Littérature scientifique sur le sujet « Re-vaporisation »
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Articles de revues sur le sujet "Re-vaporisation":
Logan, S. R. « The Rationale of Trouton's Rule and of the Trouton-Hildebrand-Everett Rule ». Zeitschrift für Naturforschung A 51, no 12 (1 décembre 1996) : 1247–48. http://dx.doi.org/10.1515/zna-1996-1215.
Welk, Blayne, Jennifer Reid, Michael Ordon, Hassan Razvi et Jeffrey Campbell. « Population-based assessment of re-treatment and healthcare utilisation after photoselective vaporisation of the prostate or electrosurgical transurethral resection of the prostate ». BJU International 124, no 6 (26 août 2019) : 1047–54. http://dx.doi.org/10.1111/bju.14891.
Kaplan, Steven A. « Re : Holmium Laser Enucleation (HoLEP) and Photoselective Vaporisation of the Prostate (PVP) for Patients with Benign Prostatic Hyperplasia (BPH) and Chronic Urinary Retention ». Journal of Urology 194, no 6 (décembre 2015) : 1701–3. http://dx.doi.org/10.1016/j.juro.2015.09.039.
Coetsee, Theresa, et Frederik De Bruin. « Gas Formation of Cobalt and Copper in the Application of Unconstrained Co-Cr-Al-Cu Metal Powders in Submerged Arc Welding : Gas Phase Thermodynamics and 3D Slag SEM Evidence ». Processes 11, no 4 (5 avril 2023) : 1116. http://dx.doi.org/10.3390/pr11041116.
Kaplan, Steven A. « Re : 180-W XPS GreenLight Laser Vaporisation versus Transurethral Resection of the Prostate for the Treatment of Benign Prostatic Obstruction : 6-Month Safety and Efficacy Results of a European Multicentre Randomised Trial—the GOLIATH Study ». Journal of Urology 194, no 2 (août 2015) : 480–81. http://dx.doi.org/10.1016/j.juro.2015.04.046.
Woo, Henry H., et Alexander Bachmann. « Re : Stephan Madersbacher. After Three Randomised Controlled Trials Comparing 120-W High-performance-system Potassium-titanyl-phosphate Laser Vaporisation to Transurethral Resection of the Prostate (TURP), Is This Procedure Finally First-line, Outdated, or Still Not Surpassing TURP ? Eur Urol 2012;61:1174–6 ». European Urology 62, no 1 (juillet 2012) : e23-e24. http://dx.doi.org/10.1016/j.eururo.2012.03.056.
Cornu, Jean-Nicolas, Eric Vicaut, Mounir Aout et Bertrand Lukacs. « Reply from Authors re : Stephan Madersbacher. After Three Randomised Controlled Trials Comparing 120-W High-Performance-System Potassium-Titanyl-Phosphate Laser Vaporisation to Transurethral Resection of the Prostate (TURP), Is This Procedure Finally First-Line, Outdated, or Still Not Surpassing TURP ? Eur Urol 2012;61:1174–6 ». European Urology 61, no 6 (juin 2012) : 1176–77. http://dx.doi.org/10.1016/j.eururo.2012.03.013.
Wu, Xiaolang, Jin Zhao, Shunzo Shimai, Xiaojian Mao, Jian Zhang et Shiwei Wang. « Re-fluidising the aged gel for high-density alumina green body ». Journal of Advanced Ceramics, 21 juillet 2022. http://dx.doi.org/10.1007/s40145-022-0615-1.
Njoroge, Margaret Mendi, Ulrike Fillinger, Adam Saddler, Sarah Moore, Willem Takken, Joop J. A. van Loon et Alexandra Hiscox. « Evaluating putative repellent ‘push’ and attractive ‘pull’ components for manipulating the odour orientation of host-seeking malaria vectors in the peri-domestic space ». Parasites & ; Vectors 14, no 1 (11 janvier 2021). http://dx.doi.org/10.1186/s13071-020-04556-7.
Thèses sur le sujet "Re-vaporisation":
Obada, Dorel. « Evaluation de rejets moyen-terme en situation accidentelle grave d’un réacteur à eau pressurisée : étude expérimentale de la re-vaporisation de dépôts de produits de fission (Cs, I) ». Thesis, Lille 1, 2017. http://www.theses.fr/2017LIL10148/document.
In case of a severe nuclear accident on a Pressurized Water Reactor, radioactive fission products can be released in the environment and represent a hazard for the human. In order to better predict the progress of the accident and the release of fission products with the use of dedicated simulation tools, the knowledge of all physicochemical phenomena is necessary. This research is focused on the re-vaporisation, up to 750°C, of iodine-containing fission products’ deposits, particularly CsI and AgI, from the surface of the primary circuit, composed of partially oxidized 304L, 316L steels and Inconel 600 alloy. The results have revealed a strong influence of the re-vaporisation atmosphere composition on the quantities and the chemical species nature of re-vaporized caesium and iodine. In steam atmosphere, iodine and caesium are released integrally from the surface, mainly as CsI. In presence of air, iodine is released integrally, mainly as I2(g), whereas caesium is partially retained on the surface of the steel as caesium chromate, resulting from the interaction between caesium and chromium (III) oxide present in the oxide layer. The use of an online optical spectroscopic technique such as IBB-CEAS allowed to follow the I2(g) re-vaporisation kinetics. The latter exhibits two release peaks, suggesting several mechanisms leading to I2(g) formation. A similar result has been observed during the re-vaporisation of AgI in presence of air. Finally, thermodynamic equilibrium computations have been performed in order to identify the main reaction pathways leading to the formation of gaseous molecular iodine in presence of air
Obada, Dorel. « Evaluation de rejets moyen-terme en situation accidentelle grave d’un réacteur à eau pressurisée : étude expérimentale de la re-vaporisation de dépôts de produits de fission (Cs, I) ». Electronic Thesis or Diss., Lille 1, 2017. http://www.theses.fr/2017LIL10148.
In case of a severe nuclear accident on a Pressurized Water Reactor, radioactive fission products can be released in the environment and represent a hazard for the human. In order to better predict the progress of the accident and the release of fission products with the use of dedicated simulation tools, the knowledge of all physicochemical phenomena is necessary. This research is focused on the re-vaporisation, up to 750°C, of iodine-containing fission products’ deposits, particularly CsI and AgI, from the surface of the primary circuit, composed of partially oxidized 304L, 316L steels and Inconel 600 alloy. The results have revealed a strong influence of the re-vaporisation atmosphere composition on the quantities and the chemical species nature of re-vaporized caesium and iodine. In steam atmosphere, iodine and caesium are released integrally from the surface, mainly as CsI. In presence of air, iodine is released integrally, mainly as I2(g), whereas caesium is partially retained on the surface of the steel as caesium chromate, resulting from the interaction between caesium and chromium (III) oxide present in the oxide layer. The use of an online optical spectroscopic technique such as IBB-CEAS allowed to follow the I2(g) re-vaporisation kinetics. The latter exhibits two release peaks, suggesting several mechanisms leading to I2(g) formation. A similar result has been observed during the re-vaporisation of AgI in presence of air. Finally, thermodynamic equilibrium computations have been performed in order to identify the main reaction pathways leading to the formation of gaseous molecular iodine in presence of air
Actes de conférences sur le sujet "Re-vaporisation":
Probert, Thomas Arne. « Vaporisation and Condensation in the Feed-Water System in the Turbine Building : How the Phenomenon Arises and How it Can Be Avoided ». Dans 2018 26th International Conference on Nuclear Engineering. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/icone26-81769.