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Academic literature on the topic 'Zéro volt'
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Journal articles on the topic "Zéro volt"
Bécheau, Emmanuel, Fanny Pougeoise, and Leïla Pueyo. "La production de rhum agricole en Martinique : objectif zéro déchet et neutralité carbone." Annales des Mines - Réalités industrielles Août 2023, no. 3 (August 4, 2023): 57–64. http://dx.doi.org/10.3917/rindu1.233.0057.
Full textGrinbaum, M., M. Dubernet, V. Bouazza, E. Debez, and V. Lempereur. "Résidus phytosanitaires dans les vins : état des lieux, analyses et expertise." BIO Web of Conferences 12 (2019): 04010. http://dx.doi.org/10.1051/bioconf/20191204010.
Full textFricker, Karen, and Rémy Charest. "À l’heure zéro de la culture (dés)unie. Problèmes de représentation dans Zulu Time de Robert Lepage et Ex Machina." Globe 11, no. 2 (February 8, 2011): 81–116. http://dx.doi.org/10.7202/1000523ar.
Full textNovák, Zsuzsanna, and Tibor Tatay. "A portfóliódöntések és a nulla kamatláb környezet összefüggései az euróövezet országaiban." Statisztikai Szemle 101, no. 9 (2023): 793–818. http://dx.doi.org/10.20311/stat2023.09.hu0793.
Full textDissertations / Theses on the topic "Zéro volt"
Desai, Parth. "Achieving Na-ion Battery Advancements Through Decoding Degradation Pathways and Electrolyte Engineering." Electronic Thesis or Diss., Sorbonne université, 2023. http://www.theses.fr/2023SORUS681.
Full textThe growing dependence on lithium-ion batteries for energy storage necessitates the exploration of alternative chemistries due to the limited and geopolitically sensitive lithium resources. The sodium-ion battery, considered a sustainable complement with abundant sodium precursors, is swiftly progressing towards commercialization. Following a comparative analysis of critical parameters, the Na3V2(PO4)2F3(NVPF)|hard carbon(HC) chemistry was selected for NVPF material's structural durability, robust power performance, and air/water stability. This thesis comprehensively navigates this technology by investigating degradation mechanisms, improving performance in lab-scale coin cells, and seamlessly transferring findings to commercial 18650 cells. At first, NVPF material instabilities were examined, with elevated temperatures causing vanadium dissolution, leading to NVPF electrode degradation, electrolyte instability, and finally, contamination of HC electrode. Imide co-salts and uniform carbon coating mitigate vanadium dissolution yet fail to suppress undesired electrolyte reactions. Hence, meticulously designed Gen-3 electrolytes with additives enhance cells' cycle and calendar life at elevated temperatures without excessive gassing. A low-viscosity methyl acetate cosolvent was infused in the electrolyte to enhance power and low-temperature performance further. The optimized electrolyte demonstrates remarkable cycle life, rate performance, extensive temperature tolerance, and safety, making it suitable for evaluation in commercial scenarios. The thesis concludes with assessing the 0V stability of sodium-ion batteries, comprehending SEI decomposition mechanisms, and proposing remedies. Lastly, future directions are outlined to propel Na-ion battery development and challenge LiFePO4-based Li-ion technology
Books on the topic "Zéro volt"
B, Y. Zéro mort: Dernier volet du Triptyque algérois : [roman]. Paris: Lattès, 2001.
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