Academic literature on the topic 'Matières plastiques – Déchets – Recyclage'
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Journal articles on the topic "Matières plastiques – Déchets – Recyclage"
Benimam, Samir, Farid Debieb, Mohamed Bentchikou, and Mohamed Guendouz. "Valorisation et Recyclage des Déchets Plastiques dans le Béton." MATEC Web of Conferences 11 (2014): 01033. http://dx.doi.org/10.1051/matecconf/20141101033.
Full textGrosse, François. "Le défi de l’économie circulaire." Futuribles N° 455, no. 4 (June 16, 2023): 33–48. http://dx.doi.org/10.3917/futur.455.0033.
Full textNdepete, Cyrille Prosper, Raoul Zaguy-Guerembo, Aime Martinien Deganai Gbongo, Luce Marie-Paul Regakouzou, Victoire Olivia Ngaissona Namndouta, and José Kpeou-Kolengue. "Valorisation des déchets plastiques en matériaux de construction." European Scientific Journal, ESJ 18, no. 21 (June 30, 2022): 320. http://dx.doi.org/10.19044/esj.2022.v18n21p320.
Full textLebullenger, Ronan, and Franck Pigeonneau. "De la bulle à la mousse de verre." Reflets de la physique, no. 74 (December 2022): 52–57. http://dx.doi.org/10.1051/refdp/202274052.
Full textRicard, Pascale. "Le droit international et la lutte contre la pollution marine par les déchets de matières plastiques." Annuaire français de droit international 65, no. 1 (2019): 527–53. http://dx.doi.org/10.3406/afdi.2019.5324.
Full textRichier, Anne, Séverine Scalisi, Nicolas Weydert, and Stéphanie Wicha. "Archéologie des marges littorales marseillaises : entre dépotoir et cimetière de bateaux." Revue d'archéologie contemporaine N° 2, no. 1 (October 23, 2023): 51–67. http://dx.doi.org/10.3917/raco.002.0051.
Full textMenia, Sabah, Ilyés Nouicer, Yasmina Bakouri, Abdelhamid M’raoui, Hammou Tebibel, and Abdallah Khellaf. "Production d’hydrogène par procédés biologiques." Oil & Gas Science and Technology – Revue d’IFP Energies nouvelles 74 (2019): 34. http://dx.doi.org/10.2516/ogst/2018099.
Full textJassim Najid. "Entisol Propriétés Chimiques Sur Le Système Agriculture Biologique." International Journal of Science and Society 4, no. 1 (February 15, 2022): 152–58. http://dx.doi.org/10.54783/ijsoc.v4i1.425.
Full textAugou, Ovo Sandrine Flora, Souleymane Ouattara, Conand Honoré Kouakou, Koffi Clément Kouadio, Aka Alexandre Assande, and Edjikémé Emeruwa. "Influence de la pression de compactage sur les caractéristiques physiques et la durée de combustion de combustible à base de sciure de bois et de liant végétal." Matériaux & Techniques 108, no. 4 (2020): 404. http://dx.doi.org/10.1051/mattech/2021001.
Full textRECORD, Association, Erwan HARSCOET, and Sarah CHOUVENC. "Recyclage chimique et physicochimique des déchets plastiques." Chimie verte, September 2023. http://dx.doi.org/10.51257/a-v1-j3995.
Full textDissertations / Theses on the topic "Matières plastiques – Déchets – Recyclage"
Boeglin, Nadia. "Valorisation par agglomération de sous-produits de la filière bois : faisabilité technique et approche technico-économique." Nancy 1, 1995. http://www.theses.fr/1995NAN10334.
Full textChiarilli-Sabin, Virginie. "Analyse de seuils d'endommagement de mélanges de polymères incompatibles dans un objectif de recyclage." Lille 1, 1996. https://pepite-depot.univ-lille.fr/LIBRE/Th_Num/1996/50376-1996-272.pdf.
Full textC'est le cas pour le polyoxyméthylène, et également pour un matériau pourtant très différent des thermoplastiques : le carbonate de calcium. Ce taux de 5% en volume semble marquer une transition de type ductile-fragile observée lors de la sollicitation en traction. La sensibilité particulière des caractéristiques autour de ce taux, la proximité de la température de transition vitreuse du polypropylène et la modification de la mobilité moléculaire due à la compatibilisation expliquent les valeurs a priori surprenantes mesurées sur certains allongements à la rupture. De plus, il est intéressant de constater que, contrairement à ce que l'on lit dans la littérature concernant les mélanges équilibrés de polymères incompatibles, l'adjonction de compatibilisants n'est pas nécessaire. Cette différence de tendance s'explique par la conjonction des facteurs que l'on vient d'évoquer, sans laquelle cette transition ductile-fragile, différente de la transition vitreuse, n'aurait pas été mise en évidence
Le, Guern Cécile. "Séparation de déchets de plastiques par voie physico-chimique (flottation-moussage) en vue de leur recyclage : applicabilité au mélange PVC/PET bouteilles." Vandoeuvre-les-Nancy, INPL, 1997. http://docnum.univ-lorraine.fr/public/INPL_T_1997_LE_GUERN_C.pdf.
Full textAldoori, Hussam. "Valorisation des déchets plastiques d'équipements électriques et électroniques contenant des retardateurs de flamme bromés." Electronic Thesis or Diss., Université de Lille (2022-....), 2022. http://www.theses.fr/2022ULILR053.
Full textThe use of brominated flame retardants, such as polybrominated diphenyl ethers (PBDEs), is currently restricted by the European RoHS directive because of their toxicity, bioaccumulation and persistence in the environment. However, these toxic molecules are still found in large quantities in end-of-life plastics, particularly in the residues of obsolete electrical and electronic equipment.Consequently, these plastic wastes loaded with brominated flame retardants cannot be recycled without a prior treatment ensuring the elimination of these additives. Moreover, these additives can migrate in the environment surrounding the waste storage sites and degrade by exposure to solar radiation to generate more harmful substances such as polybrominated dibenzofurans (PBDF).The aim of this thesis, which is part of the Interreg VALBREE project, is to study the feasibility of a decontamination process of plastic waste by irradiation with UV-visible radiation, a technique that has proven promising for the abatement of brominated molecules incorporated in the plastic material, in order to allow the revalorization of the latter by mechanical recycling. The efficiency of the radiative treatment in the photodegradation of brominated flame retardants in model polymer/RFB mixtures has been confirmed by different spectroscopic and chromatographic analysis techniques. Thus, the evaluation of the state of the plastic material after irradiation allowed to optimize the treatment conditions in order to avoid the deterioration of the properties of the decontaminated plastics
Maris, 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.
Full textThe 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.
Full textBrominated 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
Aït, Amer Abdelaziz. "Broyage et séparation des matériaux polymériques sans fragilisation cryogénique : approche fractographique du réacteur de division et transposition des techniques métallurgiques de séparation." Montpellier 2, 1997. http://www.theses.fr/1997MON20130.
Full textTraore, Brahiman. "Elaboration et caractérisation d’une structure composite (sable et déchets plastiques recyclés) : Amélioration de la résistance par des charges en argiles." Thesis, Bourgogne Franche-Comté, 2018. http://www.theses.fr/2018UBFCA029/document.
Full textThis project aims at conceiving(designing) one paves with plastic waste got back in the discharges and with mixture of sand and gravel. This pavement that must be of use to the realization of pavements and public highways, must thus be capable of answering the technical conditions of its use. However, the fabrication method and the used material(equipment) must be rather simple to allow its fast handling by little qualified workers and a low(weak) production cost to be economically competitive. Pavements will thus be tested to identify their performance at the same time mechanical and physical then used on life-size to understand(include) their ageing because of their wear. Finally, an equipment(casting off) will have risen for a transfer of finalized(worked out) technology
Monsaingeon, Baptiste. "Le déchet durable : éléments pour une socio-anthropologie du déchet ménager." Thesis, Paris 1, 2014. http://www.theses.fr/2014PA010654/document.
Full textOver the past forty years, household waste and its management have been assimilated to a global environmental issue. While sustainable development is becoming a pressing issue, the number of our garbage bins is increasing. So what is it that we aim to preserve when we are dutifully sorting out our garbage? Between the very local gesture of discarding and the global environmental issue, there is a tremendous gap. The link between everyday practices of waste and environmental issues is so underdetermined that it has to be analysed. The main claim of this dissertation is that despite a growing concern with environment and the increasing time and space devoted to waste management, we remain unaware of the social, technological and material issues at stake. Because of this individual and collective blindness waste is not seen as a clue: as its memorial function is neglected waste is still perceived as what has to disappear, as a material quantity that has to be controlled and eliminated. The en-durable waste is an oxymoron that leads to further investigate the multiple modes of presence of waste in today’s life. Inspired by the personae of the ragman and of the archaeologist, this socio-anthropological investigation follows household waste from uncertain oceans of plastic to few Parisian vermicompost bins. Based on this confrontation to the materiality of waste, to the territories and to practices of wasting, this dissertation claims that where the unavoidable presence of waste is described as a problem, it is question of our presence to waste that is at stake
Santander, Tapia Pavlo Javier Alejandro. "Valorisation en circuit court de déchets thermoplastiques pour la conception par impression 3D de structures composites." Electronic Thesis or Diss., Université de Lorraine, 2020. http://www.theses.fr/2020LORR0229.
Full textThe management of plastic waste is a major problem that has yet to be resolved with a view to a more sustainable development of human activities. Among the possible solutions, recycling is an interesting way to recycle non-renewable materials. After decades of centralized recycling, there is now a growing interest in approaches based on distributed recycling. Taking advantage of the democratization of open-source 3D printing technologies (OS), we propose to revalorize locally the plastics that can be used by these technologies. This distributed recycling can be considered as a kind of "intelligent network", composed of small coordinated recycling units, which provide recycled plastic filaments to the 3D printing community. The technical feasibility of this plastic recycling approach has been proven in the literature. However, its feasibility from a supply chain and logistics perspective has yet to be demonstrated. In order to address this issue, this research thesis seeks to provide answers to the following research question: Under what conditions is it possible to deploy a sustainable network of local and distributed plastics recycling using open-source 3D printing technologies? Taking into account the above, this research work aims to propose a framework for the analysis and evaluation, from a sustainability perspective, of the distributed plastic recycling approach for 3D printing. The proposed evaluation framework combines optimization and system dynamics in the evaluation of the sustainability of the recycling approach. The application of the evaluation framework to a specific case study of a university seeking to implement a distributed recycling demonstrator to recover 3D printing waste from middle and high schools in northeastern France illustrated the feasibility from a sustainability perspective
Books on the topic "Matières plastiques – Déchets – Recyclage"
R, Brenniman Gary, and Hallenbeck William H, eds. Mixed plastics recycling technology. Park Ridge, N.J., U.S.A: Noyes Data Corp., 1992.
Find full textGalatea, Maman, ed. The plastic bag war: Paradoxes for the eco-citizen. [Paris]: Éd. Yago, 2006.
Find full text1945-, Albertsson Ann-Christine, and Huang Samuel J. 1937-, eds. Degradable polymers, recycling, andplastics waste management. New York: Marcel Dekker, 1995.
Find full textChanda, Manas. Plastics Fabrication and Recycling. London: Taylor and Francis, 2008.
Find full textPlastic-free: How I kicked the plastic habit and you can too. New York: Skyhorse Pub., 2012.
Find full textEckehard, Weigand, ed. Automotive polyurethanes. Lancaster, Penn: Technomic Pub. Co., 2001.
Find full textLeidner, Jacob. Plastics Waste: Recovery of Economic Value (Plastics Engineering). Marcel Dekker Inc, 2004.
Find full textWhy Waste It? (Information Books - Science - Why Waste It?). Hodder Wayland, 1994.
Find full textBook chapters on the topic "Matières plastiques – Déchets – Recyclage"
SANTANDER TAPIA, Pavlo, Fabio CRUZ SANCHEZ, Hakim BOUDAOUD, and Mauricio CAMARGO. "Cadre d’évaluation holistique du recyclage distribué par l’impression 3D open source." In Le recyclage, enjeu pour l’économie circulaire, 191–218. ISTE Group, 2023. http://dx.doi.org/10.51926/iste.9162.ch8.
Full textReports on the topic "Matières plastiques – Déchets – Recyclage"
Melanie, Haupt, and Hellweg Stefanie. Synthèse du projet conjoint du PNR 70 «Gestion des déchets pour soutenir la transition énergétique (wastEturn)». Swiss National Science Foundation (SNSF), January 2020. http://dx.doi.org/10.46446/publication_pnr70_pnr71.2020.2.fr.
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