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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.
71

Modeling Of Liquid Flow In A Packed Bed Under Influence Of Gas Flow

Singh, Vikrant 09 1900 (has links)
The aim of the current study is to model (non-wetting) liquid flow in a packed bed under the influence of gas flow. It has been observed experimentally that non-wetting liquid flows in a packed bed in form of small droplets and rivulets falling through the void regions. Continuum models have not been successful in predicting liquid flow paths when the liquid is injected through a point source in the packed bed. In the current study, we present a discrete deterministic model for modeling the liquid flow in a packed bed, under the influence of gas flow. When a high velocity gas blast in injected into a dry packed bed, a cavity or a void is formed in front of the nozzle. The cavity size increases with increasing gas velocity and exhibits hystersis in size upon increasing and decreasing gas flow rate. The cavity size is very important in determining the gas penetration into the packed bed. A proper gas flow profile prediction is necessary for determining it’s effect on the liquid flow behavior. Attempts at modeling cavity sizes have mostly been confined to experimental studies and development of correlations. Different correlations show different dependence on operating as well as bed parameters and a fundamental understanding of the cavity formation and hystersis phenomena is missing. We adopt a combined Eulerean-Lagrangian approach to study the above mentioned phenomena mathematically. Gas is modeled as a continua and solid as discrete (soft sphere D.E.M. approach). Hystersis and cavity formation studies are carried out in a 2D-slot rectangular packed bed. A discrete deterministic liquid flow model (developed and validated under structured packing conditions using x-ray radiography flow visualization technique), is used to study the effect of presence of liquid on the dry bed void size, when liquid is injected in a packed bed through a point source. It is found that the gas pushes the liquid away from the nozzle side wall. Also, the cavity sizes during gas velocity decreasing case are found to be larger in size than the void size obtained during velocity increasing case for the same inlet gas flow rate. This difference is void size leads to more gas penetration into the bed and thus more liquid shift away from the nozzle side wall. Presence of liquid is found to affect the void size (compared to dry bed size) negligibly.
72

Heat transfer coefficients of particulate in tubular heat exchangers

Nguyen, Clayton Ma 21 September 2015 (has links)
This experimental study explores the heat transfer from heated bare and finned tubular surfaces to particulates in packed bed cross flow. The results from this experiment will be used to help select the type of particulates that will be used. Additionally, these results will assist in estimating heat transfer in prototype and commercial particle to fluid heat exchangers (PFHX). This research is part of larger effort in the use of particulates in concentrating solar power technology. These solid particles are heated by concentrated sunlight to very high temperatures at which they are a suitable heat source for various thermal power and thermochemical cycles. Furthermore, one of the advantages of this concept is the ability to store thermal energy in the solid particles at relatively low cost. However, an important feature of any Particle Heat Receiver (PHR) system is the PFHX, which is the interface between the solar energy system and the thermal power or chemical system. In order to create this system material data is needed for the design and optimization of this PFHX. The paper focuses on the heat transfer properties of particulates to solid surfaces under plug flow conditions. The particulates will be evaluated for three grain sizes of sand and two grain sizes of proppants. These two materials will be tested at one, five and ten millimeters per second in order to see how the various flow rates, which will be required for different loads, will affect the heat transfer coefficient. Finally the heat transfer coefficient will also be evaluated for both finned and non-finned heat exchangers to see the effect that changes in the surface geometry and surface area have on the heat transfer coefficient. The heat transfer coefficient will help determine the appropriate material that will be used in the PHR system.
73

Pressurized low polarity water extraction of lignans, proteins and carbohydrates from flaxseed meal

Ho, Colin Hao Lim 08 January 2007 (has links)
The physiological benefits of flaxseed against pathological disturbances, such as cancers and heart diseases, are mainly attributed to its high lignan content. This study (Experiment 1) examined the application of pressurized low polarity water (PLPW) for extraction of lignans, proteins and carbohydrates from defatted flaxseed meal. Key processing conditions included temperature (130, 160, 190°C), solvent pH (4, 6.5 and 9), solvent to solid ratio (S/S) (90, 150 and 210 mL/g) and introduction of co-packing material (0 and 3 g glass beads). The addition of 3 g glass beads as co-packing material facilitated extraction by enhancing surface contact between the liquid and solid thus shortening extraction time. Elevated temperature accelerated the extraction rate by increasing the solid diffusion coefficient thereby reducing the extraction time. The maximum yield of lignans (99 %) was obtained at temperatures ranging from 160°C to 190°C, with solvent volume of 180 mL (90 mL/g meal) at pH 9. Optimal conditions for protein extraction (70 %) were pH 9, extraction volume of 420 mL (210 mL/g meal) and 160°C. Total carbohydrates yield was maximized at 50% recovery at pH 4 and 160°C with 420 mL solvent (210 mL/g meal). Increased temperature accelerated extraction, thus reducing solvent volume and time to reach equilibrium. For the extraction of proteins, however, a temperature of 130-160°C is recommended, as proteins are vulnerable to thermal degradation due to heat decomposition. The effects of flow rate and geometric dimensions for extraction of lignans and other flaxseed meal bioactives were further investigated in Experiment 2, based on the variables optimized in the previous experiment. Defatted flaxseed meal was extracted with pH 9 buffered water with meal to co-packing glass beads ratio of 1:1.5 at 5.2 MPa (750 psi) and 180°C. The aqueous extracts were analyzed for lignan, protein and carbohydrate using HPLC and colorimetric methods. The optimal extraction yields for lignan, protein and carbohydrate were found at flow rates of 1 to 2 mL/min with bed depth between 20 and 26 cm and a S/S ratio of 40 to 100 mL/g. The combination of low flow rate and high bed depth allowed the use of lower S/S ratio with reduced total solvent volume consumption. This study also evaluated the mass transfer kinetics governing the process of lignan extraction from flaxseed meal in a fixed bed extraction cell. Diffusion of solute into the continuously flowing solvent was mainly responsible for the mass transfer mechanism as flow rate did not increase proportionally with the yield and rate of extraction. The extraction kinetics were studied on the basis of two approaches: Fick’s diffusion equation and a two-site exponential kinetic model. The proposed two-site exponential kinetic model corresponding to the two-stage extraction (rapid and slow phases) successfully described the experimental data. Diffusivities attained from Fick’s diffusion model ranged from 2 x 10-13 to 9 x 10-13 m2s-1 while mass transfer coefficients were between 4.5 x 10-8 and 2.3 x 10-7 ms-1 for extraction of lignans at 180°C, pH 9 with 1:1.5 meal to co-packing material ratio.
74

Amine-Modified SBA-15 (Prepared by Co-condensation) for Adsorption of Copper from Aqueous Solutions

Da'na, Enshirah Azmi Mahmoud 25 January 2012 (has links)
During the last few decades, concerns about water shortages and pollution have increased. Consequently, environmental legislations and regulations for wastewater discharge have been issued. The objective of this work was to contribute in developing an efficient dsorbent for removing heavy metal ions from wastewater. The thesis focused on evaluating amine-modified SBA-15 as copper and other heavy metal ions adsorbent, by determining a variety of adsorptive properties with the aim of gaining a deep understanding of its behavior and to outline its advantages and limitations. The influence of synthesis conditions on the mesostructural stability of the resultant materials after different water treatments was systematically investigated. N2 adsorption results indicated that the material prepared via co-condensation and aged at 100 ºC was not stable and lost its ordered mesoporous structure after contacting water even at room temperature. Aging at 130 ºC and addition of inorganic salts resulted in materials that maintained their mesporous structure under different water treatments. The material synthesized in the presence of KCl was used as adsorbent for the rest of the thesis work. It was shown that the structural collapse observed in amine-modified SBA-15 prepared by conventional method when contacted with aqueous solutions is associated with the drying process, and not the treatment itself. This structural collapse was avoided by replacing water with more volatile liquids such as acetone, before drying. Amino-functionalized SBA-15 was tested for the removal of copper ions from aqueous solutions under different temperatures, pH, initial concentrations and agitation speeds. The obtained results indicated that the amino-functionalized SBA-15 was very efficient and equilibrium was achieved in less than 30 min at room temperature. The adsorption capacity increased dramatically with increasing temperature, initial copper concentration and pH. Under suitable conditions, the material exhibited high adsorption capacity even at very low copper concentration. To further investigate the effect of dsorption parameters, a 24 factorial design experiments were used to screen the factors affecting the copper removal efficiency. All the parameters main effects were significant within a 95 % confidence level. Surface composite design was used to develop a reliable model representing the adsorption process. The statistical tests used proved the adequacy of the second order model. Optimization of the factors levels was carried out and the recommended optimum conditions are: copper concentration of 20 mg/L, adsorbent/solution ratio of 1.57 g/L, pH of 6.5, and T = 294 K with 95% copper removal. The effect of regeneration conditions was investigated after three adsorption–desorption cycles, under different batchwise regeneration conditions. Using a composite surface design methodology, the effect of the regeneration conditions on the performance of the adsorbent was investigated. It was found that all the studied parameters have a statistically significant influence on the working dsorption capacity. With respect to structural properties and amine content, none of the factors was found to be significant. Regeneration using EDTA was found to be more efficient than acid treatment. Amino-functionalized SBA-15 was studied as potential absorbent for Cd2 +, Co2 +, Cu2 +, Zn2 +, Pb2 +, Ni2 +, Al3+ and Cr3 +. The adsorption capacity and selectivity of the material were investigated in single and multi-metal solutions. Using very dilute solutions, i.e., 10 ppm, more than 95% of cations were removed, except for Co2+ and Cr3 +, indicatingthe high sensitivity of the current adsorbent. The adsorption capacities in multi-metal solutions were lower than in single-metal ones because of competition between metallic elements for the amine groups. The adsorbent was not affected in the presence of sodium, potassium, and calcium, indicating that the ionic strength does not affect the adsorption properties. Application of this material to remove copper in tap water, river water, and electroplating wastewater was shown to be successful. Dynamic experiments were carried out on the adsorption of copper ions in a laboratory packed-bed of amine-modified SBA-15. Breakthrough curves were analyzed at different flowrates and after two adsorption-desorption cycles. Furthermore, a model based on mass balance was developed and tested for predicting the breakthrough curves under different experimental conditions used. The results suggested that the developed model was in good agreement with the experimental data. Bed regeneration was performed by circulating 0.2 M EDTA solution through the column for 30 min. Résumé Durant les quelques dernières décennies, les préoccupations concernant les pénuries d'eau et la pollution en général ont augmenté. Par conséquent, des législations et des réglementations environnementales pour les rejets d'eaux usées ont été introduites. L'objectif de ce travail était de contribuer au développement d'un adsorbant efficace pour éliminer les ions de métaux lourds des eaux usées. Cette thèse porte sur l'évaluation de SBA-15 modifiée avec des amines comme adsorbant pour le cuivre et d'autres ions de métaux lourds par la détermination d'une multitude de propriétés d'adsorption dans le but d'acquérir une profonde compréhension de son comportement et d’identifier ses avantages et ses limites. L'influence des conditions de synthèse sur la stabilité des matériaux mésoporeux obtenus après différents traitements a été étudié de façon systématique. Les résultats d'adsorption de N2 ont indiqué que le matériel préparé par co-condensation et vieilli à 100 °C n'était pas stable et a perdu sa structure mésoporeuse ordonnée après avoir été en contact avec l'eau même à température ambiante. Le vieillissement à 130 °C, avec ajout de sels inorganiques, a abouti à des matériaux qui ont maintenu leur structure mésoporeuse sous différents traitements en présence d'eau. Le matériau synthétisé en présence de KCl a été utilisé comme adsorbant pour le reste du travail de cette thèse. Il a été démontré que l'effondrement de la structure observé dans la SBA-15 modifiée aux amines, préparée par la méthode conventionnelle en contact avec des solutions aqueuses est associé avec le processus de séchage, et non le traitement lui-même. Cet effondrement de structure a été évité en remplaçant l'eau avec des liquides plus volatils tels que l'acétone, avant le séchage. La SBA-15 amino-fonctionnalisée a été testée pour l'élimination des ions de cuivre des solutions aqueuses à différentes températures, pH, concentrations initiales et vitesses d'agitation. Les résultats obtenus ont indiqué que la SBA-15 amino-fonctionnalisée était très efficace et l'équilibre a été atteint en moins de 30 min à température ambiante. La capacité d'adsorption a considérablement augmenté avec la température, la concentration initiale de cuivre et le pH. Sous des conditions appropriées, le matériau a manifesté une grande capacité d'adsorption, même à des concentrations très faibles en cuivre. Afin d’étudier l'effet des paramètres d'adsorption, un plan factoriel de 24 expériences a été utilisé pour dépister les facteurs affectant l'efficacité d'élimination du cuivre. Tous les effets principaux des paramètres étaient importants à 95% de niveau de confiance. La méthodologie de la surface composite a été utilisée pour développer un modèle fiable qui représente le processus d'adsorption. Les tests statistiques utilisés ont prouvé la pertinence du modèle de second ordre. L’optimisation des niveaux des facteurs a été effectuée et les conditions optimales recommandées sont: la concentration en cuivre de 20 mg/L, le rapport adsorbant/solution de 1.57 g/L, pH de 6.5 et T = 294 K pour l'élimination de 95% de cuivre. L'effet des conditions de régénération a été étudié après trois cycles d'adsorption-désorption, sous différentes conditions de régénération. En utilisant la méthodologie de la surface composite, l'effet des conditions de régénération sur la performance de l'adsorbant a été étudié. Il a été constaté que tous les paramètres étudiés ont une influence statistiquement significative sur la capacité de travail d'adsorption. En ce qui concerne les propriétés structurelles et la teneur en amine, aucun des facteurs n’a été jugé significatif. La régénération à l'aide d'EDTA a été jugée plus efficace que le traitement acide. La SBA-15 amino-fonctionnalisée a été étudiée comme absorbant potentiel de Cd2+, Co2+, Cu2+, Zn2+, Pb2+, Ni2+, Al3+ and Cr3+. La capacité d'adsorption et la sélectivité du matériau ont été étudiées dans des solutions mono- et multi-métalliques. En utilisant des solutions très diluées, soit 10 ppm, plus de 95% de cations ont été enlevés, sauf pour le Co2+ et Cr3+, indiquant la forte sensibilité de l'adsorbant. Les capacités d'adsorption dans les solutions multi-métalliques étaient inférieures à celles des solutions mono-métalliques en raison de la concurrence entre les éléments métalliques pour les groupes amine. L'adsorbant n'a pas été affecté par la présence de sodium, de potassium et de calcium, ce qui indique que la force ionique n'affecte pas les propriétés d'adsorption. L’usage avec succès de ce matériau pour éliminer le cuivre dans l'eau de robinet, l’eau de rivière et les eaux usées de galvanoplastie a été démontré. Des expériences dynamiques ont été réalisées sur l'adsorption des ions de cuivre par la SBA-15 amine-modifiée sur une colonne à lit fixe de laboratoire. Les courbes de perçage ont été analysées à des débits différents et après deux cycles d'adsorption-désorption. De plus, un modèle basé sur le bilan de matière a été développé et testé pour prédire les courbes de perçage sous les différentes conditions expérimentales utilisées. Les résultats suggèrent que le modèle développé est en bon accord avec les données expérimentales. La régénération du lit a été réalisée en faisant circuler une solution EDTA à 0.2 M à travers la colonne pendant 30 min.
75

Pressurized low polarity water extraction of lignans, proteins and carbohydrates from flaxseed meal

Ho, Colin Hao Lim 08 January 2007 (has links)
The physiological benefits of flaxseed against pathological disturbances, such as cancers and heart diseases, are mainly attributed to its high lignan content. This study (Experiment 1) examined the application of pressurized low polarity water (PLPW) for extraction of lignans, proteins and carbohydrates from defatted flaxseed meal. Key processing conditions included temperature (130, 160, 190°C), solvent pH (4, 6.5 and 9), solvent to solid ratio (S/S) (90, 150 and 210 mL/g) and introduction of co-packing material (0 and 3 g glass beads). The addition of 3 g glass beads as co-packing material facilitated extraction by enhancing surface contact between the liquid and solid thus shortening extraction time. Elevated temperature accelerated the extraction rate by increasing the solid diffusion coefficient thereby reducing the extraction time. The maximum yield of lignans (99 %) was obtained at temperatures ranging from 160°C to 190°C, with solvent volume of 180 mL (90 mL/g meal) at pH 9. Optimal conditions for protein extraction (70 %) were pH 9, extraction volume of 420 mL (210 mL/g meal) and 160°C. Total carbohydrates yield was maximized at 50% recovery at pH 4 and 160°C with 420 mL solvent (210 mL/g meal). Increased temperature accelerated extraction, thus reducing solvent volume and time to reach equilibrium. For the extraction of proteins, however, a temperature of 130-160°C is recommended, as proteins are vulnerable to thermal degradation due to heat decomposition. The effects of flow rate and geometric dimensions for extraction of lignans and other flaxseed meal bioactives were further investigated in Experiment 2, based on the variables optimized in the previous experiment. Defatted flaxseed meal was extracted with pH 9 buffered water with meal to co-packing glass beads ratio of 1:1.5 at 5.2 MPa (750 psi) and 180°C. The aqueous extracts were analyzed for lignan, protein and carbohydrate using HPLC and colorimetric methods. The optimal extraction yields for lignan, protein and carbohydrate were found at flow rates of 1 to 2 mL/min with bed depth between 20 and 26 cm and a S/S ratio of 40 to 100 mL/g. The combination of low flow rate and high bed depth allowed the use of lower S/S ratio with reduced total solvent volume consumption. This study also evaluated the mass transfer kinetics governing the process of lignan extraction from flaxseed meal in a fixed bed extraction cell. Diffusion of solute into the continuously flowing solvent was mainly responsible for the mass transfer mechanism as flow rate did not increase proportionally with the yield and rate of extraction. The extraction kinetics were studied on the basis of two approaches: Fick’s diffusion equation and a two-site exponential kinetic model. The proposed two-site exponential kinetic model corresponding to the two-stage extraction (rapid and slow phases) successfully described the experimental data. Diffusivities attained from Fick’s diffusion model ranged from 2 x 10-13 to 9 x 10-13 m2s-1 while mass transfer coefficients were between 4.5 x 10-8 and 2.3 x 10-7 ms-1 for extraction of lignans at 180°C, pH 9 with 1:1.5 meal to co-packing material ratio.
76

Étude phénoménologique et modélisation d'un réacteur catalytique à membrane pour la valorisation d'eau tritiée / Phenomenological modeling and study of a catalytic membrane reactor for water detritiation

Mascarade, Jérémy 21 April 2015 (has links)
Le tritium est un radioélément produit par fission ternaire ou activation neutronique au sein des réacteurs de fission et utilisé comme combustible dans les machines de fusion (comme, en autres, le JET en Angleterre ou le futur ITER à Cadarache). Des études sont actuellement en cours sur la gestion de cette ressource que ce soit en vue de son utilisation ou de son élimination d’effluents gazeux, liquides ou de déchets. Cette thèse se propose d’étudier la revalorisation du tritium en tant que combustible pour les machines de fusion par le biais d’un Réacteur Catalytique à Membrane (RCM). Celui-ci associe les phénomènes de conversion catalytique de l’eau tritiée, par échange isotopique avec le diprotium selon la réaction générique Q_2 O+H_2⇌H_2 O+Q_2 (Q=H,D ou T), et de perméation sélective, d’une membrane à base de palladium. Ce matériau présente une perméabilité exclusive aux isotopes de l’hydrogène H, D et T par formation respective d’hydrures, deutérures ou tritiures de palladium. Au sein du RCM, ces flux transmembranaires permettent, par retrait des produits de réactions, d’atteindre des taux de conversion plus élevés que dans un réacteur à lit fixe à parois imperméables (loi de Le Chatelier). Au CEA, un banc d’essais utilisant le deutérium comme simulant du tritium a été construit dans l’objectif d’étudier de manière séparée, à l’échelle du laboratoire, ces propriétés de conversion et de perméation ainsi que leur couplage. Grâce au développement d’une méthode permettant l’analyse simultanée des isotopologues de l’eau et du dihydrogène par spectrométrie de masse, il a été montré, d’une part, que le catalyseur à base de nickel utilisé présente une activité suffisante pour que l’état d’équilibre thermodynamique des réactions d’échange isotopique soit atteint très rapidement et d’autre part, que le flux de perméation des isotopologues du dihydrogène suit une loi de Richardson. Des analyses de sensibilités sur les paramètres opératoires montrent que les performances globales du RCM (i.e. facteur de dédeutération) croissent avec la température, la différence de pression transmembranaire, le débit de balayage et le temps de séjour dans le tube, mais passent par un maximum avec la variation de la teneur en vapeur d’eau lourde dans le gaz à traiter. Sur la base de ces observations, un modèle phénoménologique quantifiant les transferts de quantités de mouvement et de matière a été développé. Il rend compte du comportement global observé expérimentalement même si un effort reste à fournir sur la modélisation de la perméation des espèces hétéronucléaires. Grâce aux principes physiques sur lesquels il est basé et aux règles de similitudes existant entre les propriétés physico-chimiques des différents isotopologues (loi de Graham), ce modèle est aisément extrapolable au traitement d’espèces tritiées. / Tritium is produced in light and heavy water reactor fuel by ternary fission or neutron activation. This by-product is used as fuel in fusion fuel reactors such as JET in Culham or ITER in Cadarache (France). The growing interest of this research area will make the tritium fluxes increase; it is then worth addressing the question of its future whether it will be used or flushed out from liquid and gaseous effluents or waste. This thesis studies the recovery of tritium as fuel for fusion machines by means of packed bed membrane reactor (PBMR). Such a reactor combines catalytic conversion of tritiated water thanks to isotope exchange with hydrogen according to the reversible reaction Q_2 O+H_2⇌H_2 O+Q_2 (Q=H,D or T) and selective permeation of Q2 through Pd-based membrane. In fact, palladium has the ability to bond with hydrogen isotopes, creating a selective permeation barrier. In the PBMR, thanks to the reaction products withdrawal, these permeation fluxes drive the heavy water conversion rate, to higher values than those reached in conventional fixed bed reactors (Le Chatelier’s law). In order to study PBMRs, the CEA has built a test bench, using deuterium instead of tritium, allowing the analysis of their conversion and separation performances at the laboratory scale. An in-house method has been developed to determine simultaneously hydrogen and water isotopologues content by mass spectrometer analysis. It was experimentally shown that the activity of Ni-based catalyst used in this study was sufficient to allow the isotope exchange reactions to reach their thermodynamic equilibrium in a very short time. In addition, hydrogen permeation flux was shown to follow a Richardson’s law. Sensitivity studies performed on the PBMR’s main operating parameters revealed that its global performance (i.e. dedeuteration factor) increases with the temperature, the transmembrane pressure difference, the sweep gas flow rate and the residence time in the catalyst particle bed but reaches a maximum with the variation of heavy water content in the feed stream. According to these observations, a phenomenological 2D model, describing momentum and mass transfers, was developed. Simulations results are in good agreement with the general behavior observed experimentally. Results show that modeling of the permeation of heteronuclear species should account for crossed-interactions of the hydrogen isotopologues on the mass transfer of one specie. Nevertheless, thanks to the modeling approach used and the similitude rules existing between isotopologues’ physical and chemical properties (Graham’s law), this model can be easily extrapolated to the processing of tritium containing mixtures
77

Caractérisation hydro-thermique d’un réacteur industriel : vers un nouveau procédé plus performant / Hydro-thermal characterization of an industrial reactor : towards a more efficient process

Zenner, Alexis 29 May 2018 (has links)
L'hydrodynamique et les transferts thermiques dans des réacteurs types lits fixes font l'objet d'études depuis une soixantaine d'années. Les informations fournies par ces travaux sont importantes pour le dimensionnement des réacteurs industriels. En effet, une étroite relation entre les propriétés de transports et le design du procédé (réacteur et support catalytique) est mise en avant dans l'état de l'art. Mais force est de constater que la complexité des phénomènes entraine des divergences entre les observations et les différentes conclusions faites par les auteurs. Deux pilotes à échelle laboratoire ont été conçus et mis en place au cours de cette thèse. L'un est dédié à l'étude hydrodynamique et l'autre à l'étude thermique. La caractérisation hydro-thermique des réacteurs passe également par une étape de développement de modèles mathématiques associés aux pilotes. Ils représentent les transferts opérant au sein d'une colonne garnie. Ils permettent également d'estimer les paramètres effectifs du milieu poreux. Les quatre grandeurs caractéristiques étudiées dans cette thèse sont les pertes de charges, la dispersion axiale, la conductivité effective globale et le coefficient d'échange thermique à la paroi. Les résultats obtenus à partir des modèles sont comparés aux travaux de la littérature. Ceci permet de valider les méthodes d'estimation développées dans cette thèse. Il est remarqué que les corrélations prédictives de la conductivité effective sont peu adaptées aux morphologies de supports les plus complexes. Nous proposons donc aussi de nouvelles corrélations basées sur nos mesures / Hydrodynamics and heat transfers in packed bed reactors have been studied for about sixty years. The information supplied by this work is important for the design of industrial reactors. Indeed, there is a close relationship between the heat and mass transfers and the design of the process (reactor and catalytic support); this is highlighted in the state of the art. It is clear that the complexity of the phenomena is the cause of divergences between the observations and the conclusions made by the authors. Two laboratory-scale pilots were designed and set up during this PhD thesis. One is dedicated to the hydrodynamic studies and the other to the thermal studies. The hydro-thermal characterization of the reactors includes a step of development of mathematical models associated with the pilots. They represent transfers occurring within the bed of particles. Coupling experimental data with the models allows estimating the effective parameters of the porous medium. The four characteristic quantities studied in this PhD thesis are the pressure drop, the axial dispersion, the overall effective conductivity and the heat transfer coefficient at the wall. The results are compared with the data provided by the open literature. This validates the estimation methods developed during this PhD thesis. It is noticed that the predictive correlations of the effective thermal conductivity are not adapted to the morphologies of the most complex supports. Based on our measurements, new correlations were developed
78

Recupera??o e purifica??o de ramnolip?deos produzidos por pseudomonas aeruginosa P029-GVIIA utilizando mela?o de cana como substrato

Oliveira, Ana Carmen dos Santos Mendes de 29 December 2010 (has links)
Made available in DSpace on 2014-12-17T15:01:52Z (GMT). No. of bitstreams: 1 AnaCSMO_TESE.pdf: 4366304 bytes, checksum: 034491089a42b2a0e2af84a9b17e3da3 (MD5) Previous issue date: 2010-12-29 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior / Biosurfactants are molecules produced by microorganisms mainly bacteria as Pseudomonas and Bacillus. Among the biosurfactants, rhamnolipids play an important role due to their tensoactive as well as emulsifying properties. Besides can be produced in a well consolidated way the production costs of biosurfactants are quite expansive mainly if downstream processing is goning to be considered. Actually, attention has been given to identification of biosurfactants as well as optimization of its fermentative processes including downstream ones. This work deals with the development of strategies to recovery and purification of rhamnolipids produced by Pseudomonas aeruginosa P029-GVIIA using sugar-cane molasses as substrate. Broth free of cells was used in order to investigate the best strategies to recovery and purification produced by this system. Between the studied acids (HCl and H2SO4) for the acid precipitation step, HCl was the best one as has been showed by the experimental design 24. Extraction has been carried out using petroleum ether and quantification has been done using the thioglycolic acid method. Adsorption studies were carried out with activated carbon in a batch mode using a 24 experimental design as well as combined with an hydrophobic resin Streamline Phenyl aiming to separate the produced biosurfactant. Biosurfactant partial identification was carried out using High Performance Liquid Chromatography (HPLC). Experiments in batch mode showed that adsorption has been controlled mainly by pH and temperature. It was observed a reduction of 41.4% for the liquid phase and the solid phase it was possible to adsorb up to 15 mg of rhamnolipd/g of activated carbon. The kinetics of adsorption has been well fitted to a pseudo-first order reaction with velocity constant (k1) of 1.93 x 10-2 min-1. Experiments in packed bed ranging concentration on eluent (acetone) has been shown the highest recovery factor of 98% when pure acetone has been used. The combined effect if using activated carbon with an hydrophobic resin Streamline Phenyl has been shown successful for the rhamnolipids purification. It has been possible to purify a fraction of the crude broth with 98% of purity when the eluted of activated carbon packed bed was used with pure acetone / Os biossurfactantes s?o produzidos por microrganismos, principalmente, bact?rias do tipo Pseudomonas e Bacillus. Entre os biossurfactantes, o rhamnolip?deo ? o mais estudado devido as suas propriedades tensoativas e emulsificantes. Apesar do processo biotecnol?gico de produ??o de biossurfactante, j? tenha sido estabelecido h? alguns anos, o alto custo de produ??o e o caro processo de downstream t?m impedido sua ampla utiliza??o. Deste modo, os ?ltimos estudos est?o concentrados na identifica??o de potenciais surfactantes, na avalia??o de suas propriedades e na otimiza??o dos processos fermentativos para sua produ??o, bem como das etapas de purifica??o. Assim, o presente estudo tem como objetivo desenvolver estrat?gias para a recupera??o e purifica??o de ramnolip?deos produzidos por Pseudomonas aeruginosa P029-GVIIA utilizando mela?o de cana como substrato. Com o caldo fermentado livre de c?lulas estudou-se as melhores t?cnicas de recupera??o e purifica??o do biossurfactante produzido para este sistema. Dentre os ?cidos estudados (HCl e H2SO4) para a etapa de precipita??o ?cida o HCl foi o que obteve melhor resultado atrav?s de um planejamento experimental 24. A extra??o foi realizada com o ?ter de petr?leo e a quantifica??o atrav?s do m?todo do ?cido tioglic?lico. Estudos de adsor??o foram realizados com carv?o ativado tanto em batelada atrav?s de um planejamento experimental 24 como em leito fixo com carv?o ativado e o seu efeito combinado com uma resina de intera??o hidrof?bica Streamline Phenyl, com a finalidade de separar o biossurfactante produzido. Para a identifica??o parcial foi utilizada a cromatografia l?quida de alta efici?ncia (CLAE). Os ensaios em batelada mostraram que a adsor??o ? governada pelo pH e pela temperatura. A redu??o da concentra??o de ramnolip?deo para a fase liquida foi de 41,4% e para a fase s?lida, foi poss?vel adsorver os biossurfactantes na propor??o de 15 mg de ramnolip?deo/ g de carv?o. A cin?tica em batelada foi ajustada ao modelo cin?tico de pseudo-primeira ordem obtendo o valor da constante de velocidade k1= 1,93 x 10-2 min.-1. Os ensaios em leito fixo variando a concentra??o da acetona (eluente), obteve fator de recupera??o de ramnolip?deo de 98% de recupera??o foi para a acetona pura. O efeito combinado em leito fixo do carv?o ativado com a resina de intera??o hidrof?bica mostrou-se eficiente na purifica??o de ramnolip?deos. Foi poss?vel purificar uma fra??o do caldo bruto, cuja pureza atingiu 98% ao se utilizar o eluido do carv?o ativado com acetona pura
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Produção de hidrogênio em reator anaeróbio de leito fixo e fluxo ascendente a partir de água residuária de indústria de refrigerantes / Hydrogen production by an upflow anaerobic packed-bed reactor using soft-drink wastewater

Guilherme Peixoto 28 April 2008 (has links)
Este trabalho teve como objetivo a produção de hidrogênio em reator anaeróbio de leito fixo com fluxo ascendente utilizando-se efluente de indústria de refrigerantes. Os resultados obtidos demonstraram que a água residuária semi-sintética simulando efluente de indústria de refrigerantes tem um bom potencial de geração de hidrogênio. Dados da operação dos dois reatores utilizados mostraram que o maior rendimento foi alcançado pelo reator operado sem a adição de meio contendo nutrientes (R2), pois este foi capaz de atingir 4,2 mol \'H IND.2\'/mol de substrato em contraste com 2,5 mol \'H IND.2\'/mol de substrato, obtida pelo reator (R1), cujo afluente continha suplementação nutricional. Constatou-se que o reator operado sem adição de nutrientes (R2) apresentou continuidade na produção de hidrogênio, fato que não ocorreu com o reator R1, que exibiu uma produção efêmera e significativamente inferior. O melhor desempenho na velocidade de produção de hidrogênio e porcentagem do mesmo na composição do biogás também foi observado para o reator R2, que atingiu 0,52 L/h.L e 18,9% de \'H IND.2\' contra 0,28 L/h.L e 2,1% de \'H IND.2\' obtidos pelo reator com suplementação nutricional (R1). Após esta primeira etapa comparativa em que os reatores foram operados simultaneamente com TDH teórico de 0,5 h, prosseguiu-se apenas com a operação do reator R2, porém com tempo de detenção hidráulica teórico de 1 h, o que induziu uma maior conversão do substrato a ácidos e álcoois, mudou as características hidrodinâmicas do leito e afetou negativamente a produção de hidrogênio. / This work was aimed on hydrogen production in an upflow anaerobic packed-bed reactor fed with soft-drink wastewater. The results obtained show that the semisynthetic soft-drink wastewater has a good hydrogen generation potential. Data obtained from the operation of both reactors indicated that the reactor operated without the addition of medium containing macro and micronutrients (R2) provided higher hydrogen yield (4,2 mol \'H IND.2\'/mol of substrate) as compared to the reactor (R1) operated with the addition of nutrient medium, which achieved lower hydrogen production yield (2,5 mol \'H IND.2\'/mol of substrate). It was observed that the reactor operated without the addition of nutrients (R2) showed continuous hydrogen production, while the reactor R1 exhibited a short period of production and lower amounts of hydrogen. Better hydrogen production rate and percentage in the biogas were also observed for the reactor R2, which achieved 0,52 L/h.L and 18,9% of \'H IND.2\' against 0,28 L/h.L and 2,1% of \'H IND.2\' obtained by the reactor with nutrient addition (R1). After operation with HDT of 0,5 h, the reactor R2 was operated with theoretical HDT of 1 h. Under this condition, the substrate was mainly converted to acids and solvents, negatively affecting the hydrogen production and the hydrodynamic pattern of the reactor.
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Influência da origem do inóculo e da adição de sulfato sobre a degradação de BTX em reator anaeróbio horizontal de leito fixo / Influence of different inoculum sources and sulphate addition on anaerobic BTX degradation in a packed-bed reactor

Bruna Soares Fernandes 11 March 2005 (has links)
O desenvolvimento industrial tem, como conseqüência, a maior geração de resíduos, muitos deles tóxicos aos seres vivos. Dentre esses, benzeno, tolueno e xilenos (BTX), derivados do petróleo, estão contaminando aqüíferos por acidentes no transporte e no armazenamento. Por esse motivo, diversas pesquisas têm sido realizadas buscando formas de biodegradar BTX. Esses trabalhos indicam que os principais fatores que podem influenciar a degradação biológica dos BTX são temperatura, pH, disponibilidade de nutrientes, concentração de tóxicos e diversidade de microrganismos. Visando contribuir com o estudo desses fatores, este trabalho teve por objetivo avaliar a influência do inóculo e de aceptores de elétrons no processo de degradação anaeróbia de BTX. Neste trabalho três inóculos foram pesquisados: 1- biomassa proveniente de reator anteriormente submetido à mistura de gasolina comercial e água; 2- biomassa proveniente de reator da estação de tratamento de esgoto da USP - São Carlos; 3- biomassa proveniente de reator tratando água residuária de abatedouro de aves. Os resultados obtidos comprovaram que a origem do inóculo foi fundamental na degradação anaeróbia de BTX, pois os inóculos apresentaram diferentes períodos de adaptação e porcentagens de degradação do tóxico. Depois de 93 dias de operação os inóculos 1, 2 e 3 apresentaram eficiência de remoção de BTX da ordem de 57%, 83% e 90%, respectivamente. O reator com o inóculo 3 foi submetido a condições metanogênica, sulfetogênica com presença e ausência de Ferro (III). Os resultados demonstraram que a degradação dos BTX foi influenciada pelas diferentes condições adotadas. A adição de Fe (III) melhorou a degradação dos BTX, do reator sob condições sulfetogênicas. / The industrial development has increased the generation of residues. Some of them are toxics and impact the environment. Benzene, toluene and xylenes (BTX), petroleum sub products, are examples of such toxic compounds. These compounds may contaminate aquifers as a result of accidents during transportation or of leakages of storage tanks. Several factors are reported to affect the biodegradation of BTX, such as: temperature, pH, availability of nutrients, concentration of toxics and diversity of microorganisms. This research aimed to study some of these factors, such as different inoculum sources and different electrons acceptors during BTX degradation processes in an horizontal-flow anaerobic immobilized biomass (HAIB) reactor. In this research three inocula were studied: 1- an adapted microbial community for BTX degradation; 2 - microorganisms collected from a pilot-scale UASB reactor treating domestic wastewater; and 3 - Microorganisms collected from an UASB treating poultry slaughterhouse industry wastewater. The results have shown that the inoculum sources were fundamental to the adaptation period for the toxic biodegradation, producing different BTX removal efficiencies. After 93 days of operation, the inocula 1, 2 and 3 showed BTX removal efficiency of 57, 83 and 90%, respectively. The inoculum 3 was submitted to conditions of methanogesis and sulfetogenesis in the presence and absence of Fe (III). The results demonstrated that BTX degradation was affected by the different conditions adopted, showing that the addition of Fe (III) improved biodegradation in the reactor under sulfate reduction condition.

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