956 resultados para vegetais
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São apresentadas espécies químicas estudadas no setor sucroalcooleiro. A cana-de-açúcar, como vegetal, pertence à família das gramíneas e sua reprodução é através de parte do seu colmo, utiliza água do solo e CO2, em que produz sacarose, na forma de caldo e também utilizamos seu bagaço, que compõe o colmo. A indústria é auto-suficiente devido à geração de energia através do bagaço, o caldo é uma solução aquosa turva e esverdeada e contem em sua maioria água e sacarose, mas também possui muitos colóides que são responsáveis pela turbidez do caldo.
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A abordagem da doença alérgica, nomeadamente da alergia respiratória, surge reforçada com o contributo da Aerobiologia no conhecimento, evolução e controlo da doença. Por seu turno, a caracterização bioquímica dos aeroalergénios de uma região pemite avaliar a sua composição e potencial alergénico, com particular interesse para espécies vegetais cuja introdução e/ou proximidade a áreas populacionais, potenciam o aparecimento ou o aumento de sensibilização a aeroalergénios. O trabalho apresentado nesta dissertação incidiu em duas vertentes de investigação distintas, porém complementares e interdependentes: numa primeira parte, no estudo da composição aerobiológica da atmosfera da cidade do Funchal no período 2002-2004 (Capítulo I), e numa segunda parte, na caracterização bioquímica dos alergénios polínicos mais frequentes detectados no referido período (Capítulo II). Assim, numa primeira parte, a monitorização aerobiológica (incluindo pólenes, esporos de fungos e demais partículas de origem biológica), foi realizada com um polinómetro do tipo volumétrico, tipo Hirst (Burkard). Os dados obtidos foram correlacionados com os parâmetros meteorológicos e avaliado o seu significado estatístico, permitindo antever a influência das variáveis ambientais em cada tipo particular de pólen e de fungo. Constataram-se algumas diferenças no conteúdo aerobiológico comparativamente ao restante território nacional. No espectro polínico dominaram as Poaceae e Urticaceae, plantas ornamentais (Asteraceae, Boraginaceae, Cupressaceae) e as representativas da faixa norte da cidade (Ericaceae, Myrtaceae e Pinaceae). Comparativamente a outras regiões do País, o espectro polínico foi no cômputo geral semelhante, embora se destaque para esta região, a expressividade do tipo Corylus no total polínico anual. A Primavera e o início de Verão, corresponderam às épocas de maior diversidade e concentração de pólenes. As diferenças encontradas no espectro polínico da cidade do Funchal são explicadas por variáveis intrínsecas desta região, tais como a composição vegetal, a localização da cidade, condições geo-climáticas inerentes, e a influência dos parâmetros meteorológicos, nomeadamente a temperatura e humidade relativa. Verificou-se a ocorrência de um maior número de pólenes quando a humidade se situa entre os 50 e 60 %, com a precipitação e a velocidade do vento a atingir valores mais baixos. A análise da variação intra-diurna observada revelou que há uma maior representação de pólenes entre as 11 e as 16 horas. Este estudo aerobiológico confere dados para o estabelecimento do primeiro calendário polínico da região e a definição de padrões de sazonalidade. Por seu turno, a fenologia dos principais tipos polínicos observados no Funchal permite definir um padrão anual de ocorrências polínicas. Relativamente à aeromicologia, verifica-se que, durante o período de estudo foram observados esporos de fungos sobretudo na Primavera (particularmente em Abril e Maio), início do Verão e no Outono. Os Deuteromicetes representaram a classe predominante, sendo Cladosporium o fungo mais abundante na atmosfera do Funchal, cujas concentrações mais elevadas ocorrem a humidades relativas de 40 a 70%. Tal como os pólenes, os esporos apresentam um dinâmica de variação intra-diurna particular: ocorreram em maior concentração entre as 13 e as 15 horas, surgindo igualmente nas primeiras horas da madrugada e da noite. O coberto vegetal do Funchal poderá afectar a aeromicologia local, na medida em que constitui um substrato importante para o crescimento de fungos, tal como as gramíneas que proliferam em quantidade e variedade ao longo de todo o ano. Constatou-se a existência de correlação entre a ocorrência de alguns esporos de fungos e taxa polínicos mais frequentes na atmosfera do Funchal. A análise de Spearman sugere a existência de correlação entre a ocorrência de Parietaria com a de Alternaria e Drechslera. Os esporos de fungos, incluindo esporos de fetos constituem uma fracção significativa das partículas na atmosfera do Funchal, sendo cerca de 11 vezes superior à dos pólenes. Na segunda parte do trabalho, o estudo bioquímico dos aeroalergénios polínicos implicou a optimização dos procedimentos de extracção, apurando-se três técnicas para a obtenção dos perfis proteicos de extractos de pólen desde a sua fonte natural. Esta análise permitiu detectar e identificar através das técnicas de SDS-PAGE-Imunoblotting, proteínas IgE específicas do pólen de plantas possivelmente relacionadas com a sensibilização alérgica. Em consonância com a monitorização aerobiológica, foram preparados extractos de pólen de 10 espécies de plantas. Os resultados em SDS-PAGE revelaram um elevado polimorfismo proteico em todos os extractos. Obtiveram-se extractos de pólen de 7 plantas acerca das quais não se conheciam estudos desta natureza: Acacia mearnsii, Avena barbata, Carduus squarrosus, Carlina salicifolia, Datura candida, Echium nervosum e Urtica membranosa. Por imunoblotting detectou-se no soro de dois pacientes IgE específica a proteínas de D. candida, com pesos moleculares entre 150,71 ± 0,05 e 58,92 ± 5,67 KDa. O soro de um deles reagiu igualmente com 5 alergénios de P. pinaster com 42,02 ± 0,05; 38,61 ± 0,46 ; 35,70 ± 7,78 ; 31,82 ± 2,11 e 27,45 ± 0,46 KDa. No soro de outro indivíduo foi detectada IgE específica para uma proteína de A. mearnsii com 66,66 ± 0,13 KDa, e outra de C. squarrosus,de 67,53 ± 0,29 KDa. É de destacar a sensibilidade e fiabilidade da técnica de Imunoblotting, e o interesse em incluila na metodologia de diagnóstico complementar da alergia respiratória. A ampla difusão de espécies como Ricinus communis, Urtica spp. ou A. mearnsii e sua proximidade à presença humana, reforçam, por um lado, a importância da vigilância aerobiológica, e por outro lado, requer uma definição do seu carácter alergénico para a população desta região.
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A vitamina C é uma das vitaminas mais importantes para a nutrição humana e destacase pela sua eficiente acção antioxidante e participação em inúmeras reacções metabólicas como cofactor enzimático. A vitamina C inclui vários compostos que têm actividade biológica semelhante ao ácido L-ascórbico (L-AA), incluindo o produto da sua oxidação, ácido desidroascórbico (DHAA), e as formas sintéticas. Os seres humanos não são capazes de sintetizar a vitamina C, sendo necessário obter este nutriente através da alimentação. As frutas e vegetais são alimentos ricos em vitamina C, ao contrário das carnes e cereais. Existem diversos métodos analíticos disponíveis para quantificação dos teores de vitamina C nos alimentos, sendo os métodos cromatográficos os mais utilizados devido à sua capacidade de separação e elevada sensibilidade e precisão. Neste trabalho, foi desenvolvido e validado um método de cromatografia líquida de ultra-eficiência (UHPLC) para determinar o conteúdo de vitamina C total (L-AA + DHAA) em várias frutas e vegetais com proveniências diferentes. A produção de produtos hortofrutícolas na ilha da Madeira não é auto-suficiente, sendo necessário importar alguns alimentos. Realizou-se um pequeno estudo comparativo do teor total de vitamina C e a sua degradação nos produtos locais e importados. O DHAA foi medido indirectamente através da reacção com o redutor DL-1,4-ditiotreitol (DTT), antes da injecção cromatográfica. Os resultados obtidos foram comparados com a titulação iodométrica. As amostras foram extraídas durante 5 dias consecutivos sendo os extractos resultantes armazenados a -80ºC imediatamente após a extracção até ao dia de análise. A estabilidade do L-AA nos extractos conservados a diferentes temperaturas e os efeitos do cozimento dos alimentos sobre esta molécula foram avaliados. A actividade antioxidante dos produtos hortofrutícolas foi também medida pelo método ABTS (2,2-azino-bis(3-etilbenzotiazolina- 6-sulfonato). O estudo da validação do método apresentou resultados bastante satisfatórios, demonstrando uma boa repetibilidade e sensibilidade elevada. Além disso, o método proposto revelou ser uma abordagem melhorada, simples e rápida para a determinação do conteúdo de vitamina C total em diversos produtos alimentares.
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ARAUJO, Afranio Cesar de et al. Síndromes de polinização ocorrentes em uma área de Mata Atlântica, Paraíba, Brasil. Biotemas, Florianopolis, v. 4, n. 22, p.83-94, dez. 2009. Disponível em:
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The fruit fly Ceratitis capitata is considered the most destructive pest of the world fruitculture. Many pest management practices, mainly based on agrochemicals, have been developed to allow the world-wide commerce of fruit. Solutions to decrease the use of synthetic insecticides in agriculture are based on the development of new target-specific compounds which cause less damage to the environment, especially vegetal proteins with insecticidal effects. The aim of this work was to evaluate the deleterious effect of a purified vicilin of E. velutina (EvV) seeds to C. capitata larvae and adult insects and to investigate the mechanisms involved in these effects. EvV was purified, characterized and its deleterious effect was tested in bioassay systems. EvV mechanism of action was determined by immunodetection techniques and fluorescence localization in chitin structures that are present in C. capitata digestory system. EvV is a glycoprotein with affinity to chitin. Its molecular weight, of 216,57 kDa, was determined by gel filtration chromatography in FPLC system. Using SDS-PAGE, it was possible to observe EvV dissociation in two main subunits of 54,8 and 50,8 kDa. When it was submitted to eletrophoresis in native conditions, EvV presented only one band of acid characteristic. The WD50 and LD50 values found in the bioassays were 0,13% and 0,14% (w/w), respectively for the larvae. EvV deleterious effects were related to the binding to chitin structures presented in peritrophic membrane and gut epithelial cells, associated with its low digestibility in C. capitata digestive tract. The results described herein are the first demonstration of the larvicidal effects of plant protein on C. capitata larvae. EvV may be part of the pest management programs, in the toxic bait composition, or an alternative in plant improvement program
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Sulfated polysaccharides (PS) are biomolecules with a great biotechnological potential. There are few data about PS from high plants. In addition, pharmacological activities of PS from plants have not been carrying out. The aim of this work was extract PS from the angiosperm Halodule wrightii and study their anticoagulant and antioxidant activities. Histological analysis showed the presence of the PS manly in the roots. A polysaccharide-rich extract was obtained from H. wrightii by proteolysis followed by methanol and TCA precipitation. Chemical, infra-red analysis and agarose gel electrophoresis in 1.3 diaminopropane acetate buffer confirmed the presence of sulfated polysaccharides made by glucose, galactose, xylose and sulfate residues in the proportion 1: 0,9: 1: 1. In addition polyacrilamide electrophoresis have shown that extract is mainly compose by 11kDa sulfated polysaccharides. Pharmacological analysis have shown total antioxidant capacity (CAT) that resulted in 15,21 μg for equivalent of ascorbic acid, scavenging activity of the DPPH radical with 41,36 % of scavenging, activity of reducing power with the maximum of 0,290 nm (50 % of vitamin C activity) and scavenging activity superoxide radical (O2-) with a maximum of 32,23 %. Chelating activity of metal less than 4% and scavenging activity of the radical hydroxyl (OH-) less than 2%. Time of activated partial tromboplastin (aPTT) doubling the time of coagulation from 20μg of and protrombin time (PT) was not present. The data indicate that PS from Halodule wrightii could be considered for future applications in medicine, food production or cosmetic industry
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Sulfated polysaccharides (PS) are biomolecules with a great biotechnological potential. There are few data about PS from high plants. In addition, pharmacological activities of PS from plants have not been carrying out. The aim of this work was extract PS from the angiosperm Halodule wrightii and study their anticoagulant and antioxidant activities. Histological analysis showed the presence of the PS manly in the roots. A polysaccharide-rich extract was obtained from H. wrightii by proteolysis followed by methanol and TCA precipitation. Chemical, infra-red analysis and agarose gel electrophoresis in 1.3 diaminopropane acetate buffer confirmed the presence of sulfated polysaccharides made by glucose, galactose, xylose and sulfate residues in the proportion 1: 0,9: 1: 1. In addition polyacrilamide electrophoresis have shown that extract is mainly compose by 11kDa sulfated polysaccharides. Pharmacological analysis have shown total antioxidant capacity (CAT) that resulted in 15,21 μg for equivalent of ascorbic acid, scavenging activity of the DPPH radical with 41,36 % of scavenging, activity of reducing power with the maximum of 0,290 nm (50 % of vitamin C activity) and scavenging activity superoxide radical (O2-) with a maximum of 32,23 %. Chelating activity of metal less than 4% and scavenging activity of the radical hydroxyl (OH-) less than 2%. Time of activated partial tromboplastin (aPTT) doubling the time of coagulation from 20μg of and protrombin time (PT) was not present. The data indicate that PS from Halodule wrightii could be considered for future applications in medicine, food production or cosmetic industry
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Studies indicate that several components were isolated from medicinal plants, which have antibacterial, antifungal, antitumor and anti-inflammatory properties. Sepsis is characterized by a systemic inflammation which leads to the production of inflammatory mediators exacerbated by excessive activation of inflammatory cells and disseminated intravascular coagulation (DIC), in which the human neutrophil elastase plays an important role in its pathogenesis. Several epidemiological studies suggest that components of plants, especially legumes, can play a beneficial role in reducing the incidence of different cancers. A chymotrypsin inhibitor of Kunitz (Varela, 2010) was purified from seeds of Erythrina velutina (Mulungu) by fractionation with ammonium sulfate, affinity chromatography on Trypsin-Sepharose, Chymotrypsin-Sepharose and ion exchange chromatography on Resource Q 1 ml (GE Healthcare) in system FPLC / AKTA. The inhibitor, called EvCI, had a molecular mass of 17 kDa determined by SDS-PAGE. The purified protein was able to inhibit human neutrophil elastase (HNE), with an IC50 of 3.12 nM. The EvCI was able to inhibit both pathways of HNE release stimulated by PAF and fMLP (75.6% and 65% respectively). The inhibitor also inhibited leukocyte migration in septic mice about 87% and prolonged the time of coagulation and inhibition factor Xa. EvCI showed neither hemolytic activity nor cytotoxicity. EvCI showed a selective antiproliferative effect to HepG2 cell lines with IC50 of 0.5 micrograms per milliliter. These results suggest EvCI as a molecule antagonist of PAF / fMLP and a potential use in fighting inflammation related disorders, disseminated intravascular coagulation (DIC) and cancer
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Flowering is a fundamental process in the life cycle for plant. This process is marked by vegetative to reproductive apical meristem conversion, due to interactions between several factors, both internal and external to plant. Therefore, eight subtractive libraries were constructed using apical meristem induced or not induced for two contrasting species: Solanum lycopersicum cv. Micro-Tom and Solanum pimpinellifolium. Several cDNAs were identified and among these, were selected two cDNAs: one homologous cDNA to cyclophilin (LeCYP1) and the other to Auxin repressed protein (ARP). It has observed that LeCYP1 and ARP genes are important in the developmental process to plants. In silico analysis, were used several databases with the exclusion criterion E-value <1.0x10-15. As a result, conservation was observed for proteins analyzed by means of multiple alignments and the presence of functional domains. Then, overexpression cassettes were constructed for the ARP cDNA in sense and antisense orientations. For this step, it was used the CaMV35S promoter. The cDNA orientation (sense or antisense) in relation to the promoter was determined by restriction enzymes and sequencing. Then, this cassette was transferred to binary vector pZP211 and these cassettes were transferred into Agrobacterium tumefaciens LBA4404. S. lycopersicum cv. Micro-Tom (MT) and MT-Rg1 plants were transformed. In addition, seedlings were subjected to hormone treatments using a synthetic auxin (- naphthalene acetic acid) and cyclosporin A (cyclophilin inhibitor) treatments and it was found that the hormone treatment there were changes in development of lateral roots pattern, probably related to decreases in auxin signaling caused by reduction of LeCYP1 in MT-dgt plants while cyclosporin A treatments, there was a slight delay in flowering in cv. MT plants. Furthermore, assay with real-time PCR (RT-qPCR) were done for expression level analysis from LeCYP1 and ARP in order to functionally characterize these sequences in tomato plants.
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The genome of all organisms constantly suffers the influence of mutagenic factors from endogenous and/or exogenous origin, which may result in damage for the genome. In order to keep the genome integrity there are different DNA repair pathway to detect and correct these lesions. In relation to the plants as being sessile organisms, they are exposed to this damage frequently. The Base Excision DNA Repair (BER) is responsible to detect and repair oxidative lesions. Previous work in sugarcane identified two sequences that were homologous to Arabidopsis thaliana: ScARP1 ScARP3. These two sequences were homologous to AP endonuclease from BER pathway. Then, the aim of this work was to characterize these two sequence using different approaches: phylogenetic analysis, in silico protein organelle localization and by Nicotiana tabacum transgenic plants with overexpression cassette. The in silico data obtained showed a duplication of this sequence in sugarcane and Poaceae probably by a WGD event. Furthermore, in silico analysis showed a new localization in nuclei for ScARP1 protein. The data obtained with transgenic plants showed a change in development and morphology. Transgenic plants had slow development when compared to plants not transformed. Then, these results allowed us to understand better the potential role of this sequence in sugarcane and in plants in general. More work is important to be done in order to confirm the protein localization and protein characterization for ScARP1 and ScARP3
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Nowadays the environmental issues are increasingly highlighted since the future of humanity is dependent on the actions taken by man. Major efforts are being expended in pursuit of knowledge and alternatives to promote sustainable development without compromising the environment. In recent years there has been a marked growth in the development of reinforced composite fiber plants, as an alternative for economic and ecological effects, especially in the substitution of synthetic materials such as reinforcement material in composites. In this current study the chemical- physical or (thermophysics )characteristics of the babassu coconut fiber, derived from the epicarp of the fruit (Orbignyda Phalerata), which the main constituents of the fiber: Klason lignin, insoluble, cellulose, holocellulose, hemicellulose and the content of ash and moisture will be determined. A study was conducted about the superficial modification of the fibers of the epicarp babassu coconut under the influence of chemical treatment by alkalinization, in an aqueous solution of NaOH to 2.5% (m/v) and to 5.0% to improve the compatibility matrix / reinforcement composite with epoxy matrix. The results of the changes occurred in staple fibers through the use of the techniques of thermogravimetric analyses (TG) and differential scanning calorimetry (DSC). The results found on thermal analysis on samples of fiber without chemical treatment (alkalinities), and on fiber samples treated by alkalinization show that the proposed chemical treatment increases the thermal stability of the fibers and provides a growth of the surface of area fibers, parameters that enhance adhesion fiber / composite. The findings were evaluated and compared with published results from other vegetable fibers, showing that the use of babassu coconut fibers has technical and economic potential for its use as reinforcement in composites
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Biodiesel is a fuel obtained from vegetable oils, such as soy, castorbean, among others. The monoester of fatty acid of these oils have chains with mono, di and tri double connections. The presence of these insaturations are susceptible to oxidization. Antioxidants are substances able to prevent oxidization from oils, fats, fat foods, as well as esters of Alquila( biodiesel). The objective of this work is to summarize a new antioxidant from the Cashew Nut Shell Liquid (CNSL) using the electrolysis technique. A current of 2 amperes was used in a single cell of only one group and two eletrodos of stainless steel 304 in a solution of methanol, together with the eletrolits: acetic acid, sodium chloride and sodium hydroxide, for two hours of agitation. The electrolysis products are characterized by the techniques of cromatography in a thin layer, spectroscopy of infrared and gravimetric analysis. The material was submitted to tests of oxidative stability made by the techniques of spectropy of impendancy and Rancimat (EN 14112). The analyses of characterization suggest that the polimerization of the electrolytic material ocurred. The application results of these materials as antioxidants of soy biodiesel showed that the order of the oxidative stability was obtained by both techniques used
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In general, among the corrosion inhibitors surfactants are the most commonly used compounds, because they are significantly effective by forming protective films on anodic and cathodic areas. In this study, microemulsions containing he biodegradable saponified coconut oil as surfactant (SME-OCS) was used as green corrosion inhibitors. With this purpose, methanolic extracts of Ixora coccinea Linn (IC) and a polar fraction rich in alkaloids (FA) obtained from Croton cajucara Benth solubilized in the SME-OCS system were examined in the presence of AISI 1020 carbon steel, in saline solution (NaCl 3,5 %). The efficiency of corrosion inhibition of IC and FA were evaluated in the following microemulsions: SME-OCS-IC and SME-OCS-FA. The microemulsion system SME-OCS in the presence and absence of IC and FA was assessed by measurements of weight loss and the electrochemical method of polarization resistance, with variation in the concentration of IC and FA (50 - 400 ppm), showing significant results of corrosion inhibition (83,6 % SME-OCS; 92,2 % SME-OCS-FA; and 95,3 % SME-OCS-IC)
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The use of raw materials from renewable sources for production of materials has been the subject of several studies and researches, because of its potential to substitute petrochemical-based materials. The addition of natural fibers to polymers represents an alternative in the partial or total replacement of glass fibers in composites. In this work, carnauba leaf fibers were used in the production of biodegradable composites with polyhydroxybutyrate (PHB) matrix. To improve the interfacial properties fiber / matrix were studied four chemical treatments to the fibers..The effect of the different chemical treatments on the morphological, physical, chemical and mechanical properties of the fibers and composites were investigated by scanning electron microscopy (SEM), infrared spectroscopy, X-ray diffraction, tensile and flexural tests, dynamic mechanical analysis (DMA), thermogravimetry (TGA) and diferential scanning calorimetry (DSC). The results of tensile tests indicated an increase in tensile strength of the composites after the chemical treatment of the fibers, with best results for the hydrogen peroxide treated fibers, even though the tensile strength of fibers was slightly reduced. This suggests a better interaction fiber/matrix which was also observed by SEM fractographs. The glass transition temperature (Tg) was reduced for all composites compared to the pure polymer which can be attributed to the absorption of solvents, moisture and other low molecular weight molecules by the fibers
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The use of gypsum, one of the oldest building materials for the construction industry in the country has been experiencing a significant and steady growth, due to its low cost and some of its properties that confer comparative advantage over other binder materials. Its use comprises various applications including the coating of walls and the production of internal seals and linings. Moreover, the fibers are being increasingly incorporated into arrays fragile in an attempt to improve the properties of the composite by reducing the number of cracks, the opening of the same and its propagation velocity. Other properties, depending on the function of the component material or construction, among these thermal and acoustic performances, are of great importance in the context of buildings and could be improved, that is, having better performance with this embodiment. Conduct a comparative study of physico-mechanical, thermal and acoustic composite gypsum incorporating dry coconut fiber, in the form of blanket, constituted the main objective of this work. Improving the thermal and acoustic performances of precast gypsum, used for lining and internal vertical fences of buildings, was the purpose of development of these composites. To evaluate the effect of fiber content on the properties of the composites were used to manufacture the composite layer with different thicknesses. The composites were fabricated in the form of plates with dimensions of 500x500x24mm. To facilitate the comparative study of the properties were also made with material gypsum boards only. We then determined the physico-mechanical, thermal and acoustical plaster and composites. The results indicated that the composites were significant gains in relation to thermal performance and also acoustic, in certain frequency range, increasing the thickness of the blanket. Concerning other physical-mechanical properties, the results showed that although the compressive strength was lower than for the composite did not occur after a fracture catastrophic failure. The same trend was observed with regard to resistance to bending, since the composites have not suffered sudden rupture and still continued after the load supporting point of maximum load