160 resultados para Biorreator de membranas (MBR)

em Scielo Saúde Pública - SP


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Com o intuito de se estudarem as alterações nos teores lipídicos, constituintes das membranas lisossômicas, em fígados, durante a fase inicial da agressão esquistossomótica, foram utilizados camundongos infectados com 30 cercárias e 30 dias de infecção. Os triaglicerídios passaram de 200 ± 48 µg/mg de proteínas totais nos controles, para 165 ± 22 µg/mg, nos infectados. Na mesma ordem também diminuiram o colesterol livre de 539 ± 80, para 396 ± 54 µg/mg; os ésteres do colesterol de 270 ± 35, para 216 ± 36 µg/mg e os colinafosfatídios de 44 ± 5,7 para 31 ± 4,9 µg/mg. Os serinafosfatídios, os etanolaminafosfatídios e os esfingofosfatídios aumentaram, respectivamente de 58 ± 9,7 para 60 ± 8,5, de 72 ± 7,8 para 111 ± 15,7 e de 36 ± 4,9 para 63 7,1 µg/mg. Os ácidos graxos livres não se alteram significativamente, passaram de 1,7 ± 0,35 µEq/g, nos controles, para 1,8 ± 0,29 Eq/g nos animais infectados. Esses resultados padecem indicar que na fase inicial de esquistossomose mansônica hepática, antes da formação dos granulomas, são detectadas alterações importantes na constituição lipídica das membranas do compartimento lisossônico. Elas, talvez, sejam devidas a produtos catabólicos, excretados por vermes imaturos ou adultos, presentes em vasos do sistema portal.

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O objetivo deste trabalho foi avaliar a concentração da vinhaça por meio da microfiltração (MF) seguida de nanofiltração (NF). Os experimentos foram conduzidos em laboratório, a 60ºC e 500 rpm, com uso de vinhaça com 2,8% de sólidos totais (ST), para avaliação da influência da pressão no fluxo de permeado e na retenção de ST. Apressão variou de 1,0 a 3,4 bar, para MF, e de 15 a 35 bar, para NF. Utilizou-se membrana de celulose, com massa molecular de corte de 100 kDa, para MF, e membrana de poliestersulfona (PES), de 300, 500 e 1.000 Da, para NF. A MF realizada a 1,8 bar foi selecionada, por ter apresentado bom fluxo e menor consumo de energia, e o permeado obtido foi submetido à NF. ANF apresentou retenções de ST de 47-75%, e o fluxo mais elevado foi obtido com a PES 1.000 Da, a 35 bar. O concentrado final apresenta 4% de ST e é considerado adequado para uso em solo, em termosde demanda química deoxigênio e de teores de ST.

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Mudas micropropagadas de banana têm sido ofertadas ao mercado com o intuito de suprir a demanda de uma fruticultura cada vez mais tecnificada. Os preços mais elevados deste tipo de muda têm sido um dos maiores entraves ao seu uso. Vários são os fatores que oneram o seu preço final: mão-de-obra especializada, necessidade de laboratórios bem equipados, estrutura de aclimatização apropriada, baixa taxa de multiplicação de algumas variedades, etc. O presente trabalho relata a micropropagação de bananeiras cv. Terra, utilizando biorreatores de imersão temporária, com o objetivo de aumentar a taxa de multiplicação e diminuir os custos de produção das mudas. Os resultados obtidos mostraram que o ciclo de imersão de 4 horas e a renovação do meio de cultura aos 30 dias foram essenciais para uma maior produção de biomassa e crescimento dos explantes. A composição do meio de cultura influenciou o desenvolvimento dos explantes de banana cultivados nos biorreatores. Explantes cultivados em meio MS + 3mg/L de BAP com renovação para MS básico, após 30 dias, apresentaram maior produção de biomassa e alta taxa de multiplicação. Comparando-se o biorreator de imersão temporária com o sistema tradicional em semi-sólido, observou-se que, no primeiro, as microplantas apresentaram maior comprimento, produção de biomassa de 2,86 vezes maior e 2,20 vezes mais brotos do que no sistema tradicional.

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Membrane reactors are reviewed with emphasis in their applications in catalysis field. The basic principles of these systems are presented as well as a historical development. The several kinds of catalytic membranes and their preparations are discussed including the problems, needs and challenges to be solved in order to use these reactors in commercial processes. Some applications of inorganic membrane reactors are also shown. It was concluded that these systems have a great potential for improving yield and selectivity of high temperature catalytic reactions. However, it is still an imerging technology with a need for a lot of fundamental research; several challenges should be overcome for the successful commercial application of these systems.

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In this work we obtained microporous and mesoporous silica membranes by sol-gel processing. Tetraethylortosilicate (TEOS) was used as precursor. Nitric acid was used as catalyst. In order to study the affect of N,N-dimethylformamide (NDF) as drying additive, we used a molar ratio TEOS/NDF of 1/3. The performance of N,N-dimethylformamide was evaluated through monolithicity measurements. The structural evolutions occurring during the sol-gel transition and in the interconnected network of the membranes during thermal treatment were monitored by Fourier transform infrared spectroscopy (FTIR), thermogravimetric analyses and nitrogen sorption. We noted that in the presence of N,N-dimethylformamide, polymerization goes through a temporary stabilization of oligomers. The Si-O(H) bonds are stronger and belong to a more cross-linked structure for the N,N-dimethylformamide containing sol. The membranes obtained in the presence of N,N-dimethylformamide have larger surface area and its pore structure is in the range of mesoporous. The membranes obtained without additive have pore structure in the range of microporous.

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The literature carries many theories about the mechanism of action of local anesthetics (LA). We can highlight those focusing the direct effect of LA on the sodium channel protein and the ones that consider the interaction of anesthetic molecules with the lipid membrane phase. The interaction between local anesthetics and human erythrocyte membranes has been studied by ¹H and 31P nuclear magnetic resonance spectroscopy. It was found that lidocaine (LDC) and benzocaine (BZC) bind to the membranes, increase the mobility of the protons of the phospholipid's acyl chains, and decrease the mobility and/or change the structure of the polar head groups. The results indicate that lidocaine molecules are inserted across the polar and liquid interface of the membrane, establishing both electrostatic (charged form) and hydrophobic (neutral form) interactions. Benzocaine locates itself a little deeper in the bilayer, between the interfacial glycerol region and the hydrophobic core. These changes in mobility or conformation of membrane lipids could affect the Na+-channel protein insertion in the bilayer, stabilizing it in the inactivated state, thus causing anesthesia.

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The behaviour of Nafion® polymeric membranes containing acid-base dyes, bromothymol blue (BB) and methyl violet (MV), were studied aiming at constructing an optical sensor for pH measurement. BB revealed to be inadequate for developing sensing phases due to the electrostatic repulsion between negative groups of their molecules and the negative charge of the sulfonate group of the Nafion®, which causes leaching of the dye from the membrane. On the other hand, MV showed to be suitable due to the presence of positive groups in its structure. The membrane prepared from a methanolic solution whose Nafion®/dye molar ratio was 20 presented the best analytical properties, changing its color from green to violet in the pH range from 0.6 to 3.0. The membrane can be prepared with good reproducibility, presenting durability of ca. 6 months and response time of 22 s, making possible its use for pH determination in flow analysis systems.

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In this work commercial filters papers were organomodified with tetraethylorthosilicate (TEOS) and 3-aminopropyltriethoxysilane (3-APTS), aiming at the development of a new analytical procedure for in-situ speciation of labile and inert metal species in aquatic systems. Parameters that exert influence on the metal lability such as pH, chelating time, concentration and characteristics of the organic matter were studied in the laboratory using tests for metal recuperation. The results showed slower kinetics for Cu ion than for Ni, Mn and Cd in the absence of aquatic humic substances (AHS). The relative lability observed for complexed metals in aquatic humic substances using organomodified filter papers was Cu>>Cd>Ni>Mn. The pH values, structural characteristics and concentration of AHS exert strong influence on the lability of the metals. The results obtained showed that the utilization of organomodified filter papers can be an interesting and promising alternative for in situ characterization of metal lability in aquatic systems.

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Many theories about the mechanism of action of local anesthetics (LA) are described in the literature. Two types of theories can be distinguished: those that focus on the direct effects of LA on their target protein in the axon membranes, i.e. the voltage-gated sodium channel and the ones that take into account the interaction of anesthetic molecules with the lipid membrane phase for the reversible nerve blockage. Since there is a direct correlation between LA hydrophobicity and potency, it is crucial to take this physico-chemical property into account to understand the mechanism of action of LA, be it on the sodium channel protein, lipid(s), or on the whole membrane phase.

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The composite membranes prepared via incorporation of 12.5% of molecular sieves 3A, 4A, 5A and 13X into chitosan/poly(vinyl alcohol) (1:1). The composite membranes were immersed in the cross-linker sulfuric acid in order to acquire high proton conductivity for applications in electrolytes in PEMCF and DMF. The influence of the molecular sieves on the structural, optical, thermal, mechanical, morphologic and protonic conductivity properties and water/methanol swelling degree of membranes were investigated.

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Cellulose acetate polymeric membranes had been prepared by a procedure of two steps, combining the method of phase inversion and the technique of hydrolysis-deposition. The first step was the preparation of the membrane, and together was organomodified with tetraethylortosilicate and 3-aminopropyltrietoxysilane. Parameters that exert influence in the complexation of the metallic ion, as pH, time of complexation, metal concentration, had been studied in laboratory using tests of metal removal. The membranes had presented resistance mechanics and reactivity to cations, being able to be an alternative for the removal, daily pay-concentration or in the study of the lability of metals complexed.

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This paper presents a review of different chemical compositions that are used in the production of mixed ionic-electronic conducting membranes with the perovskite structure. In these dense membranes, oxygen from the air is permeated through ionic and electronic processes, and high oxygen permeation fluxes are observed at high temperatures (800-900 ºC). Various membranes were compared for their performance and properties after being synthesized by different methods.

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Cellulose acetates (CA) with different degrees of acetylation were synthesized from cellulose extracted from corn stover. Membranes were prepared for the ultrafiltration process with pure polymers and blend form of CA utilizing a dioxane/acetone system. The membranes were characterized according to their transport properties. The blend form materials presented the best results for application in ultrafiltration experiments. M-TAC/DAC (corn stover triacetate and diacetate) and M-TAC/DAC-Rho (corn stover triacetate and Rhodia diacetate) presented rejection to egg albumin protein of 87.39% and 80.50%, respectively. Thus, MWCO of 45 kDa was determined for these materials.

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The aim of this study was to produce membranes using the adapted cuprammonium method. The cellulose utilized was obtained from recycled agroindustrial residues: sugarcane bagasse, corn stover and soybean hulls. The levels of Cu (II) ions in regenerated cellulose membranes produced with cellulose from bagasse, corn stover and soybean hulls were 0.0236 wt%, 0.0255 wt% and 0.0268 wt%, respectively. These levels were approximately 15 times lower than those observed in previous studies (0.3634 wt%). Cellular viability data show that membranes produced from bagasse cellulose do not present toxicity to the cellular cultures studied. These results demonstrate an evolution in production of regenerated cellulose membranes from agroindustrial residues mainly due to a decrease in the Cu (II) ions level, showing the possibility of application of these systems with improved membranes processing.