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Utilisation de composés biosourcés pour la conception de papiers à haute résistance à l'eau et à propriétés antifongiques / Utilization of biobased compounds to design water resistant and antifungal papersLe Goué, Erwan 01 October 2019 (has links)
Ce travail de thèse a été conduit dans le but d’élaborer des papiers résistants à l’eau liquide et ayant des propriétés antifongiques, ce par utilisation de composés biosourcés. Deux approches ont été proposées : soit une modification en surface par enduction, soit une modification des fibres de cellulose. Dans le cas de la modification en surface, deux formulations d’enductions ont été étudiées. La première, composée de chitosane et de carbonate de calcium précipité (PCC) modifié, a été utilisée pour limiter le développement de moisissures et améliorer la résistance des papiers à l’eau. La formulation incorporant 20 % de PCC modifié a montré un retard de croissance significatif de la souche fongique sélectionnée en tant que souche cible. La seconde formulation, destinée à améliorer la résistance à l’eau des papiers, par enduction d'un latex prévulcanisé d’hévéa, a montré de très bons résultats, conduisant à une réduction de près de 95 % de l’absorption d’eau liquide. Toutefois, une perte d’opacité des papiers a été observée après pénétration de l’eau dans le matériau. Par conséquent, une seconde approche a été proposée, basée sur la modification physico-chimique des fibres de cellulose. Un procédé d’hybridation a été utilisé, permettant l’adsorption d’acide stéarique sur le PCC synthétisé in situ à la surface des fibres de cellulose. Un compromis entre la rétention des charges, la résistance à l’eau et les propriétés mécaniques a pu être proposé. Après détermination des conditions optimales de mise à l’échelle industrielle du procédé d’hybridation, un essai industriel a pu être réalisé et a conduit à des résultats prometteurs. / The present work investigates the creation of water-resistant and antifungal papers by using biobased compounds. Two approaches were developed: A surface modification by coating or a cellulose fibre modification. For the coating approach, two formulations were studied. The first one, consisting in chitosan and modified precipitated calcium carbonate (PCC) was mainly used to limit the development of molds while improving paper water resistance. The formulation incorporating 20 % of modified PCC showed a significant increase of the lag phase of the target fungal strain. The second coating formulation, especially designed to improve papers water resistance by a coating layer of prevulcanized natural rubber latex, showed very positive results, leading to 95 % reduction of liquid water absorption but with a negative impact on the material opacity after water penetration. As a consequence, physico-chemical modification of cellulose fibre was investigated in a second approach. An hybridization process was used, leading to stearic acid adsorption on in situ PCC synthesized at the surface of cellulosic fibres. A compromise between fillers retention, water resistance and mechanical properties was found. After determination of optimal conditions carried out to an industrial scale up, an industrial pilot was performed and gave promising results.
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Kinetics of the Hydro-Deoxygenation of Stearic Acid over Palladium on Carbon Catalyst in Fixed-Bed Reactor for the Production of Renewable DieselVam, Albert 30 August 2013 (has links)
No description available.
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The role of alpha oxidation in lipid metabolismJenkins, Benjamin John January 2018 (has links)
Recent findings have shown an inverse association between the circulating levels of pentadecanoic acid (C15:0) and heptadecanoic acid (C17:0) with the risk of pathological development in type 2 diabetes, cardio vascular disease and neurological disorders. From previously published research, it has been said that both these odd chain fatty acids are biomarkers of their dietary intake and are significantly correlated to dietary ruminant fat intake. However, there are profound studies that show the contrary where they do not display this biomarker correlation. Additionally, several astute studies have suggested or shown odd chain fatty acid endogenous biosynthesis, most often suggested via alpha oxidation; the cleavage of a single carbon unit from a fatty acid chain within the peroxisomes. To better understand the correlations and interactions between these two fatty acids with pathological development, the origin of these odd chain fatty acids needed to be determined, along with confirming their association with the disease aetiology. To minimise animal & human experimentation we made use of existing sample sets made available through institutional collaborations, which produced both animal and human interventional study samples suitable for odd chain fatty acid investigations. These sample collaborations allowed us to comprehensively investigate all plausible contributory sources of these odd chain fatty acids; including from the intestinal microbiota, from dietary contributions, and derived from novel endogenous biosynthesis. The investigations included two intestinal germ-free studies, two ruminant fat diet studies, two dietary fat studies and an ethanol intake study. Endogenous biosynthesis was assessed through: a stearic acid infusion, phytol supplementation, and an Hacl1 knockout mouse model. A human dietary intervention study was used to translate the results. Finally, a study comparing circulating baseline C15:0 and C17:0 levels with the development of glucose intolerance. We found that the circulating C15:0 and C17:0 levels were not significantly influenced by the presence or absence of intestinal microbiota. The circulating C15:0 levels were significantly and linearly increased when the C15:0 dietary composition increased; however, there was no significant correlation in the circulating C17:0 levels with intake. Circulating levels of C15:0 were affected by the dietary composition and factors affecting the dietary intake, e.g. total fat intake and ethanol, whereas circulating C17:0 levels were found to be independent of these variables. In our studies, the circulating C15:0 levels were not significantly affected by any expected variations in alpha oxidation caused by pathway substrate inhibition or gene knockout. However, C17:0 was significantly related, demonstrating it is substantially endogenously biosynthesised. Furthermore, we found that the circulating C15:0 levels, when independent of any dietary variations, did not correlate with the progression of glucose intolerance when induced, but the circulating C17:0 levels did significantly relate and linearly correlated with the development of glucose intolerance. To summarise, the circulating C15:0 and C17:0 levels were independently derived; the C15:0 levels substantially correlated with its dietary intake, whilst the C17:0 levels proved to be separately derived from its endogenous biosynthesis via alpha oxidation of stearic acid. C15:0 was found to be minimally endogenously biosynthesised via a single cycle of beta oxidation of C17:0 in the peroxisomes, however, this did not significantly contribute to the circulating levels of C15:0. Additionally, only the baseline levels of C17:0 significantly correlated with the development of glucose intolerance. These findings highlight the considerable differences between both of these odd chain fatty acids that were once thought to be homogeneous and similarly derived. On the contrary, they display profound dietary, metabolic, and pathological differences.
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Sypné vlastnosti jemných partikulárních materiálů jako funkce vybraných látkových parametrů / Bulk properties of fine particulate solids as the function of the selected material parameters.Slanina, Ondřej January 2014 (has links)
The theoretical part of the thesis focuses on the description of particulate materials and their mechanical behaviors with a focus on flow properties. Great emphasis is placed on measuring the shear properties using a Jenike shear machine, on the correct procedure for standardized measurement and evaluation using Mohr's circles. The theoretical part focuses on the characterization of particulate matter using a variety of methods available, such as visual, separation, sedimentation, surface methods and methods of scanning field and flow. The practical part is focused on the determination of flow characteristics and surface finishing of finely ground limestone Omyacarb VA with various grain sizes. The surface was modified using stearic acid and calcium stearate. Attention was paid to the influence of the concentration of surface-regulating substances on the flowability of the material. The flowability of commercially supplied material was compared with lab modified materials and the determination of the theoretical content of stearic acid or calcium stearate was accomplished. Shear properties were measured using the Jenike shear machine. The material was further tested by laser diffraction and SEM with EDS particle surface analysis and elemental surface mapping.
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