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O direito adquirido tem sido argumento freq??entemente invocado pelos opositores da reforma constitucional do aparelho administrativo do Estado. Nesse debate, entretanto, este argumento ?? completamente destitu??do de validade t??cnica. Dizer que a reforma constitucional n??o pode alterar o regime jur??dico dos servidores p??blicos (o estatuto jur??dico da estabilidade, disponibilidade, remunera????o etc.) ?? incorrer em completo equ??voco. As raz??es dessa incompreens??o decorrem do desconhecimento de no m??nimo dois t??picos relevantes encartados no tema, a saber: a) a natureza do regime jur??dico que vincula o servidor p??blico civil ?? administra????o; e b) a distin????o entre efic??cia imediata e efic??cia retroativa das normas constitucionais

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Sob o ponto de vista constitucional os controles interno e externo somam-se a fim de promover responsabiliza????o permanente dos gestores p??blicos em torno dos princ??pios constitucionais da administra????o p??blica: legalidade, impessoalidade, moralidade, publicidade e efici??ncia. Neste artigo a argumenta????o segue no sentido de incrementar as discuss??es acerca da import??ncia de que em todos os n??veis da administra????o p??blica e nos tr??s poderes ??? Legislativo, Executivo e Judici??rio ??? seja implantada a auditoria interna, como unidade respons??vel pela an??lise do sistema de controle interno e a interlocu????o com o controle externo. Embora a administra????o p??blica no Brasil ainda se estruture hibridamente sob o sistema burocr??tico e o sistema gerencial, o fato ?? que os administradores p??blicos possuem na auditoria interna importante mecanismo gerencial que, como regra, contribui para detectar e propor a corre????o dos desperd??cios e procedimentos equivocados, principalmente antecipando-se a essas ocorr??ncias. Neste artigo, ?? apresentado ainda o exemplo da cria????o da auditoria interna no Instituto de Pesos e Medidas do Estado de S??o Paulo (Ipem-SP), sua interlocu????o com o Controle Externo e os resultados no ??mbito da autarquia.

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Este trabalho teve como objectivo o estudo, em reactor fechado, da produção de ésteres de cadeia longa por catálise enzimática em meio supercrítico com vista ao desenvolvimento de um processo sustentável, tecnologicamente eficiente e limpo e que constitua uma alternativa aos processos químicos tradicionais. Como composto modelo a produzir foi seleccionado o acetato de decilo, um éster com aplicação na indústria de fragrâncias. A reacção estudada foi a transesterificação do acetato de vinilo com o decanol, obtendo-se como principal produto o acetato de decilo. O catalisador escolhido foi a lipase B de Candida antarctica (CALB), imobilizada na resina macroporosa Lewatit B (Novozym 435®). A síntese de acetato de decilo foi estudada numa instalação experimental de alta pressão, equipada com um reactor fechado de volume variável, a operar isotermicamente a 35 ºC e a 100 bar, usando-se como solvente CO2 em condições supercríticas. Fez-se a determinação do conteúdo enzimático por tamanho de partícula de catalisador, tendo-se verificado que as partículas mais pequenas têm uma quantidade específica de enzima mais elevada, havendo uma relação inversamente proporcional entre o conteúdo enzimático e o tamanho de partícula. Verificou-se também que a enzima deve estar localizada numa camada exterior da partícula, seguindo um modelo do tipo “casca de ovo”, sendo a espessura dessa camada de 60 μm (assumindo distribuição uniforme) e independente do tamanho de partícula. Analisaram-se as resistências à transferência de massa, tanto externas como internas. Para as primeiras, fez-se apenas variar a agitação dentro do reactor, mantendo todas as outras condições de operação constantes (temperatura, pressão, quantidade de enzima, tamanho de partícula, concentração de substratos na alimentação). Verificou-se que a partir de 950 r.p.m. as resistências externas à transferência de massa são eliminadas. Relativamente às resistências internas, realizaram-se várias reacções com diferentes tamanhos de partícula, mas com a mesma quantidade de enzima, a mesma concentração dos dois substratos na alimentação, a mesma agitação, temperatura e pressão. Os resultados obtidos mostram que não há influência significativa do tamanho das partículas de catalisador sobre a velocidade inicial de reacção, pelo que as resistências internas à transferência de massa se podem considerar desprezáveis. Estudou-se também o efeito da variação da concentração dos substratos na alimentação sobre as velocidades iniciais de reacção. Observou-se que a partir de uma determinada concentração de decanol em excesso relativamente ao acetato de vinilo, a reacção é inibida pelo álcool. Pelo contrário, a reacção é favorecida quando a alimentação tem excesso de acetato de vinilo, havendo um aumento significativo da sua velocidade inicial. Estes resultados são consistentes com um mecanismo do tipo Ping-pong bi-bi com inibição competitiva por parte do álcool, comum na descrição de reacções enzimáticas de esterificação/transesterificação. Por último, fez-se uma comparação dos resultados obtidos em meio supercrítico (CO2) e em meio orgânico (hexano). Observou-se que as reacções em hexano apresentam uma velocidade inicial significativamente superior.

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Rhenium (I, III-V or VII) complexes bearing N-donor or oxo-ligands catalyse the Baeyer-Villiger oxidation of cyclic and linear ketones (e.g. 2-methylcyclohexanone, 2-methylcyclopentanone, cyclohexanone, cyclopentanone, cyclobutanone and 3,3-dimethyl-2-butanone) into the corresponding lactones or esters, in the presence of aqueous H2O2 (30%). The effects of various reaction parameters are studied allowing to achieve yields up to 54%.

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A strain of Pleurotus ostreatus was grown in tomato pomace as sole carbon source for production of laccase. The culture of P. ostreatus revealed a peak of laccase activity (147 U/L of fermentation broth) on the 4th day of culture with a specific activity of 2.8 U/mg protein. Differential chromatographic behaviour of laccase was investigated on affinity chromatographic matrices containing either urea, acetamide, ethanolamine or IDA as affinity ligands. Laccase exhibited retention on such affinity matrices and it was purified on a Sepharose 6B-BDGE-urea column with final enzyme recoveries of about 60%, specific activity of 6.0 and 18.0 U/mg protein and purification factors in the range of 14-46. It was also possible to demonstrate that metal-free laccase did not adsorb to Sepharose 6B-BDGE-urea column which suggests that adsorption of native laccase on this affinity matrix was apparently due to the specific interaction of carbonyl groups available on the matrix with the active site Cu (II) ions of laccase. The kinetic parameters (V (max), K (m) , K (cat), and K (cat)/K (m) ) of the purified enzyme for several substrates were determined as well as laccase stability and optimum pH and temperature of enzyme activity. This is the first report describing the production of laccase from P. ostreatus grown on tomato pomace and purification of this enzyme based on affinity matrix containing urea as affinity ligand.

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

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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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The Gibbs free energy of transfer of a methylene group, G*(CH2), is reported as a measure of the relative hydrophobicity of the equilibrium phases. Furthermore, G*(CH2) is a characteristic parameter of each tie-line, and for that reason can be used for comparing different tie-lines of a given aqueous two-phase system (ATPS) or even to establish comparisons among different ATPSs. In this work, the partition coefficients of a series of four dinitrophenylated-amino acids were experimentally determined, at 23 °C, in five different tie-lines of PEG8000(sodium or potassium) citrate ATPSs. G*(CH2) values were calculated from the partition coefficients and used to evaluate the relative hydrophobicity of the equilibrium phases. PEG8000potassium citrate ATPSs presented larger relative hydrophobicity than PEG8000sodium citrate ATPSs. Furthermore, the results obtained indicated that the PEG-rich phase (top phase) has higher affinity to participate in hydrophobic hydration interactions than the salt-rich phase (bottom phase).

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Nowadays the main honey producing countries require accurate labeling of honey before commercialization, including floral classification. Traditionally, this classification is made by melissopalynology analysis, an accurate but time-consuming task requiring laborious sample pre-treatment and high-skilled technicians. In this work the potential use of a potentiometric electronic tongue for pollinic assessment is evaluated, using monofloral and polyfloral honeys. The results showed that after splitting honeys according to color (white, amber and dark), the novel methodology enabled quantifying the relative percentage of the main pollens (Castanea sp., Echium sp., Erica sp., Eucaliptus sp., Lavandula sp., Prunus sp., Rubus sp. and Trifolium sp.). Multiple linear regression models were established for each type of pollen, based on the best sensors sub-sets selected using the simulated annealing algorithm. To minimize the overfitting risk, a repeated K-fold cross-validation procedure was implemented, ensuring that at least 10-20% of the honeys were used for internal validation. With this approach, a minimum average determination coefficient of 0.91 ± 0.15 was obtained. Also, the proposed technique enabled the correct classification of 92% and 100% of monofloral and polyfloral honeys, respectively. The quite satisfactory performance of the novel procedure for quantifying the relative pollen frequency may envisage its applicability for honey labeling and geographical origin identification. Nevertheless, this approach is not a full alternative to the traditional melissopalynologic analysis; it may be seen as a practical complementary tool for preliminary honey floral classification, leaving only problematic cases for pollinic evaluation.

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In this work we present semi-analytical solutions for the electro-osmotic annular flow of viscoelastic fluids modeled by the Linear and Exponential PTT models. The viscoelastic fluid flows in the axial direction between two concentric cylinders under the combined influences of electrokinetic and pressure forcings. The analysis invokes the Debye-Hückel approximation and includes the limit case of pure electro-osmotic flow. The solution is valid for both no slip and slip velocity at the walls and the chosen slip boundary condition is the linear Navier slip velocity model. The combined effects of fluid rheology, electro-osmotic and pressure gradient forcings on the fluid velocity distribution are also discussed.

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This work provides analytical and numerical solutions for the linear, quadratic and exponential Phan–Thien–Tanner (PTT) viscoelastic models, for axial and helical annular fully-developed flows under no slip and slip boundary conditions, the latter given by the linear and nonlinear Navier slip laws. The rheology of the three PTT model functions is discussed together with the influence of the slip velocity upon the flow velocity and stress fields. For the linear PTT model, full analytical solutions for the inverse problem (unknown velocity) are devised for the linear Navier slip law and two different slip exponents. For the linear PTT model with other values of the slip exponent and for the quadratic PTT model, the polynomial equation for the radial location (β) of the null shear stress must be solved numerically. For both models, the solution of the direct problem is given by an iterative procedure involving three nonlinear equations, one for β, other for the pressure gradient and another for the torque per unit length. For the exponential PTT model we devise a numerical procedure that can easily compute the numerical solution of the pure axial flow problem