958 resultados para pH-sensistivity


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A Ria Formosa é um tesouro ambiental sem paralelo, preservando uma fauna e flora únicas no mundo. A riqueza deste habitat é de enorme importância para a região, e extremamente apetecível para cientistas oriundos de todas as partes do globo, que aqui frequentemente se deslocam para conduzirem estudos científicos e experiências. O Centro de Ciências do Mar (CCMAR) da Universidade do Algarve (que inclui o Centro Experimental do Ramalhete) conduz estudos e experiências neste palco, estudos que são de inquestionável valor para o conhecimento e desenvolvimento científico. Um assunto que está a merecer a atenção da comunidade científica mundial nos últimos anos é a questão da acidificação dos oceanos. A diminuição gradual do pH das águas pode vir a ter graves repercussões nos ecossistemas marinhos, e o Centro Experimental do Ramalhete tem vindo a conduzir experiências com fauna e flora provenientes da Ria Formosa em águas com níveis de pH mais reduzido, condições que se prevê que os oceanos venham a ter no futuro. Os equipamentos de instrumentação e controlo a que o Centro tem acesso condicionam as experiências que ali são levadas a cabo pelos investigadores, pelo que o desenvolvimento de equipamentos adequados incorporando tecnologias apropriadas permitiria a realização de novas e melhores experiências no campo da biologia marinha. Ao nível do controlo existe uma lacuna no mercado, entre controladores para aquariofilia demasiado simples e controladores industriais demasiado dispendiosos e complexos. Esta dissertação pretende colmatar essa lacuna através do desenvolvimento de um protótipo de um sistema distribuído microcontrolado para aquisição de dados e controlo de pH que vá ao encontro das necessidades dos investigadores do Centro e que se pretende simples, modular, flexível, económico e expansível no futuro. O foco centra-se no desenvolvimento da instrumentação necessária para as medições de temperatura e pH, e depois no estudo de uma malha de controlo PID utilizando como base um modelo do sistema obtido através de resultados experimentais, para o controlo automático do pH.

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Some yeasts have the peculiar ability to grow in the presence of weak acids at rather low pH. These conditions are predominant in preserved foods and beverages such as fruit concentrates, juices, wine, where these yeasts are responsible for spoilage. The main preservatives currently utilized by food industries are sorbic, propionic, benzoic acids and SO2. It is usually assumed that weak acids diffuse through the plasma membrane in the undissociated form. In the cytoplasm, where the pH is higher, dissociation occurs resulting in accumulation of the lipid-insoluble anion and internal acidification. This is probably a very general mechanism of preventing microbial growth in foods.

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Senior thesis written for Oceanography 445

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Senior thesis written for Oceanography 445

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A modified tri-axial electrospinning process was developed for the generation of a new type of pH-sensitive polymer/lipid nanocomposite. The systems produced are able to promote both dissolution and permeation of a model poorly water-soluble drug. First, we show that it is possible to run a tri-axial process with only one of the three fluids being electrospinnable. Using an electrospinnable middle fluid of Eudragit S100 (ES100) with pure ethanol as the outer solvent and an unspinnable lecithin-diclofenac sodium (PL–DS) core solution, nanofibers with linear morphology and clear core/shell structures can be fabricated continuously and smoothly. X-ray diffraction proved that these nanofibers are structural nanocomposites with the drug present in an amorphous state. In vitro dissolution tests demonstrated that the formulations could preclude release in acidic conditions, and that the drug was released from the fibers in two successive steps at neutral pH. The first step is the dissolution of the shell ES100 and the conversion of the core PL–DS into sub-micron sized particles. This frees some DS into solution, and later the remaining DS is gradually released from the PL–DS particles through diffusion. Ex vivo permeation results showed that the composite nanofibers give a more than twofold uplift in the amount of DS passing through the colonic membrane as compared to pure DS; 74% of the transmitted drug was in the form of PL–DS particles. The new tri-axial electrospinning process developed in this work provides a platform to fabricate structural nanomaterials, and the core–shell polymer-PL nanocomposites we have produced have significant potential applications for oral colon-targeted drug delivery.

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The use of buffers to maintain the pH within a desired range is a very common practice in chemical, biochemical and biological studies. Among them, zwitterionic N-substituted aminosulfonic acids, usually known as Good’s buffers, although widely used, can complex metals and interact with biological systems. The present work reviews, discusses and updates the metal complexation characteristics of thirty one commercially available buffers. In addition, their impact on biological systems is also presented. The influences of these buffers on the results obtained in biological, biochemical and environmental studies, with special focus on their interaction with metal ions, are highlighted and critically reviewed. Using chemical speciation simulations, based on the current knowledge of the metal–buffer stability constants, a proposal of the most adequate buffer to employ for a given metal ion is presented.

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Dissertação para obtenção do Grau de Mestre em Biotecnologia

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The oxalatecarbonate pathway involves the oxidation of calcium oxalate to low-magnesium calcite and represents a potential long-term terrestrial sink for atmospheric CO2. In this pathway, bacterial oxalate degradation is associated with a strong local alkalinization and subsequent carbonate precipitation. In order to test whether this process occurs in soil, the role of bacteria, fungi and calcium oxalate amendments was studied using microcosms. In a model system with sterile soil amended with laboratory cultures of oxalotrophic bacteria and fungi, the addition of calcium oxalate induced a distinct pH shift and led to the final precipitation of calcite. However, the simultaneous presence of bacteria and fungi was essential to drive this pH shift. Growth of both oxalotrophic bacteria and fungi was confirmed by qPCR on the frc (oxalotrophic bacteria) and 16S rRNA genes, and the quantification of ergosterol (active fungal biomass) respectively. The experiment was replicated in microcosms with non-sterilized soil. In this case, the bacterial and fungal contribution to oxalate degradation was evaluated by treatments with specific biocides (cycloheximide and bronopol). Results showed that the autochthonous microflora oxidized calcium oxalate and induced a significant soil alkalinization. Moreover, data confirmed the results from the model soil showing that bacteria are essentially responsible for the pH shift, but require the presence of fungi for their oxalotrophic activity. The combined results highlight that the interaction between bacteria and fungi is essential to drive metabolic processes in complex environments such as soil.

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Se analizó información sobre parámetros biogeoquímicos como pH, CO2 parcialmente disuelto, clorofila-a, oxígeno, salinidad y temperatura, obtenidos en el Sistema de Humboldt frente a Perú en los años 2007-2009, a fin de comprender la importancia del pH como una variable clave para trazar la variabilidad biogeoquímica del Sistema de Afloramiento de Humboldt. Las Aguas Costeras Frías (ACF) ricas en nutrientes evidencian una relación inversa con el pH, en ese sentido valores de 7,6 a 8,0 se encontraron asociados a la ocurrencia de eventos de afloramiento; en condiciones frías como La Niña 2007 el pH predominante se encuentra por debajo de 8,0, y en el caso de las Aguas Subtropicales Superficiales presentan un pH entorno a 8,3. La productividad en los veranos se incrementa debido a factores como la intensidad de luz generándose núcleos de clorofila-a superiores a 10,0 μg.L-1; como constituyentes de la reacción bioquímica de fotosíntesis se tiene en cuenta la forma inmediata del compuesto CO2 y el consumo de iones hidronio; en situaciones extremas de fertilización, se tiene elevado pH entre 8,2 e inclusive 9,0, en donde los contenidos de oxígeno disuelto superan los 6,0 mL.L-1.

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1938/11/12.

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1939/01/14.

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1938/12/10.

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1938/12/17.

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Etat de collection : 1938-1939