Literatura académica sobre el tema "Déchets d’équipements électriques et électroniques (DEEE)"
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Artículos de revistas sobre el tema "Déchets d’équipements électriques et électroniques (DEEE)"
Douet, Marie. "La circulation inverse des déchets d’équipements électriques et électroniques (DEEE) : entre consolidation et développement". Logistique & Management 26, n.º 1 (28 de noviembre de 2017): 3–14. http://dx.doi.org/10.1080/12507970.2017.1384702.
Texto completoDieng, Diomaye, Cheikh Diop, El hadji Mamadou Sonko, Jean Birane Gning, Mamané Djitte y Cheikhou Ibrahima Diaby Gassama. "Gestion des déchets d’équipements électriques et électroniques (DEEE) au Sénégal : acteurs et stratégie d’organisation de la filière". International Journal of Biological and Chemical Sciences 11, n.º 5 (11 de enero de 2018): 2393. http://dx.doi.org/10.4314/ijbcs.v11i5.35.
Texto completoYeboué-Kouamé, B. Y., J. H. Kouadio, J. Soya, T. A. Ngouafouo y D. Lison. "Risque d’exposition simultanée aux métaux traces chez des artisans du secteur informel des déchets d’équipements électroniques et électriques (DEEE) en Côte d’Ivoire". Toxicologie Analytique et Clinique 29, n.º 2 (mayo de 2017): S69—S70. http://dx.doi.org/10.1016/j.toxac.2017.03.103.
Texto completoAksa, Wessim, Karim Medles, Mohamed Rezoug, Mohamed Miloudi, Mihail Bilici y Lucien Dascalascu. "Procédé de séparation électrostatique pour l’amélioration des isolants issus des déchets d’équipements électriques et électroniques". European Journal of Electrical Engineering 16, n.º 5-6 (30 de diciembre de 2013): 583–95. http://dx.doi.org/10.3166/ejee.16.583-5958.
Texto completoDRAYE, Micheline y Romain DUWALD. "Recyclage de Déchets d’Équipements Électriques et Électroniques (DEEE)". Chimie verte, julio de 2023. http://dx.doi.org/10.51257/a-v1-m7070.
Texto completoFaomowe Foko, R., M. Mbodji, M. Kêdote, M. Diaw, M. Touré, F. Bah, A. Lam et al. "Risque chimique et santé respiratoire des manipulateurs des déchets d’équipements électriques et électroniques (DEEE) à Dakar (Sénégal)". Archives des Maladies Professionnelles et de l'Environnement, julio de 2021. http://dx.doi.org/10.1016/j.admp.2021.04.008.
Texto completoBahers, Jean-Baptiste. "Métabolisme territorial et filières de récupération-recyclage : le cas des déchets d’équipements électriques et électroniques (DEEE) en Midi-Pyrénées." Développement durable et territoires, Vol. 5, n°1 (4 de febrero de 2014). http://dx.doi.org/10.4000/developpementdurable.10159.
Texto completoMansuy, Jean, Philippe Lebeau, Sara Verlinde y Cathy Macharis. "À qui la charge ? Analyse de la gestion des déchets d’équipements électriques et électroniques à Bruxelles". Brussels Studies, 24 de marzo de 2022. http://dx.doi.org/10.4000/brussels.6018.
Texto completoTchoupou, Aurélien Douandji y Emmanuel Ngnikam. "Contribution à l’amélioration de la gestion des déchets d’équipements électriques et électroniques ménagers au Cameroun : cas de la ville de Douala". Déchets, sciences et techniques, N°73 (2017). http://dx.doi.org/10.4267/dechets-sciences-techniques.3572.
Texto completoTesis sobre el tema "Déchets d’équipements électriques et électroniques (DEEE)"
Ausset, Sandrine. "Procédé de recyclage de mélanges ABS-PC issus de déchets d’équipements électriques et électroniques (DEEE)". Thesis, Bordeaux 1, 2013. http://www.theses.fr/2013BOR14760/document.
Texto completoThe aim of this PhD work was to propose a recycling process method of PC-ABS blend from real Waste Electrical and Electronic Equipment deposit (WEEE) deposits. This recycling process has to be able to overcome the problematic related to polymer recycling.The main constraints about recycling process are the presence of polymeric impurities after sorting step as well as mechanical reprocessing (extrusion and injection molded). Firstly, the effect of impurities on the mechanical properties (tensile and impact strength) and morphology (SEM, TEM) of PC-ABS blends have been studied. The presence of immiscible impurity deteriorates the mechanical properties of PC-ABS. The addition of an appropriate compatibilizer enhances the interface between PC-ABS and the impurity. The compatibilizer improves the impact strength and changes the morphology of this blend. Secondly, the optimization of injection molding parameters generates a change in morphology. This change leads to an increase of the impact strength.Both methods were applied to a flame retardant PC-ABS from WEEE with an impurity. The addition of a compatibilizer and the modification of injection molding parameters improve the impact strength. The presences of an impurity and a compatibilizer have a negative effect on the flame retardant properties of the PC-ABS blend
Fossi, Tabieguia Guy-Joël. "Recyclage, réemploi, réutilisation et régénération des cristaux liquides et d’oxyde indium-étain (ITO) issus des déchets d’équipements électriques et électroniques (DEEE)". Thesis, Lille 1, 2013. http://www.theses.fr/2013LIL10179.
Texto completoThe volumes of waste electrical and electronic equipment (WEEE) such as TVs and monitors display (LCD), keep grow in recent years. These WEEE contain recyclable raw material of great interest, including LCD and indium tin oxide (ITO). Meanwhile, there is currently no treatment for industrial recovery of this liquid crystals and ITO of LCD screens at the end of life for the purpose of recovery. Given the technological and economic benefits of these materials, we have implemented in the MEDUSA project funded by ADEME and controlled by the company ENVIE 2E, a process of treating LCDs. This process consists to extract of LCD panels, liquid crystals by mechanical extraction and ITO by chemical extraction. The advantage of this method lies in the rapid recovery of liquid crystal ITO whatever the size of the screen. In a second step, the phases of distillation and purification perfectly mastered possible to obtain liquid crystal molecules. The good quality of the products is checked by different physico-chemical analyzes. Some recovery methods were used such as lettings of ITO solution, the liquid crystal molecules, liquid crystals as additives for thermochromic inks, and liquid crystals as PDLC (Polymer Dispersed Liquid Crystals) for windows switchable. Finally, estimates of the costs of operating the process compared to the potential selling price of recovered liquid crystal reveal a good project profitability
Mbodji, Mor. "Etude des impacts environnementaux et sanitaires des déchets d’équipements électriques et électroniques (DEEE) au Sénégal : cas de la ville de Dakar". Electronic Thesis or Diss., Lyon, 2021. http://www.theses.fr/2021LYSE1290.
Texto completoWaste electrical and electronic equipment (WEEE) is particularly problematic around the world. The aim of this thesis was to assess the potentially harmful effects of waste electrical and electronic equipment (WEEE) on the dispersion of metals in the environment and their fate to human health in Dakar, Senegal. Studies first focused on the determination of metals in the soils of four WEEE recycling sites in Dakar (Mbeubeuss, Mermoz Pikine and Reubeuss) by LIBS and portable X-ray fluorescence techniques. The results of this work showed that all the sites studied were contaminated by elements such as Pb, Cr, Fe, Mn and Zn in comparison with a control site. The distribution of metals is highly dependent on the site and therefore on the recycling activity. The potential contamination of the population through the food chain was assessed by analyzing vegetables produced near the largest WEEE waste dump (Mbeubeuss). Speciation by sequential extraction of the elements Sb, Pb, Sr, Cr, Cu Mn and Zn in market garden soils showed that the elements were mainly present in the residual fraction. This approach has shown that the metals are not mobile and not very bioavailable to plants. The contamination of metallic elements in two batches of vegetables produced from two distinct market gardening areas near Mbeubeuss and the evaluation of the potential health risk associated with the consumption of these products were studied. The results obtained from the first batch showed the contents of Cu, Cr, Mn, Zn and Fe led to risk indices. For the 2nd batch of vegetables (closer to Mbeubeuss) the concentrations of Cr, Zn and Pb are higher with a risk linked to the presence of Cr. The results of this work led to the conclusion that there is a potential health hazard for consumers of vegetables linked to the Cr element, only if it is present as CrVI
Gonda, Louise. "Analyse environnementale de la gestion de fin de vie des déchets d’équipements électriques et électroniques par les entreprises d’économie sociale en Belgique francophone". Doctoral thesis, Universite Libre de Bruxelles, 2017. http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/261164.
Texto completoDoctorat en Sciences
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Chevallier, Céline. "Valorisation des polymères styréniques issus des déchets d’équipements électroniques et électriques". Thesis, Saint-Etienne, 2012. http://www.theses.fr/2012STET4015/document.
Texto completoThe aim of this work consists in the recycling of the styrenic polymers coming from waste of electric and electronic equipments. Polystyrene (PS), high impact polystyrene (HIPS), poly(acrylonitrile-butadiene-styrene) (ABS), its alloy with the polycarbonate (ABS/PC) and poly(styrene-acrylonitrile) (SAN) are considered. A preliminary study permits to choose two blends to study: PS/ABS and PS/PC. In the case of PS/ABS blend, the ionic way of compatibilization was studied. The addition of a copolymer containing an ionic structure and the creation of an ionic network in-situ are investigated. Both these attempts are not conclusive about the improvement of the final properties of the blend. The PS/PC blend is then compatibilized by adding a polystyrene-block-poly(ethylene-butylene)-block-polystyrene grafted polycarbonate. This copolymer is first created in an internal mixer, in order to study different catalysts able to initiate the grafting, and then the reactive extrusion is used to synthesize it on a large scale. Several amounts are introduced in the PS/PC blend and the improvement of the properties and microstructures proves its compatibilizing effect
Ausset, Sandrine. "Procédé de recyclage de mélanges ABS-PC issus de déchets d'équipements électriques et électroniques (DEEE)". Phd thesis, Université Sciences et Technologies - Bordeaux I, 2013. http://tel.archives-ouvertes.fr/tel-00943822.
Texto completoMaris, Joachim. "Compatibilisation de matières plastiques en mélange issues de déchets d’équipements électriques et électroniques en vue de leur valorisation par recyclage mécanique". Thesis, Le Mans, 2018. http://www.theses.fr/2018LEMA1004.
Texto completoThe recycling of the plastics from waste electrical and electronic equipment (WEEE) has attracted great attention recently for environmental reasons. Mechanical recycling has emerged as the most economical, as well as the most energetic and ecologically efficient option. The aim of this work is the mechanical recycling of WEEE mixed plastic waste (MPW) streams. First, MPW composition has been evaluated by FT-IR and X-ray fluorescence spectroscopies, and ATG and DSC analyses. MPW are complex blend composed of thermoplastics, mainly styrenic polymers (ABS, HIPS, PS) and polyolefins. The remaining were other thermoplastics as PVC, PE, PMMA, PC…. After processing, these mixtures show very low mechanical properties compared to commodity and engineering thermoplastics. These results demonstrated that compatibilization is necessary to transform these D3E into secondary raw materials (SRM). In situ compatibilization using radical reactions appeared to be an attractive solution. Two pathways have been studied to generate the radicals, firstly, by electron beam radiation and, secondly, by adding chemical initiators. These two approaches didn’t show any substantial improvement in mechanical properties. Following these results, compatibilization by addition of reactive and non-reactive commercial copolymers were undertaken, leading to a significant improvement in mechanical properties. The production of technical prototypes and 3D printing wires from compatibilized SRM has been validated and allows considering an industrial development
Gripon, Layla. "Contribution au recyclage et à la valorisation des matières plastiques issues des déchets d’équipements électriques et électroniques contenant des retardateurs de flamme bromés". Thesis, Ecole nationale supérieure Mines-Télécom Lille Douai, 2020. http://www.theses.fr/2020MTLD0014.
Texto completoBrominated flame retardants (BFR) are added to polymers to enhance their flammability resistance. But some of them are nowadays considered as persistent organic pollutants (POP). To avoid their propagation into recycling streams, plastic materials which bromine concentration is too high (> 2000 ppm) are generally incinerated to destroy the pollutants they contain. The objective of this work is to find a solution to recycle BFR containing plastics materials while respecting the regulations. The study is focused on an acrylonitrile-butadiene-styrene (ABS) batch coming from real waste electrical and electronic equipment which contains a POP concentration about four times higher than the regulation limit authorizing recycling. Physico-chemical methods were studied to extract BFR. Solid-liquid extractions with stirring and diethyl ether as well as the dissolution-precipitation method lowered the POP concentration under the regulatory limit. A detailed study on supercritical CO2 extraction was performed and showed its efficiency to remove BFR, but optimizations are still needed. The recycling environmental impacts were also evaluated considering the pre-treatment processes studied previously. The energy and solvent consumptions need to be optimized in order to make the recycling process more viable compared to incineration. The treated plastic material showed that it can be easily recycled. Nevertheless, its impact strength could be improved during a formulation step. Finally, a practical application of this material in a bilayer structure was proposed to enhance its mechanical and esthetic properties. Good adhesions were obtained with virgin ABS and ABS/PC materials guaranteeing satisfactory properties to the bilayer structure
Dhib, Soumaya. "Contribution à l'optimisation de la Configuration et à l'évaluation de performances des réseaux logistiques inverses : cas des déchets des équipements électriques et électroniques". Thesis, Paris 8, 2017. http://www.theses.fr/2017PA080033/document.
Texto completoRegulatory tightening on environmental management and environmental responsibility increasingly forces industrialists to respect the environment in their deployment and development. At a time when we are talking about the shortening of the life span of consumer products and durable goods, these manufacturers now have the task of putting in place processes for the valorization of their end-of-life products and derivatives of their products productions. This has been the case in particular for computer and electronic equipment which seeks to design logistic networks that meet the management needs of the flows of their returns such as WEEE1. Indeed, they are subject to strong demands (mastery of destinations for valorisation of end-of-life products, reduction of processing costs, reduction of the impact of associated logistical activities on the environment, etc.). This work deals with the design of logistic networks of returns flows which are naturally subject to economic constraints but also to environmental ones. Some of factors of the problem such as: return status, fluctuations in the demand for valued products, etc. are taken into account in the search for the configuration of the logistics network that best meets the needs
Bahers, Jean-Baptiste. "Dynamiques des filières de récupération-recyclage et écologie territoriale : l'exemple de la filière de traitement des déchets d'équipements électriques et électroniques (DEEE) en Midi-Pyrénées". Phd thesis, Université Toulouse le Mirail - Toulouse II, 2012. http://tel.archives-ouvertes.fr/tel-00711199.
Texto completoLibros sobre el tema "Déchets d’équipements électriques et électroniques (DEEE)"
Durrant, Emmanuelle. Le cadre légal des DEEE: Prévention, valorisation, financement de la gestion des déchets d'équipements électriques et électroniques. Paris: Victoires, 2009.
Buscar texto completoDurrant, Emmanuelle. Le cadre légal des DEEE: Prévention, valorisation, financement de la gestion des déchets d'équipements électriques et électroniques. Paris: Victoires, 2009.
Buscar texto completoCapítulos de libros sobre el tema "Déchets d’équipements électriques et électroniques (DEEE)"
GAMBS, Pauline, Marie LEPAGE y Hervé MUHR. "Récupération et recyclage des métaux contenus dans les DEEE". En Le recyclage, enjeu pour l’économie circulaire, 95–132. ISTE Group, 2023. http://dx.doi.org/10.51926/iste.9162.ch5.
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