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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Numerical Study of Electric Field Enhanced Combustion

Han, Jie 26 December 2016 (has links)
Electric fields can be used to change and control flame properties, for example changing flame speed, enhancing flame stability, or reducing pollutant emission. The ions generated in flames are believed to play the primary role. Although experiments have been carried out to study electric field enhanced combustion, they are not sufficient to explain how the ions in a flame are affected by an electric field. It is therefore necessary to investigate the problem through numerical simulations. In the present work, the electric structure of stabilized CH4/air premixed flames at atmospheric pressure within a direct current field is studied using numerical simulations. This study consists of three parts. First, the transport equations are derived from the Boltzmann kinetic equation for each individual species. Second, a general method for computing the diffusivity and mobility of ions in a gas mixture is introduced. Third, the mechanisms for neutral and charged species are improved to give better predictions of the concentrations of charged species, based on experimental data. Following from this, comprehensive numerical results are presented, including the concentrations and fluxes of charged species, the distributions of the electric field and electric potential, and the electric current-voltage relation. Two new concepts introduced with the numerical results are the plasma sheath and dead zone in the premixed flame. A reactive plasma sheath and a Boltzmann relation sheath are discovered in the region near the electrodes. The plasma sheath penetrates into the flame gas when a voltage is applied, and penetrating further if the voltage is higher. The zone outside the region of sheath penetration is defined as the dead zone. With the two concepts, analytical solutions for the electric field, electric potential and current-voltage curve are derived. The solutions directly describe the electric structure of a premixed flame subject to a DC field. These analytical solutions, together with the discovery of the plasma sheath and dead zone in flames, are the novel contributions of this work.
2

Développement du couplage électrophorèse capillaire-spectrométrie de masse à source MALDI : applications à la caractérisation de protéines / Development of coupling capillary electrophoresis - mass spectrometry MALDI source : applications to the characterization of proteins

Biacchi, Michael 23 September 2014 (has links)
Au cours de ce travail, nous avons mis au point une nouvelle interface CE/MALDI-MS automatisée, équipée d’une cellule UV/visible déportée, et d’une distribution automatique de matrice intégrée. Ce nouveau système a été évalué sur des mélanges différents de protéines entières, de digestats de protéines et d’anticorps monoclonaux (mAbs). Les résultats obtenus lors de cette évaluation ont montré la complémentarité de la nouvelle interface avec les systèmes analytiques classiques. De plus, nous avons montré la première séparation et analyse de mAbs entier par CE/MALDI-MS. Dans un second travail, la nouvelle interface a été utilisée pour effectuer la première analyse Top Down de proteine entière et de mAbs par collecte et enrichissement de fraction. Cette stratégie a montré la répétabilité du système permettant de séparer des analytes d’intérêt et d’enrichir les dépôts MALDI jusqu'à de très hautes quantités d’analytes permettant l’obtention de spectre Top Down. Au cours du troisième travail, le nouveau système CE/MALDI-MS a été utilisé dans une stratégie originale à 2 dimensions de séparation et de collecte d’isoformes de mAbs entiers ou partiellement digérés suivi d’infusions et analyses à l’aide du nanosprayer CESI. Pour cela, nous avons mis au point des conditions électrophorétiques dit « asymétriques » séparant les mAbs dans des conditions très salées mais collectés dans un milieu compatible avec l’ESI-MS. Cette stratégie inédite a permis d’effectuer la première séparation et caractérisation de mAbs par CE-MS. Parallèlement, nous avons mis au point le premier dosage plasmatique d’ITPP par MALDI-TOF MS et surtout la création de CEToolbox, une application Androïd gratuite pour smartphone et tablette permettant le calcul des principales grandeurs mathématiques pour la caractérisation et l’optimisation des séparations par électrophorèse capillaire. / In this work, we developed a new interface CE/MALDI-MS automated, equipped with a UV/visible cell remote, and integrated automatic distribution of matrix. This new system has been evaluated on different mixtures of intact protein, digested protein and monoclonal antibodies (mAbs). The results obtained during this evaluation showed the complementarity of the new interface with conventional analytical systems. Furthermore, we have shown the first separation and analysis of mAbs by CE/MALDI-MS. In a second work, the new interface was used to perform the first Top Down analysis for intact protein and mAbs by fraction collection and enrichment. This strategy has shown the repeatability of the system for separating analytes and the enrichissment the MALDI deposits up to very high amounts compatible for Top Down approach. In the third work, the new system CE/MALDI-MS has been used in an original 2-dimensional strategy of separating and collecting intact mAbs isoforms or partially digested followed by infusions and analyzes with CESI nanosprayer. For this, we have developed electrophoretic condition so-called "asymmetric" allowing the separation of mAbs under very salty conditions but collected in a totally compatible solution with ESI-MS. This novel strategy allowed for the first separation and characterization of mAbs by CE-MS. Meanwhile, we have developed the first plasma level of ITPP by MALDI-TOF-MS and particularly the creation of CEToolbox as a Free Android application for smartphone and tablet enabling the calculation of the main mathematical quantities for characterization and optimization of CE separations.

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