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Academic literature on the topic 'Ressources énergétiques – Environnement'
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Journal articles on the topic "Ressources énergétiques – Environnement"
Bahati, Ass Serge Kambale, Patrick Mumbere Mubekwa, and Prof Tondozi Keto. "Valorisation Energétique Des Déchets Solides Dans La Ville De Kisangani / Commune De Makiso." International Journal of Progressive Sciences and Technologies 41, no. 1 (October 31, 2023): 228. http://dx.doi.org/10.52155/ijpsat.v41.1.5668.
Full textMbikay Kadima, Pierrot. "Enquête sur l’impact socio-environnemental de l’utilisation de bois et stratégies de remédiation dans les ménages de la ville de Kisangani (Province de la Tshopo) en République Démocratique du Congo." Revue Congolaise des Sciences & Technologies 2, no. 4 (February 10, 2022): 516–23. http://dx.doi.org/10.59228/rcst.023.v2.i4.58.
Full textSimard, Louis. "L’acceptabilité sociale : trajectoire d’une nouvelle norme d’action publique." Articles non thématiques 40, no. 3 (October 28, 2021): 29–62. http://dx.doi.org/10.7202/1083023ar.
Full textBonhomme, Gérard. "Transition énergétique - les défis de la défossilisation." Reflets de la physique, no. 77 (February 2024): 4–5. http://dx.doi.org/10.1051/refdp/202477004.
Full textBénagabou, Ouèbounga Ida, Mélanie Blanchard, Valérie M. C. Bougouma Yaméogo, Jonathan Vayssières, Mathieu Vigne, Eric Vall, Philippe Lecomte, and Hassan Bismarck Nacro. "L’intégration agriculture-élevage améliore-t-elle l’efficience, le recyclage et l’autonomie énergétique brute des exploitations familiales mixtes au Burkina Faso ?" Revue d’élevage et de médecine vétérinaire des pays tropicaux 70, no. 2 (December 11, 2017): 31. http://dx.doi.org/10.19182/remvt.31479.
Full textPHOCAS, F., J. AGABRIEL, M. DUPONT-NIVET, J. GEURDEN, F. MÉDALE, S. MIGNON-GRASTEAU, H. GILBERT, and J. Y. DOURMAD. "Le phénotypage de l’efficacité alimentaire et de ses composantes, une nécessité pour accroître l’efficience des productions animales." INRAE Productions Animales 27, no. 3 (August 28, 2014): 235–48. http://dx.doi.org/10.20870/productions-animales.2014.27.3.3070.
Full textBLANC, F., F. BOCQUIER, N. DEBUS, J. AGABRIEL, P. D’HOUR, and Y. CHILLIARD. "La pérennité et la durabilité des élevages de ruminants dépendent des capacités adaptatives des femelles." INRAE Productions Animales 17, no. 4 (October 5, 2004): 287–302. http://dx.doi.org/10.20870/productions-animales.2004.17.4.3604.
Full textRomán Segura, María del Socorro. "Proyecto ATG: Medio ambiente y afectaciones sociales a comunidades totonacas de Papantla, Veracruz, México." Clivajes. Revista de Ciencias Sociales, no. 9 (April 24, 2018): 153–69. http://dx.doi.org/10.25009/clivajes-rcs.v0i9.2545.
Full textBEN ALI, Fouad, and Ali Abdelmonem ZRIBI. "ARCHITECTURE TROGLODYTIQUE." URBAN ART BIO 2, no. 1 (June 4, 2023). http://dx.doi.org/10.35788/uab.v2i1.95.
Full textDupont, Louis. "Évaluation des effets dynamiques de la croissance économique, de la consommation d’énergie fossile, de la productivité agricole, et du tourisme sur les émissions de CO2 à la Dominique." Études caribéennes 57-58 (2024). http://dx.doi.org/10.4000/etudescaribeennes.30128.
Full textDissertations / Theses on the topic "Ressources énergétiques – Environnement"
Levarlet, François. "Les modèles éco-énergétiques à l'interface économie-environnement." Paris 1, 1996. http://www.theses.fr/1996PA010060.
Full textOur thesis deals with ecological-economic modeling. It develops a typology in this field of research and suggets two classes of environmental-economic interface : "weak interface" and "strong interface". With this categories we are able to analyse two kinds of eco-energetic models : ecco model and odum's models. Our work takes specially care with odum's approach. We build an account model for the french case and insert our work in sustainable development field
Dessus, Benjamin. "Systèmes énergétiques pour un développement durable." Grenoble 2, 1995. http://www.theses.fr/1995GRE21007.
Full textThe work is an attempt to answer the following question : is it possible to design a world energy system able to fulfill the needs of a developed humanity of 11 billion inhabitants in 2100, without taking the risk to destroy our planet or to place our reliance on science or technology ruptures that we are unable to predict? this question can be split in three questions : are they technical possibilities and sufficient energy resources? if the techical feasability is demonstrated what about the economic aspect? if the technical and economic credibility are demonstrated, what are the barriers to the implementation of strategies and how to overpassthem? the technical feasability is demonstrated through the description of the scenario noe (new options for energy) which shows that it is possible to satisfy the energy needs of 11 billion people in 2100 without big global environment problems. This scenario relies on energy efficiency and diversification ef energy resources. The economical credibility is deminstrated through the analysis of comaprative expenses of this scenario and of one of the scenarios of the world energy council. This calulation shows that the noe scenario is less expensive for discount rates up to ten per cent. The noe scenario appears indeed as a win-win scenario. Social and policy barriers are analysed and some policy proposal are made to overpass the barriers
Bonis, Anne. "L'implantation des installations énergétiques à l'épreuve du droit : l'exemple des énergies marines renouvelables en mer." Versailles-St Quentin en Yvelines, 2013. http://www.theses.fr/2013VERS003S.
Full textThe first renewable marine energy projects were first presented during the so called Eole program in 1996, and then during a call for bids on offshore wind-power in 2004. Despite these initiatives and a second call for bids in 2011, only a few prototypes are being tested at the beginning of 2013. This study aims to determine if the French legislation is adapted to this emerging new activity of renewable marine energy installation implementation. The results of three-year research show that several advances have contributed to defining a legal framework favorable to the implementation of renewable marine energy production installation; yet, their legal regime has not been finalized. Nevertheless, a comparison with maritime and coastal legislations reveals solutions are worth considering and possible. As a result, an intervention from legislative or parliamentary authorities seems necessary to simplify the implementation of projects and to limit the risks of legal disputes
Grammatico-Vidal, Laetitia. "Les moyens juridiques du développement énergétique dans le respect de l'environnement en droit français : recherches sur le droit du développement durable." Montpellier 1, 2003. http://www.theses.fr/2003MON10031.
Full textGlogic, Edis. "Vers des matériaux énergétiques durables : élargissement de l'analyse du cycle de vie pour le développement de technologies émergentes et des choix économes en ressources." Thesis, Bordeaux, 2019. https://tel.archives-ouvertes.fr/tel-02869841.
Full textEnergy materials are particularly important from a sustainability perspective for advancing renewable energy systems, including energy production and storage. Their appropriate use and development require quantitative assessment methods. Life Cycle Assessment (LCA) is a method to support sustainable development that can be used to identify environmental hotspots and compare different technologies. The purpose of this research is to support development of several energy materials and make LCA a more relevant tool for sustainability assessment by extending its use in two emerging directions: assessment of technologies at the early stage of development, and by supporting more resource-effective choices for a circular economy.The research objectives focus on informing the development of technologies and identifying methodological challenges and opportunities by applying LCA to three energy-technology case studies, each at a different technological maturity level. In the first case study, alkaline batteries, currently at a high maturity level (incumbent products), are evaluated using LCA in combination with a circular economy indicator, the Material Circularity Indicator (MCI). The aim was to investigate opportunities to combine the two methods, while considering trade-offs between indicators for different strategies for battery design and management. In the second case study, nickel-cobalt hydroxide charge storage electrodes, currently at a low maturity level (laboratory-scale), are evaluated to investigate environmental hotspots and preferred synthesis route. In the third case study, organic photovoltaic portable chargers for small electronics, currently at a medium maturity level (pilot-scale), are evaluated for replacing conventional electricity grid for charging a mobile phone
Dupré, la Tour Marie-Alix. "Towards a Decarbonized Energy System in Europe in 2050 : Impact of Vector Coupling and Renewable Deployment Limits." Electronic Thesis or Diss., Paris, EHESS, 2023. http://www.theses.fr/2023EHES0014.
Full textTo address climate change, Europe is committed to a decarbonized energy system by 2050.The power system has a large potential for decarbonization. It can thus contribute to the decarbonization of other vectors (hydrogen for example), which will therefore tend to become more electrified. Therefore, this thesis has focused on the decarbonization of the power system on the one hand, and the interaction between the various energy vectors on the other.The decarbonization of the power vector will involve the use of renewable energies. However, the studies that evaluate their potential obtain very different values. In the first chapter, which consisted of a systematic literature review of wind and photovoltaic studies of potential in Europe, the variability of these values was examined. The areal limits of the potentials are not restrictive, and the variability of the values is due to the addition of socio-political criteria to the calculations of potential. Ultimately, the limit to the development of renewables will not be technical feasibility but political and societal will and limits of the industrial sector, including the availability of the necessary natural resources (metals, etc.).In a second chapter, the operation and prices of this coupled system with fixed capacities were studied. The influence of the couplings on the prices of the energy vectors was underlined. In particular, the flexibility of the demand for synthesis gas (via electrolysis) could set the electricity prices on a majority of the time steps of the year. The importance of seasonal stock management in the formation of gas prices, and therefore electricity prices, was highlighted. To operate optimally, such a system requires a high level of coordination between vectors. Variants that degrade coordination show a significant increase in the operating costs of the energy system.Finally, a third chapter addressed the consequences of energy couplings on the system flexibility requirements. Variants on each vector were analyzed through the evaluation of the flexibility needs based on indicators on several time scales. In particular, the interest of coordination between vectors was confirmed: it also avoids massive investments
Poline, Marie. "Contribution aux méthodes de conception et de gestion des systèmes énergétiques multi-sources par optimisation systémique : application aux trains hybrides électrique autonomes." Electronic Thesis or Diss., Université Grenoble Alpes (ComUE), 2018. http://www.theses.fr/2018GREAT099.
Full textIn France, there are two traction modes for railway: the diesel and electric traction. Each mode has its own issues. For diesel, the increasing control of the greenhouse gas emissions imposes to evolve this type of train to a less polluting solution. For electric traction, the energy consumption creates a voltage drop which can cause a traffic slowdown, which will limit the traffic development. The studied solution by SNCF is the hybridization of the train (adding storage system).Thus, these works have the objective to build a method to do the pre-sizing of storage systems embedded in trains. Moreover, to take into account the mutual influence of the sizing and the energy management, this last one is included in the sizing model. An optimization algorithm solves the global model.The method has been developed for the two traction modes (diesel and electric) and the optimization has been made with SQP algorithm (Sequential Quadratic Programming)
Adès, Julie. "L'impact du cadre réglementaire fédéral de réduction d'émissions de gaz à effet de serre de 2007 sur les choix des sources d'énergie de l'industrie québécoise des pâtes et papiers." Thesis, Université Laval, 2010. http://www.theses.ulaval.ca/2010/26836/26836.pdf.
Full textHuitelec, Richard. "Le développement durable et la gestion locale des ressources énergétiques." Bordeaux 4, 2006. http://www.theses.fr/2006BOR40011.
Full textFerrari, Sylvie. "Étude économique des ressources énergétiques dans le cadre d'une approche globale intégrant l'environnement." Toulouse 1, 1992. http://www.theses.fr/1992TOU10024.
Full textThe energetic system deeply disturbs biosphere equilibriums. Drawing a lesson from thermodynamic and ecological principles, the energetic system appears as an open system. It draws organized resources -of low entropy- from the environment and releases wastes -disorganized elements of high entropy. Consequently, it implies an irreversible increase of natural environment entropy. However, the control of the entropic evolution is possible if it gives up the evolution path on which it stands, and to be on its way towards a real coevolution and a flexible evolution path ensuring the perenniality of energetic patrimony for the future generations
Books on the topic "Ressources énergétiques – Environnement"
Pillet, Gonzague. E3: Enérgie, écologie, économie. Genève: Georg, 1987.
Find full textMyriam, De Visscher, ed. Les ressources futures. Paris: Éditions Gamma, 1994.
Find full textCanada, Canada Environment. A decade of achievement : environment and energy research & development =: Dix années de succès : recherche et développement dans le domaine de l'environnement et de l'énergie. Hull, Qué: Environment Canada = Environnement Canada, 1989.
Find full textSteve, Parker. Énergies nouvelles. Bonneuil-les-Eaux [France]: Gamma, 2004.
Find full text1932-, Reeves Hubert. Mal de terre. Paris: Éditions Points, 2015.
Find full textSathis Kumar, G., 1981- author, ed. Energy, environment and sustainable development: Issues and policies. New Delhi: Regal Publications, 2009.
Find full textCanada, Canada Industry, Industry Canada Research Publications Program., Canada Industrie Canada, and Programme des publications de recherche d'Industrie Canada., eds. Sectoral impacts of Kyoto compliance =: Répercussions sectorielles de l'application du protocole de Kyoto. Ottawa, Ont: Industry Canada = Industrie Canada, 2001.
Find full textChristensen, John W. Global science: Energy, resources, environment. 6th ed. Dubuque, Iowa: Kendall/Hunt Pub. Co., 2006.
Find full textL, Christensen Teri, ed. Global science: Earth/environmental systems science. 7th ed. Dubuque, Iowa: Kendall/Hunt Pub. Co., 2009.
Find full textChristensen, John W. Global science: Energy, resources, environment. 3rd ed. Dubuque, Iowa: Kendall/Hunt Pub. Co., 1991.
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