1000 resultados para Sólido vazado
Resumo:
Apresenta a descrição de técnicas de coloração para preparação de amostra de material biológico para ser observada ao microscópio óptico, com destaque para a coloração diferencial de Gram. Todas as etapas do procedimento são reproduzidas detalhadamente: desde os cuidados para a fixação dos microrganismos nas lâminas, a preparação do esfregaço a partir de cultura crescida em meio líquido e em meio sólido até a técnica de coloração de Gram propriamente dita. Após a descrição dos procedimentos apresentam-se exemplos de morfologia e coloração e a descrição detalhada do que ocorre com a célula durante cada etapa do processo de coloração.
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Apresenta a descrição dos métodos de cultivo e isolamento mais utilizados na microbiologia. Define e descreve as principais características dos meios de cultura: líquido, sólido ou semi-sólido; complexo ou quimicamente definido; diferencial, seletivo e seletivo - diferencial. Demonstra todas as etapas dos procedimentos para isolamento de microrganismos em cultura pura: técnicas do esgotamento e diluições em placa, ressaltando os cuidados a serem tomados no decorrer da metodologia.
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Este capítulo começa com integração de funções racionais, ou seja, funções da forma f(x)/g(x) e a resolução de um exemplo passo a passo. O primeiro exemplo mostra que se o grau de f(x) for maior que o grau de g(x), então a integral da função racional f(x)/g(x) se transforma numa integral de simples resolução, através da divisão de polinômios. Portanto a unidade mostra que é preciso apenas estudar integrais de funções racionais próprias, isto é, funções racionais em que o grau do numerador é menor que o grau do denominador. Isto é desenvolvido através da decomposição de frações racionais em frações parciais. Na sequência é apresentado passo a passo como fazer tal decomposição em três casos distintos. E no último tópico são detalhadas algumas aplicações das integrais definidas: área de uma região plana; média ou valor médio de uma função; volume de um sólido; área de uma superfície de revolução.
Resumo:
O principal objectivo deste estudo foi o de verificar a aplicabilidade, às ribeiras da Ilha da Madeira, de técnicas indirectas de estimação do caudal e da concentração de sedimentos em suspensão e do seu emprego no cálculo do transporte sólido em suspensão nessas pequenas bacias de montanha. Particular ênfase é dada ao uso de traçadores químicos na determinação indirecta do caudal em cursos de água turbulentos com acentuados declives e à estimação da concentração de sedimentos em suspensão a partir de dados de turbidez da água, sendo tais técnicas aqui detalhadamente descritas. A campanha de medições da condutividade eléctrica e da turbidez da água realizada na Ribeira Seca do Faial, complementada pelos trabalhos realizados na Ribeira do Lajeado e na Ribeira de Santa Luzia, devido às suas grandes limitações em termos temporais e espaciais, não permitiu chegar a conclusões mais representativas sobre o transporte de sedimentos em suspensão na bacia hidrográfica em estudo. Ainda assim, os trabalhos de campo e em laboratório realizados possibilitaram confirmar a aplicabilidade das técnicas indirectas adoptadas na estimação de caudais e no estudo da concentração e do transporte de sedimentos em suspensão nesses cursos de água de montanha.
Resumo:
As aluviões, também denominadas por fluxos de detritos ou enxurradas, são movimentos de vertente rápidos, que ocorrem por ação da água e são consideradas um dos fenómenos mais perigosos em regiões montanhosas, causando prejuízos por onde passam. Como forma de prevenção, mas também como forma de estudo das condições inerentes à formação destes fenómenos e do respetivo comportamento ao longo do seu percurso, deve ser atribuído um papel importante à monitorização automática dos cursos de água. Na Ilha da Madeira, a aluvião mais recente aconteceu a 20 de fevereiro de 2010, afetando os concelhos da vertente Sul, particularmente os do Funchal e Ribeira Brava. Este evento surgiu devido a uma situação meteorológica adversa, com precipitações de elevada intensidade, resultando no transporte de um elevado volume de material sólido que levou ao transbordamento das ribeiras, obstruindo completamente a baixa funchalense e outros locais. Portanto, esta dissertação surge como introdução à temática do estudo e monitorização dos fluxos de detritos na Ilha da Madeira, onde, inicialmente, foi realizada uma primeira abordagem ao fenómeno, referindo as suas causas e características, tendo sido, também, mencionadas algumas das aluviões que assolaram a ilha. Posteriormente, foram descritos alguns dos equipamentos incluídos num sistema de monitorização, com as respetivas vantagens e desvantagens, bem como a descrição de alguns sistemas existentes. Como objetivo deste trabalho, foi idealizada uma solução de monitorização automática para a bacia hidrográfica da Ribeira de Machico, tendo sido analisadas as propriedades morfológicas da bacia, seguindo-se uma descrição dos sensores utilizados e a sua localização. Por fim, como caso de estudo, foi apresentado o sistema de monitorização a ser implementado pelo LREC (Laboratório Regional de Engenharia Civil), onde foram definidos os aparelhos utilizados, bem como a respetiva localização.
Resumo:
A presente dissertação tem como propósito a elaboração de um inventário relativo às estruturas de correção torrencial construídas no concelho do Funchal. Na sequência da aluvião do dia 20 de fevereiro de 2010, resultante de um período prolongado de chuva na ilha da Madeira, aliada ao facto desta ter um relevo muito pronunciado e extremamente acidentado, originaram-se os movimentos de vertente que, na sua grande maioria, são responsáveis pela ocorrência de cheias rápidas. Pois as bacias hidrográficas da ilha são de pequena dimensão e consequentemente as suas ribeiras, dão origem a tempos de concentração muito reduzidos. Desta forma, as ribeiras que são alimentadas pelo escoamento líquido e sólido, tornam-se num agente erosivo e potenciam um rasto de destruição. Esta aluvião teve consequências devastadoras em toda a vertente sul da ilha da Madeira, no entanto, este trabalho, focou-se apenas no concelho do Funchal, no qual existem três ribeiras onde foram implantadas as estruturas de correção torrencial, designadas por açudes, que constituem o âmago deste estudo, através da inventariação destas estruturas e posterior elaboração de uma ficha de inventário relativa a cada uma delas. Inicialmente, procedeu-se à identificação de todos os açudes, à verificação e análise das condições dos locais intervencionados, além de um levantamento fotográfico para execução posterior de um enquadramento geográfico dos mesmos. Foram abordadas algumas considerações de caráter hidrológico, hidráulico e transporte de caudal sólido, que são a base dimensional e a razão da execução dos referidos açudes. Numa fase posterior, foi elaborada uma base de dados com a informação disponível dos vários açudes identificados, munida de valor ímpar para futuros desenvolvimentos nesta área no curso de engenharia civil na Universidade da Madeira. Por fim, são expostas algumas considerações relativamente aos diferentes modelos de estruturas de correção torrencial encontrados na pouca bibliografia especializada e implantados no terreno.
Resumo:
ALVES, Ana paula Melo. Vermiculitas tratadas quimicamente na obtenção de sólidos microporosos como precursores para híbridos inorgânico-orgânicos com aplicações adsortivas. 2009. 124 f. Tese (Doutorado em Quimica) - Centro de Ciências Exatas e da Natureza, Universidade Federal da Paraíba, João Pessoa, PB, 2009.
Resumo:
ALVES, Ana Paula de M. ; GERMANO, A. F. S. ; ARAKAKI, L N H ; Ferreira, U. V. S. ; ARAUJO, A. S. Influencia da ativaçao acida na estabilidade termica de hibridos vermiculita/epoxido. In: CONGRESSO NACIONAL DE ANLISETERMICA E CALORIMETRIA, 7., 2010, São Pedro, SP. Anais... Sao Pedro, SP: ABRATEC, 2010
Resumo:
The screening for genes in metagenomic libraries from soil creates opportunities to explore the enormous genetic and metabolic diversity of microorganisms. Rivers are ecosystems with high biological diversity, but few were examined using the metagenomic approach. With this objective, a metagenomic library was constructed from DNA soil samples collected at three different points along the Jundiaí-river (Rio Grande do Norte-Brazil). The points sampled are from open area, rough terrain and with the direct incidence of sunlight. This library was analyzed functionally and based in sequence. For functional analysis Luria-Bertani solid medium (LB) with NaCl concentration varied from 0.17M to 0.85M was used for functional analysis. Positives clones resistant to hypersaline medium were obtained. The recombinant DNAs were extracted and transformed into Escherichia coli strain DH10B and survival curves were obtained for quantification of abiotic stress resistance. The sequences of clones were obtained and submitted to the BLASTX tool. Some clones were found to hypothetical proteins of microorganisms from both Archaea and Bacteria division. One of the clones showed a complete ORF with high similarity to glucose-6-phosphate isomerase which participates in the synthesis of glycerol pathway and serves as a compatible solute to balance the osmotic pressure inside and outside of cells. Subsequently, in order to identify genes encoding osmolytes or enzymes related halotolerance, environmental DNA samples from the river soil, from the water column of the estuary and ocean were collected and pyrosequenced. Sequences of osmolytes and enzymes of different microorganisms were obtained from the UniProt and used as RefSeqs for homology identification (TBLASTN) in metagenomic databases. The sequences were submitted to HMMER for the functional domains identification. Some enzymes were identified: alpha-trehalose-phosphate synthase, L-ectoina synthase (EctC), transaminase L-2 ,4-diaminobutyric acid (EctB), L-2 ,4-diaminobutyric acetyltransferase (EctA), L-threonine 3 dehydrogenase (sorbitol pathway), glycerol-3-phosphate dehydrogenase, inositol 3-phosphate dehydrogenase, chaperones, L-proline, glycine betaine binding ABC transporter, myo-inositol-1-phosphate synthase protein of proline simportadora / PutP sodium-and trehalose-6-phosphate phosphatase These proteins are commonly related to saline environments, however the identification of them in river environment is justified by the high salt concentration in the soil during prolonged dry seasons this river. Regarding the richness of the microbiota the river substrate has an abundance of halobacteria similar to the sea and more than the estuary. These data confirm the existence of a specialized response against salt stress by microorganisms in the environment of the Jundiaí river
Resumo:
Ta-Cu bulk composites combine high mechanical resistance of the Ta with high electrical and thermal conductivity of the Cu. These are important characteristics to electrical contacts, microwave absorber and heat skinks. However, the low wettability of Ta under Cu liquid and insolubility mutual these elements come hard sintering this composite. High-energy milling (HEM) produces composite powders with high homogeneity and refines the grain size. This work focus to study Ta-20wt%Cu composite powders prepared by mechanical mixture and HEM with two different conditions of milling in a planetary ball mill and then their sintering using hydrogen plasma furnace and a resistive vacuum furnace. After milling, the powders were pressed in a steel dye at a pressure of 200 MPa. The cylindrical samples pressed were sintered by resistive vacuum furnace at 10-4torr with a sintering temperature at 1100ºC / 60 minutes and with heat rate at 10ºC/min and were sintered by plasma furnace with sintering temperatures at 550, 660 and 800ºC without isotherm under hydrogen atmosphere with heat rate at 80ºC/min. The characterizations of the powders produced were analyzed by scanning electron microscopy (SEM), x-ray diffraction (XRD) and laser granulometry. After the sintering the samples were analyzed by SEM, XRD and density and mass loss tests. The results had shown that to high intense milling condition produced composite particles with shorter milling time and amorphization of both phases after 50 hours of milling. The composite particles can produce denser structure than mixed powders, if heated above the Cu melting point. After the Cu to arrive in the melting point, liquid copper leaves the composite particles and fills the pores
Resumo:
The direct use of natural gas makes the Solid Oxide Fuel Cell (SOFC) potentially more competitive with the current energy conversions technologies. The Intermediate Temperature SOFC (IT-SOFC) offer several advantages over the High Temperature SOFC (HT-SOFC), which includes better thermal compatibility among components, fast start with lower energy consumption, manufacture and operation cost reduction. The CeO2 based materials are alternatives to the Yttria Stabilized Zirconia (YSZ) to application in SOFC, as they have higher ionic conductivity and less ohmic losses comparing to YSZ, and they can operate at lower temperatures (500-800°C). Ceria has been doped with a variety of cations, although, the Gd3+ has the ionic radius closest to the ideal one to form solid solution. These electrolytes based in ceria require special electrodes with a higher performance and chemical and termomechanical compatibility. In this work compounds of gadolinia-doped ceria, Ce1-xGdxO2-δ (x = 0,1; 0,2 and 0,3), used as electrolytes, were synthesized by polymeric precursors method, Pechini, as well as the composite material NiO - Ce0,9Gd0,1O1,95, used as anode, also attained by oxide mixture method, mixturing the powders of the both phases calcinated already. The materials were characterized by X ray diffraction, dilatometry and scanning electronic microscopy. The refinement of the diffraction data indicated that all the Ce1-xGdxO2-δ powders were crystallized in a unique cubic phase with fluorite structure, and the composite synthesized by Pechini method produced smaller crystallite size in comparison with the same material attained by oxide mixture method. All the produced powders had nanometric characteristics. The composite produced by Pechini method has microstructural characteristics that can increase the triple phase boundaries (TPB) in the anode, improving the cell efficiency, as well as reducing the mass transport mechanism effect that provokes anode degradation
Resumo:
The cells unitaria of the solid oxide fuel cell are separated by means of interconnects, which serve as electrical contact between the cells. Lanthanum Chromite (LaCrO3) has been the most common material used as interconnect in solid oxide fuel cells. Reducing the operating temperature around 800 º C of cells to solid oxide fuel make possibilite the use of metallic interconnects as an alternative to ceramic LaCrO3. Metallic interconnects have advantages over ceramic interconnects such as high thermal conductivity, electricity, good ductility, low cost, good physical and mechanical properties. In this work evaluate the thermo-mechanical properties of the metallic substrate and coated metallic substrate with the ceramic LaCrO3 film via spray-pyrolysis, in order to demonstrate the feasibility of using this material as a component of a fuel cell solid oxide. The materials were characterized by X-ray diffraction, oxidation behavior, mechanical strength, optical microscopy (OM) and scanning electron microscopy (SEM). The X-ray diffraction proved the formation phase of the LaCrO3 on the metallic substrate and the identification of the phases formed after the oxidative test and mechanical strength at high temperature. The oxidation behavior showed the increased oxidation resistance of the coated metallic substrate. It was noted that the mechanical resistance to bending of the coated metallic substrate only increases at room temperature. The optical microscopy (OM) has provided an assessment of both the metallic substrate and the LaCrO3 film deposited on the metal substrate that, in comparison with the micrographs obtained from SEM. The SEM one proved the formation of Cr2O3 layer on the metallic substrate and stability of LaCrO3 film after oxidative test, it can also observe the displacement of the ceramic LaCrO3 film after of mechanical testing and mapping of the main elements as chromium, manganese, oxygen, lanthanum in samples after the thermo-mechanical tests.
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The development and study of detectors sensitive to flammable combustible and toxic gases at low cost is a crucial technology challenge to enable marketable versions to the market in general. Solid state sensors are attractive for commercial purposes by the strength and lifetime, because it isn t consumed in the reaction with the gas. In parallel, the use of synthesis techniques more viable for the applicability on an industrial scale are more attractive to produce commercial products. In this context ceramics with spinel structure were obtained by microwave-assisted combustion for application to flammable fuel gas detectors. Additionally, alternatives organic-reducers were employed to study the influence of those in the synthesis process and the differences in performance and properties of the powders obtained. The organic- reducers were characterized by Thermogravimetry (TG) and Derivative Thermogravimetry (DTG). After synthesis, the samples were heat treated and characterized by Fourier Transform Infrared Spectroscopy (FTIR), X-ray Diffraction (XRD), analysis by specific area by BET Method and Scanning Electron Microscopy (SEM). Quantification of phases and structural parameters were carried through Rietveld method. The methodology was effective to obtain Ni-Mn mixed oxides. The fuels influenced in obtaining spinel phase and morphology of the samples, however samples calcined at 950 °C there is just the spinel phase in the material regardless of the organic-reducer. Therefore, differences in performance are expected in technological applications when sample equal in phase but with different morphologies are tested
Resumo:
Oil wells subjected to cyclic steam injection present important challenges for the development of well cementing systems, mainly due to tensile stresses caused by thermal gradients during its useful life. Cement sheath failures in wells using conventional high compressive strength systems lead to the use of cement systems that are more flexible and/or ductile, with emphasis on Portland cement systems with latex addition. Recent research efforts have presented geopolymeric systems as alternatives. These cementing systems are based on alkaline activation of amorphous aluminosilicates such as metakaolin or fly ash and display advantageous properties such as high compressive strength, fast setting and thermal stability. Basic geopolymeric formulations can be found in the literature, which meet basic oil industry specifications such as rheology, compressive strength and thickening time. In this work, new geopolymeric formulations were developed, based on metakaolin, potassium silicate, potassium hydroxide, silica fume and mineral fiber, using the state of the art in chemical composition, mixture modeling and additivation to optimize the most relevant properties for oil well cementing. Starting from molar ratios considered ideal in the literature (SiO2/Al2O3 = 3.8 e K2O/Al2O3 = 1.0), a study of dry mixtures was performed,based on the compressive packing model, resulting in an optimal volume of 6% for the added solid material. This material (silica fume and mineral fiber) works both as an additional silica source (in the case of silica fume) and as mechanical reinforcement, especially in the case of mineral fiber, which incremented the tensile strength. The first triaxial mechanical study of this class of materials was performed. For comparison, a mechanical study of conventional latex-based cementing systems was also carried out. Regardless of differences in the failure mode (brittle for geopolymers, ductile for latex-based systems), the superior uniaxial compressive strength (37 MPa for the geopolymeric slurry P5 versus 18 MPa for the conventional slurry P2), similar triaxial behavior (friction angle 21° for P5 and P2) and lower stifness (in the elastic region 5.1 GPa for P5 versus 6.8 GPa for P2) of the geopolymeric systems allowed them to withstand a similar amount of mechanical energy (155 kJ/m3 for P5 versus 208 kJ/m3 for P2), noting that geopolymers work in the elastic regime, without the microcracking present in the case of latex-based systems. Therefore, the geopolymers studied on this work must be designed for application in the elastic region to avoid brittle failure. Finally, the tensile strength of geopolymers is originally poor (1.3 MPa for the geopolymeric slurry P3) due to its brittle structure. However, after additivation with mineral fiber, the tensile strength became equivalent to that of latex-based systems (2.3 MPa for P5 and 2.1 MPa for P2). The technical viability of conventional and proposed formulations was evaluated for the whole well life, including stresses due to cyclic steam injection. This analysis was performed using finite element-based simulation software. It was verified that conventional slurries are viable up to 204ºF (400ºC) and geopolymeric slurries are viable above 500ºF (260ºC)
Resumo:
The effluents released by the textile industry have high concentrations of alkali, carbohydrates, proteins, in addition to colors containing heavy metals. Therefore, a filter was prepared aiming primarily to the removal of color. In order to prepare this filter, rice hulls and diatomite were used, which have in their structure, basically amorphous hydrated silica. The silica exists in three crystalline forms: quartz, tridymite and cristobalite. In accordance with the above considerations, this study was divided into two stages; the first corresponds to the preparation of the filter and the second to carry out the tests in the effluent/filter in order to verify the efficiency of the color removal. First, the raw material was subjected to a chemical analysis and XRD, and then the diatomite was mixed, via humid, with a planetarium windmill with 20 %, 40 %, 60 % and 80 % of rice husk ash. To the mixture, 5 % carboxymethylcellulose (CMC) was added as a binder at room temperature. The samples were uniaxially compacted into metallic matrix of 0.3 x 0.1 cm² of area at a pressure of 167 MPa by means of hydraulic press and then sintered at temperatures of 1,000 °C, 1,200 °C and 1,400 °C for 1 h and submitted to granulometry test using laser, linear retraction, water absorption, apparent porosity and resistance to bending, DTA, TMA and XRD. To examine the pore structure of the samples scanning electron microscope (SEM) was used. Also tests were carried out in a mercury porosimeter to verify the average size of the pores and real density of the samples. In the second stage, samples of the effluent were collected from a local industry, whose name will be preserved, located in Igapó, in the State of Rio Grande do Norte - RN. The effluent was first pretreated before filtration and then subjected to a treatment of flotation. The effluent was then characterized before and after filtration, with parameters of color, turbidity, suspended solids, pH, chemical and biochemical oxygen demand (COD and BOD). Thus, through the XRD analysis the formation of cristobalite α in all samples was observed. The best average size of pore was found to be 1.75 μm with 61.04 % apparent porosity, thus obtaining an average 97.9 % color removal and 99.8 % removal of suspended solid