285 resultados para Museus - ciência e tecnologia


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Dissertation for a degree in Doctor in Sustainable Chemistry

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Dissertação para obtenção do Grau de Doutor em Engenharia Química e Bioquímica

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Dissertação para obtenção do Grau de Doutor em Química, especialidade Química Orgânica

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Baseado no relatório para a disciplina de “Avaliação de Ciência e Tecnologia” da responsabilidade do Prof. João Crespo (FCT-UNL) do Programa Doutoral em Avaliação de Tecnologia em 2012

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Fundação para a Ciência e Tecnologia no âmbito de Bolsa de Doutoramento (SFRH/BD/86280/2012)

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The formulation and use of lime mortars with ceramic particles has, in the past, been a very common technique. Knowledge of such used techniques and materials is fundamental for the successful rehabilitation and conservation of the built heritage. The durability that these mortars have shown encourages the study of the involved mechanisms, so that they may be adapted to the current reality. The considerable amount of waste from old ceramics factories which is sent for disposal might present an opportunity for the production of reliable improved lime mortars. In this paper a number of studies that characterize old building mortars containing ceramic fragments are reviewed. The most important research undertaken on laboratory prepared mortars with several heat treated clays types is presented, specifically with incorporated ceramic waste. Some studies on the pozzolanicity of heat treated clays are examined and the heating temperatures that seem most likely to achieve pozzolanicity are presented. It was verified that some heating temperatures currently used by ceramic industries might correspond to the temperatures that will achieve pozzolanicity.

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Bolsista de Doutorado (SFRH/BD/77667/2011) da Fundação de Ciência e Tecnologia, Portugal.

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Considering the fundamental importance of preserving the built heritage and of ensuring the good performance achieved by incorporating ceramic particles in lime mortars in ancient times, it is important to study solutions that use materials the available today, in order to produce mortars intended to repair and replace the old ones. Solutions incorporating industrial ceramic waste might be profitable for several reasons, namely for economic, environmental and technical aspects. In this paper, seven ceramic waste products collected from ceramics factories are characterized. Their mineralogy, dimensional features and pozzolanicity were determined. Three of these products, with different particle size fractions (obtained directly from milling, dust only and fragment fractions only), were selected, incorporated into air lime mortars, and their mechanical strength was determined. In the present work, evidence of mechanical efficiency, when common sand or air lime were partially replaced by ceramic wastes, was made clear, drawing attention to the sustainability of this type of mortars, hence, encouraging further research.

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The work presented in this thesis was developed in collaboration with a Portuguese company, BeyonDevices, devoted to pharmaceutical packaging, medical technology and device industry. Specifically, the composition impact and surface modification of two polymeric medical devices from the company were studied: inhalers and vaginal applicators. The polyethylene-based vaginal applicator was modified using supercritical fluid technology to acquire self-cleaning properties and prevent the transport of bacteria and yeasts to vaginal flora. For that, in-situ polymerization of 2-substituted oxazolines was performed within the polyethylene matrix using supercritical carbon dioxide. The cationic ring-opening polymerization process was followed by end-capping with N,N-dimethyldodecylamine. Furthermore, for the same propose, the polyethylene matrix was impregnated with lavender oil in supercritical medium. The obtained materials were characterized physical and morphologically and the antimicrobial activity against bacteria and yeasts was accessed. Materials modified using 2-substituted oxazolines showed an effective killing ability for all the tested microorganisms, while the materials modified with lavender oil did not show antimicrobial activity. Only materials modified with oligo(2-ethyl-2-oxazoline) maintain the activity during the long term stability. Furthermore, the cytotoxicity of the materials was tested, confirming their biocompatibilty. Regarding the inhaler, its surface was modified in order to improve powder flowability and consequently, to reduce powder retention in the inhaler´s nozzle. New dry powder inhalers (DPIs), with different needle’s diameters, were evaluated in terms of internal resistance and uniformity of the emitted dose. It was observed that they present a mean resistance of 0.06 cmH2O0.5/(L/min) and the maximum emitted dose obtained was 68.9% for the inhaler with higher needle´s diameter (2 mm). Thus, this inhaler was used as a test and modified by the coating with a commonly-used force control agent, magnesium stearate, dried with supercritical carbon dioxide (scCO2) and the uniformity of delivered dose tests were repeated. The modified inhaler showed an increase in emitted dose from 68.9% to 71.3% for lactose and from 30.0% to 33.7% for Foradil.

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In this work, biocompatible and biodegradable poly(D-L-lactide-co-glycolide) (PLGA) microparticles with the potential for use as a controlled release system of vaccines and other drugs to the lung were manufactured using supercritical CO2, through the Supercritical Assisted Atomization (SAA) technique. After performing a controlled variance in production parameters (temperature, pressure, CO2/solution flow ratio) PLGA microparticles were characterized and later used to encapsulate active pharmaceutical ingredients (API). Bovine serum albumin (BSA) was chosen as model protein and vaccine, while sildenafil was the chosen drug to treat pulmonary artery hypertension and their effect on the particles characteristics was evaluated. All the produced formulations were characterized in relation to their morphology (Morphologi G3 and scanning electronic microscopy (SEM)), to their physical-chemical properties (X-ray diffraction (XRD, differential scanning calorimetry (DSC), Fourier transform infrared (FTIR)) and aerodynamic performance using an in vitro aerosolization study – Andersen cascade impactor (ACI) - to obtain data such as the fine particle fraction (FPF) and the mass median aerodynamic diameter (MMAD). Furthermore, pharmacokinetic, biodegradability and biocompatibility tests were performed in order to verify the particle suitability for inhalation. The resulting particles showed aerodynamic diameters between the 3 and 5 μm, yields up to 58% and FPF percentages rounding the 30%. Taken as a whole, the produced microparticles do present the necessary requests to make them appropriate for pulmonary delivery.

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Neste trabalho foi desenvolvido um controlador electrónico de potência capaz de actuar sobre a janela inteligente por forma a permitir a transição do estado opaco para o estado transparente. O controlador foi desenhado com o propósito de ser o único elemento necessário para o funcionamento das janelas inteligentes, evitando assim a utilização de uma parafernália de equipamentos isolados, ligados entre si, para executarem o mesmo propósito. A topologia utilizada para criar este controlador baseou-se num módulo rectificador AC/DC, seguido por um módulo Buck e terminado por um inversor do tipo Boost. Esta topologia permitiu que se alcançasse uma grande amplitude de tensões á saída, as quais variam entre os 0V e os 600V, necessárias para o desenvolvimento das janelas inteligentes. Esta solução foi pensada por forma a permitir, no futuro, o desenvolvimento de um controlador capaz de fazer a transição do estado transparente para opaco e a ligação ao software laboratorial LabView para recolha de dados e interpretação dos mesmos.

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Dissertação para obtenção do Grau de Mestre em Bioorgânica

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Maria Adelaide Miranda e Pedro Chambel (Coord.)

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Neste breve texto da comunicação apresentada na Fundação Calouste Gulbenkian, a 11 de Julho de 2008, no âmbito do I Ciclo Internacional de Palestras promovido pela APECMA – Associação Portuguesa para o Estudo e Conservação do Mosaico Antigo e IHA, Instituto de História da Arte, UNL, versamos sobre a ideografia das águas em mosaicos elaborados no espaço do actual território português (correspondente a parte das Províncias romanas da Lusitânia e da Galécia) e destacamos as dimensões decorativas e simbólicas que os motivos ictiográficos assumem nos conjuntos mais significativos.

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A percepção é essencial na cultura militar e as tecnologias da informação deram-lhe uma nova consistência. As funções perceptivas do ser humano estão agora plasmadas nas máquinas de guerra, replicando comportamentos e características fisiológicas próprias aos seres vivos. As máquinas de guerra são já sensíveis à luz, a variações térmicas ou acústicas. A essência humana, assim cristalizada sobre toda a aparelhagem de guerra, coloca em tensão os limites da diferenciação entre os campos da Arte, Cinema, Política e Guerra. Contudo, e antes ainda da era da máquina, o mundo estaria já repleto de motores naturais e poéticos. É Gilbert Simondon quem o diz, lembrando que por antecipação científica há muito que a mecanologia existe, antevendo a relação entre a indústria mais perfeita, a ciência mais bem equipada, e uma natureza no seu estado mais natural. Este será um ponto de partida verdadeiramente essencial – é que sempre tivemos a ilusão de que a técnica seria uma invenção humana quando, no fundo, foi a técnica militar e a guerra aquilo que permitiu a «fabricação do humano». Esta tese procura desvelar como o surgimento de novas tecnologias e de novos espaços para a guerra, forçaram a sua reproblematização em novas vias epistemológicas. Recuando até ao originário movimento geo-político, entroncamos numa interdefinição entre a ordem espacial e a individuação dos objectos técnicos, e procuraremos, a partir daí, saber como se concretizou a expansão da guerra moderna a todo os domínios e a todo o mundo.