142 resultados para thermal regime


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2,4 - Dimethoxybenzoates of Mn(II), Co(II) and Cu(II) have been synthesized as hydrated or anyhydrous polycrystalline solids and characterized by elemental analysis, IR spectroscopy, magnetic studies and X-ray diffraction measurements. They possess the following colours: Mn(II) - white, Co(II) - pink and Cu(II) - blue. The carboxylate groups bind as monodentate, or a symmetrical bidentate bridging ligands and tridentate. The thermal stabilities were determined in air at 293-1173K. When heated the hydrated complexes dehydrate to from anhydous salts which are decomposed to the oxides of respective metals. The magnetic susceptibilites of the 2,4-dimethoxybenzoates were measured over the range 76-303 K and their magnetic moments were calculated. The results reveal the complexes of Mn(II), Co(II) to be high-spin complexes and that of Cu(II) to form dimer.

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Copolymers of methyl methacrylate (MMA) and triethyleneglycol dimethacrylate (TEGDMA) obtained by photoinitiated polymerization using Fe(III) complexes were submitted to thermogravimetry (TGA) under dynamic air atmosphere and N2, and differential scanning calorimetric analysis (DSC). Thermal events were observed only between 90 - 110 ºC. Glass transitions were observed at ca. 100 ºC, followed by an exothermic peak at 170 ºC. The exothermic peak was assigned to a thermal curing process due to the presence of unreacted vinyl groups of the monomers. DSC revealed to be a useful tool to evaluate the curing completeness in this kind of material, using small amounts of sample in relatively short time.

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Solid State Ln-L compounds, where Ln stands for light trivalent lanthanides (La - Gd) and L is pyruvate, have been synthesized. Thermogravimetry and derivative thermogravimetry (TG/DTG), differential scanning calorimetry (DSC), X-Ray powder diffractometry, infrared spectroscopy, elemental analysis, and complexometry were used to characterize and to study the thermal behaviour of these compounds. The results led to information about the composition, dehydration, ligand denticity, thermal behaviour and thermal decomposition of the isolated compounds.

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Solid-state Ln-Bz compounds, where Ln stands for trivalent lanthanides and Bz is benzoate have been synthesized. Simultaneous thermogravimetric and differential thermal analysis in a CO2 atmosphere were used to study the thermal decomposition of these compounds.

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One filler often utilized in flexible polyurethane foams is calcium carbonate (CaCO3) because it is non-abrasiveness, non-toxicity and facilitated pigmentation. However, it is observed that the excess of commercial CaCO3 utilized in industry possibly causing permanent deformations and damaging the quality of the final product. The effect of different concentrations of commercial CaCO3, in flexible foams, was studied. Different concentrations of CaCO3 were used for the synthesis of flexible polyurethane foams, which were submitted to morphological and thermal analyses to verify the alterations provoked by the progressive introduction of this filler.

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Unprocessed native starches are structurally too weak and functionally too restricted for application in today's advanced food technologies. Processing is necessary to engender a range of functionality. Naturals or natives starches can be modified by using several methods physical, chemical, enzymatic or combined, according industrial purposes. In this work, native corn starch was hydrolyzed by hydrochloric acid solution and investigated by using thermoanalytical techniques (thermogravimetry - TG, differential thermal analysis - DTA and differential scanning calorimetry - DSC), as well as optical microscopy and X-ray diffractometry. After acid treatment at 30 and 50°C, a decrease of gelatinization enthalpy (ΔHgel) was verified. Optical microscopy and X-ray diffractometry allowed us to verify the granules contorn and rugosity typical of cereal starches.

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The complexes of silver(I) with 2,3-, 2,4-, 2,6-, 3,4-, 3,5-dimethoxy-, and 2,3,4- and 3,4,5-trimethoxybenzoic acid anions have been synthesized and characterized by elemental analysis, IR spectroscopy, thermogravimetric and X-ray studies. Their solubility in water has been also determined at 293K. All analysed complexes were found to be crystalline, anhydrous compounds with low symmetry. The carboxylate groups act as bidentate or monodentate ligands. The thermal stability of compounds has been examined in air in temperature range of 293-1173K. The analysed complexes were found to be stable at room temperature and their solubilities in water at 293K to be in the order of 10-4 mol.dm-3.

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Solid state M-L compounds, were M stands for bivalent Mn, Fe, Co, Ni, Cu, Zn and L is pyruvate, have been synthesized. Thermogravimetry and derivative thermogravimetry (TG/DTG), differential scanning calorimetry (DSC), X-Ray powder diffractometry, infrared spectroscopy, elemental analysis, and complexometry were used to characterize and to study the thermal behaviour of these compounds. The results led to information about the composition, dehydration, ligand denticity, and thermal decomposition of the isolated compounds.

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Several papers have been described on the thermal stability of the sweetener, C12H19Cl3O8 (Sucralose). Nevertheless no study using thermoanalytical techniques was found in the literature. Simultaneous thermogravimetry and differential thermal analysis (TG-DTA), differential scanning calorimetry (DSC) and infrared spectroscopy, have been used to study the thermal stability and thermal decomposition of sweetener.

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Solid State M-2-MeO-CP compounds, where M stands for bivalent metals (Mn, Fe, Co, Ni, Cu and Zn) and 2-MeO-CP is 2-methoxycinnamylidenepyruvate, were synthesized. Simultaneous thermogravimetry and differential thermal analysis (TG-DTA), differential scanning calorimetry (DSC), elemental analysis and complexometry were used to establish the stoichiometry and to study the thermal behaviour of these compounds in CO2 and N2 atmospheres. The results were consistent with the general formula: M(L)2∙H2O. In both atmospheres (CO2, N2) the thermal decomposition occurs in consecutive steps which are characteristic of each compound. For CO2 atmosphere the final residues were: Mn3O4, Fe3O4, Co3O4, NiO, Cu2O and ZnO, while under N2 atmosphere the thermal decomposition is still observed at 1000 º C.

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Thermal stability and thermal decomposition of succinic acid, sodium succinate and its compounds with Mn(II), Fe(II), Co(II), Ni(II), Cu(II) and Zn(II) were investigated employing simultaneous thermogravimetry and differential thermal analysis (TG-DTA) in nitrogen and carbon dioxide atmospheres and TG-FTIR in nitrogen atmosphere. On heating, in both atmospheres the succinic acid melt and evaporate, while for the sodium succinate the thermal decomposition occurs with the formation of sodium carbonate. For the transition metal succinates the final residue up to 1180 ºC in N2 atmosphere was a mixture of metal and metal oxide in no simple stoichiometric relation, except for Zn compound, where the residue was a small quantity of carbonaceous residue. For the CO2 atmosphere the final residue up to 980 ºC was: MnO, Fe3O4, CoO, ZnO and mixtures of Ni, NiO and Cu, Cu2O.

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Solid-state Ln-L compounds, where Ln stands for heavy trivalent lanthanides (Tb-Lu) and L is malonate, have been synthesized. Simultaneous thermogravimetry and differential thermal analysis (TG-DTA), differential scanning calorimetry (DSC), X-ray powder diffractometry, infrared spectroscopy, TG-FTIR system, elemental analysis and complexometry were used to characterize and to study the thermal behaviour of these compounds. The dehydration of the compounds begins at 303 K and the anhydrous compounds are stable up to 548 K. The results also provided information concerning the ligand's denticity, thermal behaviour and identification of some gaseous products evolved during the thermal decomposition of these compounds.

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Algumas espécies fúngicas não esporulam satisfatoriamente em meio de cultura, a exemplo de Cercospora zeae-maydis, agente causal da cercosporiose do milho. A esporulação deste patógeno foi avaliada em sete meios de cultura agarizados (V8, suco de tomate temperado, água de coco, aveia, BDA, extrato de folha de milho e extrato de folha de milho + CaCO3) sob dois regimes luminosos (fotoperíodo de 12 horas e seqüencial - 6 dias claro/3 dias escuro). O ensaio foi conduzido em esquema fatorial 7 x 2, com os tratamentos dispostos em delineamento inteiramente casualizado com cinco repetições. A parcela experimental compreendeu uma placa de petri contendo 20 mL de meio de cultura sobre o qual foram colocados 200 mL de uma suspensão de 8 x 10(4) esporos/mL. As culturas foram posteriormente incubadas a 27ºC durante nove dias. Os meios V8 e suco de tomate temperado (STT) sob regime de fotoperíodo 12h/12h, foram aqueles que apresentaram melhor indução de esporulação, resultando na produção de 22,4 x 10(4) conídios/ mL e 28,62 x 10(4) conídios/mL, respectivamente.

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Este trabalho objetivou o estabelecimento de condições favoráveis ao crescimento micelial de M. musicola in vitro, pela avaliação em quatro experimentos, da influência de diferentes meios de cultura (BDA, BDA/IFB, V8, V8/IFB, V8/CaCO3 e V8/CaCO3/IFB); combinações de fontes de carbono (dextrose, maltose, sacarose e xilose) e nitrogênio (peptona, glicina, nitrato de potássio e de sódio); valores de pH (6,8; 6,4; 5,7 e 4,9) e regimes luminosos (escuro contínuo, alternância luminosa e claro contínuo). Observou-se um maior crescimento de M. musicola quando cultivado nos meios de cultura BDA/IFB, V8/IFB e BDA. As fontes de carbono sacarose, maltose e dextrose quando combinadas com a peptona como fonte de nitrogênio, promoveram um maior crescimento micelial de M. musicola. O meio de cultura BDA/IFB, com o valor final de pH ajustado para 5,7, em regime de escuro contínuo, apresentou-se como o melhor para o crescimento de M. musicola.

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Este é o segundo artigo de uma série que apresenta estrutura curricular e modelo pedagógico do curso de Medicina em implantação na Universidade Federal do Sul da Bahia (UFSB), que adota um regime de dois ciclos de formação, integralmente realizado nos contextos de prática do Sistema Único de Saúde. Para isso, apresentam-se resumidamente perfil e competências dos egressos, introduzindo a estrutura curricular do segundo ciclo do curso e destacando sua aderência ao marco legal vigente. Em seguida, destacam-se os blocos temáticos do eixo de formação técnico-científica, com organização de conteúdos em ciclos de vida, visando superar o modelo que fragmenta o sujeito humano em sistemas, órgãos e patologias. Aborda-se ainda o eixo de práticas, composto por estágios supervisionados em todos os níveis de atenção da rede SUS, destacando a Atenção Primária em Saúde, que perpassa todo o segundo ciclo de formação. Por último, discutem-se impacto e efeitos dessa reestruturação da educação superior no sentido da convergência entre modelos formativos de profissionais de saúde e necessidades de saúde da população.