101 resultados para Curvelo
Resumo:
Este trabalho objetivou a otimização da imobilização das enzimas amilases extraídas do malte do milho, usando alginato de sódio. A concentração do malte no extrato, a porcentagem de alginato de sódio e o pH foram usados como fatores que influenciam na imobilização das enzimas. Os resultados mostraram que as melhores condições de imobilização foram obtidas quando se usou as soluções de malte de milho em duas faixas de concentrações, uma entre 3,75 a 5 g.L-1 e outra entre 15 a 16,25 g.L-1, em pH entre 4,83 a 6,6 e 4% (m/v) de alginato de sódio, condições nas quais se conseguiu imobilizar 100% das enzimas com baixa perda de atividade. Este trabalho mostrou como se obter amilases de malte de milho imobilizadas por oclusão em alginato de sódio e que podem ser usadas em processos industriais de hidrólise de amido.
Resumo:
Neste trabalho realizou-se a purificação das enzimas α e β-amilases de malte de milho combinando os processos de adsorção em leito expandido com o fracionamento por etanol. Alimentaram-se 5 mL de uma solução a 2% de malte de milho em tampão fosfato 0,05 M a pH 5 em uma coluna contendo as resinas de troca iônica Amberlite IRA 410, em leito fixo de 4 cm fluidizado para 8 cm. A eluição foi promovida com NaCl 0,25M com 14 mL/minuto de vazão descendente e o material eluído foi fracionado com álcool etílico nas concentrações de 40-70%, 50-80% e 60-90% (v/v) a 20 e 30 ºC. A recuperação da atividade e o fator de purificação foram de 95% e 23 vezes, respectivamente, na primeira etapa. A melhor condição de fracionamento das enzimas foi apresentada a 50-80% de álcool e 20 ºC, e o fator de purificação ficou acima de 100 vezes.
Resumo:
Este trabalho objetivou otimizar o processo de hidrólise do amido de mandioca com α-amilase de A. niger e obter o álcool deste xarope. Os ensaios foram realizados a pH 4,8; em que variaram-se a concentração do amido (entre 7-22 g.L-1) e a temperatura (entre 30-59,1 ºC). Durante a fermentação, usaram-se nos mostos 2,2 e 5% de amido de mandioca. Os resultados da hidrólise mostraram que o tempo ficou entre 20-200 minutos; a análise RSM mostrou que o rendimento diminuiu nas concentrações médias; e as condições ótimas foram encontradas entre 55-59,1 ºC e com a concentração entre 7,9-10 ou 20-22 g.L-1, em que se hidrolisou 80% do amido. A melhor condição de fermentação foi obtida para o mosto contendo 5% de amido. Sua composição final foi de 0,668 g.L-1 de ART, 0,572 g.L-1 e de AR, 3,71 ºGL. O rendimento alcoólico foi de 45%, demonstrando que este processo é uma alternativa eficiente à indústria sucroalcooleira.
Resumo:
In this study, seven wine samples were prepared varying the amount of pulp of acerola fruits and the sugar content using the simulated annealing technique to obtain the optimal sensory qualities and cost for the wine produced. S. cerevisiae yeast was used in the fermentation process and the sensory attributes were evaluated using a hedonic scale. Acerola wines were classified as sweet, with 11°GL of alcohol concentration and with aroma, taste, and color characteristics of the acerola fruit. The simulated annealing experiments showed that the best conditions were found at mass ratio between 1/7.5-1/6 and total soluble solids between 28.6-29.0 °Brix, from which the sensory acceptance scores of 6.9, 6.8, and 8.8 were obtained for color, aroma, and flavor, respectively, with a production cost 43-45% lower than the cost of traditional wines commercialized in Brazil.
Resumo:
El propósito de este estudio de caso es analizar el proceso de reparación a las víctimas de la comunidad indígena Wayúu de Bahía Portete por los daños causados con la masacre del 18 de abril de 2004, a partir del pensamiento propio sobre la reparación. Para esto se presentan las distintas percepciones que existen en la comunidad sobre las afectaciones sufridas por el conflicto armado y las concepciones sobre el territorio y la justicia en la cultura Wayúu, y se analiza la importancia de reivindicar estos significados en el proceso de reparación colectiva que adelanta la Unidad de víctimas con estos indígenas, para la efectividad del mismo. Lo anterior se basa en el trabajo de campo realizado en La Guajira con la comunidad de Portete y funcionarios de la Unidad, otras fuentes primarias como informes institucionales, al igual que en la revisión de legislación y textos académicos sobre la materia.
Resumo:
Las minorías cada día han venido teniendo mayor fuerza y reconocimiento en nuestra nación, sin embargo, el desconocimiento de su forma de vida y de su organización social y económica no ha permitido una real aceptación de sus sistemas jurídicos
Resumo:
No presente artigo procura-se traçar uma sinopse da evolução da atitude persecutória dos Tokugawa face à religião cristã, confrontando-a com a postura do regime frente ao budismo e enquadrando-a no âmbito das directivas políticas Tokugawa, e perspectivar o impacto dessa nova atitude dos Tokugawa, na Europa e na Nova Espanha, através da análise da divulgação da representação pictórica do tema dos mártires cristãos.
Resumo:
This study describes the preparation and characterization of new starch cross-linked polyurethanes produced by the reaction of native cornstarch with a propylene oxide toluene diisocyanate oligomer. Infrared analysis confirmed the occurrence of the reaction and solubility and swelling tests showed that it had led to cross-linked structures. These products were totally amorphous and displayed elastomeric properties associated with two T(g)s at -60 and 35 degrees C. (C) 2009 Elsevier Ltd. All rights reserved.
Resumo:
The difficulty of preparing monodisperse lignin fractions on a large scale is a limiting factor in many applications. The present paper addresses this problem by examining the properties and size-exclusion behavior of lignin isolated by the acetosolv pulping process from post-extraction crushed sugarcane bagasse. The isolated lignin was subjected to a solvent pretreatment, followed by preparative gel permeation chromatography fractionation. The fractions were analyzed by high-performance size-exclusion chromatography (HPSEC) and these samples showed a great decrease in polydispersity, compared to the original acetosolv lignin. Several fractions of very low polydispersity, close to unity, were employed as calibration curve standards in HPSEC analysis. This original analytical approach allowed calibration with these lignin fractions to be compared with the polystyrene standards that are universally employed for lignin molecular mass determination. This led to a noteworthy result, namely that the lignin fractions and polystyrene standards showed very similar behavior over a large range of molecular masses in a typical HPSEC analysis of acetosolv lignin. (C) 2009 Elsevier B.V. All rights reserved.
Resumo:
The in-depth oxypropylation of different types of cellulose fibers, namely Avicel, Rayon, Kraft, and Filter Paper, was investigated. New biphasic mono-component materials were obtained, which could be hot-pressed to form films of cellulose fibers dispersed into a thermoplastic matrix. The success of this chemical modification was assessed by FTIR spectroscopy, X-ray diffraction, scanning electron microscopy. differential scanning calorimetry, thermogravimetric analysis and contact angle measurements. The optimization of this process led to the establishment of the optimal molar ratio between the cellulose CH groups and propylene oxide, which varied as a function of the specific morphology of the fibers. (C) 2008 Elsevier Ltd. All rights reserved.
Resumo:
This work describes the partial oxypropylation of filter paper cellulose fibers, employing two different basic catalyst, viz., potassium hydroxide and 1,4-diazabicyclo [2.2.2] octane, to activate the hydroxyl groups of the polysaccharide and thus provide the anionic initiation sites for the ""grafting-from"" polymerization of propylene oxide. The success of this chemical modification was assessed by FTIR spectroscopy, X-ray diffraction, scanning electron microscopy, differential scanning calorimetry, thermogravimetric analysis and contact angle measurements. The study of the role of the catalyst employed on the extent of the modification and on the mechanical properties of the ensuing composites, after hot pressing, showed that both the Bronsted and the Lewis base gave satisfactory results, without any marked difference.
Resumo:
Kraft pulp is currently bleached largely by the elemental chlorine free (ECF) technology with oxygen, chlorine dioxide, and hydrogen as active agents. This technology brought about significant environmental improvements in relation to standard processes based on chlorine gas and hypochlorite, but there is still need for further improvements. This study presents a novel environmentally friendly bleaching stage - the so-called `hydrogen peroxide in supercritical carbon dioxide`, P((SC-CO2)) - that can be adapted to current ECF bleaching processes, with preference in cases where hydrogen peroxide is already used. In this study, the P((SC-CO2)) stage was evaluated as a replacement to the last peroxide stage of the D(EP)DP bleaching sequence and to the first peroxide stage of the D(EP)DP sequence, for an oxygen delignified eucalypt kraft-O(2) pulp. The P((SC-CO2)) stage was run with 0.5% hydrogen peroxide, at 15% consistency, 70 degrees C, and 73 bar. The reaction time was 30 min. The performances of regular P stages and the new P((SC-CO2)) stage were compared. Promising results were observed with the DEP((SC-CO2))DP sequence; the P((SC-CO2)) decreased kappa number from 2.7 to 2.1, and the hexenuronic acid groups from 17.0 to 12.4 mmol kg(-1). The P((SC-CO2)) stage showed poor performance when applied in the D(EP)DP((SC-CO2)) sequence. It is concluded that the process presents potential but requires further optimization to improve selectivity and efficiency.
Resumo:
Low-density polyethylene was filled with cellulose fibres from sugar cane bagasse obtained from organosolv/supercritical carbon dioxide pulping process. The fibres were also used after chemical modification with octadecanoyl and dodecanoyl chloride acids. The morphology, thermal properties, mechanical properties in both the linear and nonlinear range, and the water absorption behaviour of ensuing composites were tested. The evidence of occurrence of the chemical modification was checked by X-ray photoelectron spectrometry. The degree of polymerisation of the fibres and their intrinsic properties (zero tensile strength) were determined. It clearly appeared that the surface chemical modification of cellulose fibres resulted in improved interfacial adhesion with the matrix and higher dispersion level. However, composites did not show improved mechanical performances when compared to unmodified fibres. This surprising result was ascribed to the strong lowering of the degree of polymerisation of cellulose fibres (as confirmed by the drastic decrease of their zero tensile strength) after chemical treatment despite the mild conditions used. (c) 2007 Elsevier Ltd. All rights reserved.
Resumo:
Treated sisal fibers were used as reinforcement of polypropylene (PP) composites, with maleic anhydride-grafted PP (MAPP) as coupling agent. The composites were made by melting processing of PP with the fiber in a heated roller followed by multiple extrusions in a single-screw extruder. Injection molded specimens were produced for the characterization of the material. In order to improve the adhesion between fiber and matrix and to eliminate odorous substances, sisal fibers were treated with boiling water and with NaOH solutions at 3 and 10 wt.%. The mechanical properties of the composites were assessed by tensile, bend and impact tests. Additionally, the morphology of the composites and the adhesion at he fiber-matrix interface were analyzed by SEM. The fiber treatment led to very light and odorless materials, with yields of 95, 74 and 62 wt.% for treatments with hot water, 3 and 10 wt.% soda solution respectively. Fiber treatment caused an appreciable change in fiber characteristics, yet the mechanical properties under tensile and flexural tests were not influenced by that treatment. Only the impact strength increased in the composites with alkali-treated sisal fibers.
Resumo:
The concern related to the environmental degradation and to the exhaustion of natural resources has induced the research on biodegradable materials obtained from renewable sources, which involves fundamental properties and general application. In this context, we have fabricated thin films of lignins, which were extracted from sugar cane bagasse via modified organosolv process using ethanol as organic solvent. The films were made using the vacuum thermal evaporation technique (PVD, physical vapor deposition) grown up to 120 nm. The main objective was to explore basic properties such as electrical and surface morphology and the sensing performance of these lignins as transducers. The PVD film growth was monitored via ultraviolet-visible (UV-vis) absorption spectroscopy and quartz crystal microbalance, revealing a linear relationship between absorbance and film thickness. The 120 nm lignin PVD film morphology presented small aggregates spread all over the film surface on the nanometer scale (atomic force microscopy, AFM) and homogeneous on the micrometer scale (optical microscopy). The PVD films were deposited onto Au interdigitated electrode (IDE) for both electrical characterization and sensing experiments. In the case of electrical characterization, current versus voltage (I vs V) dc measurements were carried out for the Au IDE coated with 120 nm lignin PVD film, leading to a conductivity of 3.6 x 10(-10) S/m. Using impedance spectroscopy, also for the Au IDE coated with the 120 nm lignin PVD film, dielectric constant of 8.0, tan delta of 3.9 x 10(-3)) and conductivity of 1.75 x 10(-9) S/m were calculated at 1 kHz. As a proof-of-principle, the application of these lignins as transducers in sensing devices was monitored by both impedance spectroscopy (capacitance vs frequency) and I versus time dc measurements toward aniline vapor (saturated atmosphere). The electrical responses showed that the sensing units are sensible to aniline vapor with the process being reversible. AFM images conducted directly onto the sensing units (Au IDE coated with 120 nm lignin PVD film) before and after the sensing experiments showed a decrease in the PVD film roughness from 5.8 to 3.2 nm after exposing to aniline.