the mechanisms of densification occurring during the heat treatment. It has been shown that these additives could act either as former or modifier of the vitreous silica network and lead to large variations in the crystallization température and densification. The densification kinetics and shrinkage amplitude of the dielectric, conductive and magnetic materials are very different, several improvement possibilities were advocated for their co-sintering: doping of the conductive material, calcination température of the magnetic material. . . . These solutions allowed the élaboration of bimaterial components shaped by ink-jet printing with designs close to the one of the final component
Gustafsson, Jan. "The effect of pH and electrolyte concentration on the dispersion properties of titanium dioxide /". Åbo : Åbo akademi university, 2003. http://catalogue.bnf.fr/ark:/12148/cb401252046.
Lafont, Ugo. "Oxydes de titane mésoporeux : synthèse, caractérisation et modification de surface". Montpellier 2, 2003. http://www.theses.fr/2003MON20150.
CAROFF, FLORENCE. "Preparation et etude de bio-ceramiques oxyde de titane - phosphate tricalcique". Paris 6, 1997. http://www.theses.fr/1997PA066630.
Jacota, Popescu Simona Andreia. "Films minces de dioxyde de titane déposés sur titane par mocvd : microstructure et biocomptabilité". Phd thesis, Toulouse, INPT, 2008. http://oatao.univ-toulouse.fr/7799/1/jacota_popescu.pdf.
Libri sul tema "Oxyde de titane – Environnement":
Canada, Canada Environnement. L' oxyde d'éthylène. Ottawa, Ont: Environnement Canada, 2001.
Nowotny, Janusz. Oxide semiconductors for solar energy conversion: Titanium dioxide. Boca Raton: CRC Press, 2012.
J, Raub, United Nations Environment Programme, International Labour Organisation, World Health Organization, Inter-Organization Programme for the Sound Management of Chemicals. e International Program on Chemical Safety., a cura di. Carbon monoxide. 2a ed. Geneva: World Health Organization, 1999.
Low, It-Meng, Hani Manssor Albetran, Victor Manuel de la Prida Pidal e Fong Kwong Yam. Nanostructured Titanium Dioxide in Photocatalysis. Jenny Stanford Publishing, 2021.
Low, It-Meng, Hani Manssor Albetran, Victor Manuel de la Prida Pidal e Fong Kwong Yam. Nanostructured Titanium Dioxide in Photocatalysis. Jenny Stanford Publishing, 2021.
Low, It-Meng, Hani Manssor Albetran, Victor Manuel de la Prida Pidal e Fong Kwong Yam. Nanostructured Titanium Dioxide in Photocatalysis. Jenny Stanford Publishing, 2021.
Low, It-Meng, Hani Manssor Albetran, Victor Manuel de la Prida Pidal e Fong Kwong Yam. Nanostructured Titanium Dioxide in Photocatalysis. Jenny Stanford Publishing, 2021.
Carbon Monoxide, 1999 (Environmental Health Criteria). 2a ed. World Health Organization, 2000.
Atti di convegni sul tema "Oxyde de titane – Environnement":
Feaugas, X., e E. Conforto. "Influence de l'hydrogène sur les mécanismes de déformation et d'endommagement des alliages de titane et de zirconium". In PlastOx 2007 - Mécanismes et Mécanique des Interactions Plasticité - Environnement. Les Ulis, France: EDP Sciences, 2009. http://dx.doi.org/10.1051/ptox/2009012.