76 resultados para análisis de polímeros


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Yeast cell wall contains polymers glucan and mannan-protein that have received much attention with respect to their biological activities. Conventional isolation process involving treatments with hot alkali and acids cause degradation of these polymers. The aim of this paper was to study a low-degrading process for the isolation of glucan and mannan-protein from S. cerevisiae cell wall comprising physic and enzymatic treatments. Yeast cell glucan was obtained in a purity of 87.4% and a yield of 33.7%. The isolated mannan-protein presented antioxidant activity that was increased after thirty minutes of protease treatment. Antioxidant activity was determined by β-carotene/linoleate model system.

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The use of lignocellulosic fibers and their constituents, as raw materials in the production of polymeric and composite materials, represent an exceptional opportunity of sustainable technological development. In the present report works that discuss promising alternatives of obtaining and use of materials such as cellulose, hemicellulose, lignin, cellulose nanocrystals and biocomposites were revised. The advance in the use of biomass can be, in a near future, capable of going beyond the application difficulties of these vast materials, especially in relation to the economical unviability, by the production of high performance polymeric and composite materials. This advance would represent a higher profitability to some areas of agrobusiness, especially the sector of biofuels, which produces elevated amounts of biomass waste.

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Molecularly imprinted polymers (MIPs) consist of synthetic macromolecular matrix, obtained through molecular imprinting-based methods that show ability to selectively recognize important biological molecules and its application in the drug delivery field is under development. In the present review the main aspects related to the synthesis and characterization of MIPs are studied. The fundamental variables participating in the synthesis process, such as template molecule, functional monomers, cross-linking agents, solvents and imprinting approaches are discussed. Moreover, the main available methods for MIPs chemical and morphological characterization are presented and the importance of the obtained information is discussed.

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Dibenzalacetone and other aldol condensation products are known sunscreens commonly used in cosmetics. This type of compounds can easily be prepared in an Organic Chemistry Lab by reaction of aldehydes with ketones in basic medium. These compounds can be incorporated in poly(methyl methacrylate) and used as UV light absorbers, for example in sunglasses. This project has the advantage of using inexpensive reagents which are readily available in Chemistry Laboratories. This experiment can also be a base starting point for discussions of organic, polymer and photochemistry topics.

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In this review we summarize recent synthetic investigations about the preparation of oligothiophenes and polythiophenes, the most important π-conjugated organic materials for applications in electrochromic and electroluminescent devices. It is showed that many interesting and novel functionalized oligothiophenes have been synthesized by convenient coupling strategies (Heck, Kumada, Negishi, Suzuki, Stille and Ullmann) and oxidative coupling methods. Synthesis of polythiophenes are also presented and described according to chemical and electrochemical polymerization methodologies. The description of these noteworthy synthetic methods illustrates how important and promising are the interdisciplinary approaches in the obtaining of oligothiophenes and polythiophenes.

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This paper describes selective molecularly imprinted solid-phase extraction of ttMA from urine samples followed by derivatization and analysis by gas chromatography/mass spectrometry (GC/MS). The analytical calibration curve ranged from 0.3 to 7.0 mg L-1 (r = 0.999) and the limit of quantitation (LOQ) was 0.3 mg L-1. The method was applied for the determination of ttMA in urine samples from smokers and concentrations detected ranged from < LOQ to 1.64 mg L-1. Thus, the proposed method proved adequate for the determination of urinary ttMA in the biomonitoring of occupational exposure to low levels of benzene.

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Chemical imprinting technology has been widely used as a valuable tool in selective recognition of a given target analyte (molecule or metal ion), yielding a notable advance in the development of new analytical protocols. Since their discovery, molecularly imprinted polymers (MIPs) have been extensively studied with excellent reviews published. However, studies involving ion imprinted polymers (IIPs), in which metal ions are recognized in the presence of closely related inorganic ions, remain scarce. Thus, this review involved a survey of different synthetic approaches for preparing ion imprinted adsorbents and their application for the development of solid phase extraction methods, metal ion sensors (electrodes and optodes) and selective membranes.

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Enzymes are biological catalysts that offer great potential for use in the synthesis and modification of polymers, being more specific and greener than chemical catalysts. In this work, enzymes from the classes of hydrolases (lipase, cutinase and protease) and of oxidoreductases (horseradish peroxidase, manganese peroxidase and laccase) were identified as the main biocatalysts responsible for the synthesis of polymers. Biocatalysis can potentially be part of the life cycle of several polymers, including polyesters, polyurethanes, polycarbonates, polyamides, functionalized polysaccharides and polystyrene, allowing the synthesis of specialty macromolecules for fine applications and with higher added-value than commodity polymers.

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The aim of this work was to synthesize a polyurethane polymer matrix using polyols as a raw material to obtain a binder such as the hydroxyl terminated polybutadiene (HTPB) pre-polymer in energetic material formulation. The soybean-based polyol was the best starting raw material for producing a binder for solid fuel formulation in rocket motor applications. Characterization of the obtained soybean-based polyurethane binder was carried out by employing FT-IR analysis and thermo analytical techniques that showed similar HTPB binder thermo decomposition behaviors, confirming their potential for use as polymer matrix composites.

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This review reports the preparation and characterization of bionanocomposites based on biodegradable polymers reinforced with cellulose nanocrystals (CNC) described in the literature. The outstanding potential of cellulose nanocrystals as reinforcement fillers of biodegradable polymers is presented with an emphasis on the solution casting process, which is an appropriate method to investigate the physico-chemical effects of the incorporation of CNC into the polymeric matrices. Besides solution casting, other small scale methods such as electrospinning and layer-by-layer are also covered.

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Polymer recycling has been one of the most important trend in the petrochemical area. Among different technologies, biotechnological (enzymatic and/or microbial) degradation of polymers for the recovery of monomers and oligomers is environmentally-friendly and meet some green chemistry principles. In this work, conditions for the biotechnological degradation of some industrially-relevant polymers (e.g. poly(ethylene terephthalate) and polyethylene) were revised, and the main biocatalysts were identified. In most cases, biodegradation mechanisms are still unclear, thus being necessary more studies to unravel these promising bioprocesses. Polymer biodegradation studies also present considerable importance for other fields, including biomedical and agricultural.

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Este trabajo tuvo como objetivo probar diferentes tipos de azúcares en la extracción de ascosporas de Monosporascus cannonballus. Las ascosporas de este ascomiceto implicado en el "colapso" del melón (Cucumis melo), pueden ser extraidas del suelo mediante un proceso físico, utilizando un gradiente de sacarosa al 50% de concentración. El uso de este azúcar presenta elevado costo por muestra, por lo que se busca un azúcar sustitutivo, eficaz para realizar la extracción de estas ascosporas y a la vez, de bajo costo. En este trabajo, además de sacarosa, se utilizó también dextrosa, azúcar de mesa y azúcar de repostería, siendo utilizadas seis repeticiones para cada uno de los tratamientos. La media de ascosporas/g de suelo recogidas en cada uno de los tratamientos no difirió estadísticamente entre sí, según el test de Tukey (P=0,05). Se recomienda la utilización del azúcar de caña por su eficacia y bajo costo por muestra (R$ 0,042).

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A sobrevivência de Pectobacterium atrosepticum e de Ralstonia solanacearum foi avaliada em veículo à base de goma xantana (GX), um polímero biológico, e de goma xantana acrescida de polivinilpirrolidona (PVP), um polímero sintético. As culturas, após crescimento até 10(11) ufc mL-1 foram injetadas junto a essas formulações e a sobrevivência avaliada em diferentes condições de armazenamento: em temperatura ambiente, em refrigerador (4ºC) e em freezer (-20ºC), por 36 meses. A concentração de células viáveis foi realizada através de diluições seriadas. A patogenicidade foi avaliada em plantas hospedeiras e em iscas. Os resultados permitem observar que a concentração de células viáveis decresceu ao longo do tempo, mantendo-se entre 10³ e 10(4) ufc mL-1 ao final de três anos, exceto para a formulação à base de GX e armazenamento à -20°C, que se mostrou ineficiente para ambas as bactérias. Conclui-se, que os polímeros avaliados mostraram-se eficientes em preservar e manter as características bioquímicas e fisiológicas das bactérias Pectobacterium atrosepticum e de Ralstonia solanacearum.

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RESUMEN El estudio tuvo como objetivo una evaluación colorimétrica del extracto acuoso de hojas de la base y del ápice de árboles de teca, provenientes de repoblación forestal en Mato Grosso. Los parâmetros utilizados en el sistema CieLab fueron determinados por el colorímetro MINOLTA, modelo CR400. Los extractos acuosos fueron mantenidos a una tasa de calentamiento de 100 ºC por el tiempo de 1 y 2 horas separadamente. En el análisis de los datos se adoptó el delineamento enteramente casualizado (DEC), con 6 repeticiones, en el esquema de parcelas subdivididas. En este caso se consideró como factor principal la posición de la hoja en la copa del árbol y el tiempo de calentamiento como secundario. La luminosidad no presentó diferencias significativas, en función de los factores evaluados. Se observó una pérdida en la pigmentación amarilla de la base para el ápice. Así, se verificó el color amarillo anaranjado en la base y rojo anaranjado en el ápice. Se concluyó que tanto la posición de la hoja en la copa del árbol, cuanto el tiempo de calentamiento influyeron en la coloración de los extractos, siendo 1 hora suficiente para la obtención de los colorantes, independientemente de la posición en la copa.

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A pesar de los avances logrados en el control de las malezas con el uso de herbicidas, el manejo de las mismas no se simplificó, sino que, al contrario, surgieron nuevos desafíos, como la aparición de resistencia a herbicidas. En 2007, se reportó en Lolium multiflorum el segundo caso de resistencia a glifosato detectado en Argentina. En el sudeste de la provincia de Buenos Aires se registraron fallas de control a campo en poblaciones de Lolium multiflorum debido a su resistencia a distintos herbicidas de las familias de los inhibidores de ALS y de ACCasa y al herbicida glifosato. El objetivo de este estudio fue caracterizar el nivel de resistencia a ciertos herbicidas inhibidores de la ALS y de la ACCasa y al glifosato en una población de L. multiflorum de Lobería (Bs As, Argentina) supuestamente resistente (LmR). Se realizaron bioensayos en cajas de Petri y se determinó la GR50 mediante la variación en la longitud de coleoptile. Las curvas de dosis-respuesta se obtuvieron por medio de la ecuación log-logística. El biotipo LmR presentó resistencia múltiple a herbicidas con tres modos de acción diferentes: glifosato, inhibidores de ALS y de ACCasa. Dicho ensayo demostró la aparición de un biotipo de L. multiflorum con resistencia a múltiples principios activos.