1000 resultados para Biomassa Microbiana
Resumo:
O Norte de Minas Gerais cultiva basicamente bananeira 'Prata-Anã', cultivar especialmente exigente em zinco. A possibilidade de fornecimento de Zn, sem que esse entre em contato com o solo, é importante para a região, uma vez que vários fatores levam à baixa disponibilidade do elemento fornecido via solo, como: elevado teor de matéria orgânica na camada superficial (resultante de resíduos culturais); manutenção de elevado pH do solo - acima de 6,00 - como estratégia contrária à proliferação do agente causal do mal- do-panamá; adubações frequentes com potássio e magnésio, que além de basificar o meio, diminuem a participação do Zn no equilíbrio cátion-ânion do solo, dificultando a absorção deste micronutriente pela planta. Para determinar a distribuição de biomassa e minerais na bananeira Prata-Anã, cultivada sob irrigação no norte de Minas Gerais, quando o zinco é fornecido via broto desbastado, foi conduzido um experimento no Perímetro Irrigado de Jaíba. As plantas foram adubadas com 0,00; 1,66 e 3,33 g.família-1 de Zn (0; 25 e 50 g.família-1.ano-1 de sulfato de Zn), via muda desbastada. Um mês após as adubações de outubro de 2007 e junho de 2008, avaliaram-se a produção de massa fresca (MF) e massa seca (MS), os teores e conteúdos de minerais em todos os órgãos de uma ''família'' de bananeira composta por planta-mãe com cacho + planta-filha alta + planta-neta. As doses de Zn não influíram na produção de MF e MS das plantas na primeira avaliação, enquanto na segunda avaliação observou-se efeito positivo do tratamento apenas para MF acumulada nas folhas inferiores, nas porções do terço médio e inferior do pseudocaule, e no rizoma da planta-mãe. Tanto o teor quanto o acúmulo de nutrientes nas plantas-mãe apresentaram a seguinte ordem decrescente: K > N > Ca > Mg > P > S > Fe > Zn > B > Cu. Os teores de Zn foram afetados pela dose desse micronutriente na maioria das situações estudadas. O Zn fornecido via broto desbastado ascendeu na planta-mãe, e daí se redistribuiu na ''família'' da bananeira.
Resumo:
Implementació d’un nou sistema de calefacció per a una granja d’engreix de pollastres. Es planteja el canvi de l’actual sistema de generació i distribució de calor (amb pantalles de gas propà), el qual és antic i ineficient pels seus anys de funcionament, per un sistema innovador mitjançant uns termoconvectors amb bescanvi aigua-aire. A més, la font de generació de calor serà amb una caldera de biomassa, aprofitant un combustible local i renovable: estella forestal. El canvi i la proposta d’instal•lació tenen dues finalitats ben diferenciades: millora en el maneig, la producció i el benestar animal dins de la nau dels pollastres d’engreix i estalvi econòmic potencial, fixat sobre el 70%, per millorar la rendibilitat de l’explotació i, a més, fomentant el consum d’un combustible renovable i de la zona, neutre en emissions de CO2. L’explotació ramadera es troba a Verges (Baix Empordà). L’empresa basa la seva activitat en l’engreix de pollastres i la producció extensiva de cereals
Resumo:
O objetivo deste trabalho foi avaliar a aplicação de produtos alternativos e de refrigeração, com posterior aplicação de etileno, sobre a qualidade de ameixas ‘Reubennel’, a fim de prolongar o período de comercialização. Os produtos aplicados logo após a colheita foram: biomassa cítrica (Ecolife®)- 150 mL (p.c.) 100 L-1 por 30 s; vapor de etanol - 2 mL kg-1 por 2 h (20ºC/80%UR), e cloreto de cálcio (CaCl2) - 1% (p/v) por 10 min. Em seguida, os frutos foram armazenados a 0ºC/95%UR. Após 17 e 33 dias, três caixas de cada tratamento, com 40 frutos cada, foram removidas da câmara de refrigeração, sendo uma das caixas segregada para análises, enquanto as outras duas foram transferidas para 20oC/85%UR por mais 4 dias. Destas caixas, uma de cada tratamento foi submetida à climatização, através da aplicação de etileno (100 uL L-1, 72 h) em minicâmara (200 L). Procedeu-se à avaliação da qualidade dos frutos ao zero; 17; 17+4; 33 e 33+4 dias, através de análises físico-químicas, microbiológicas e sensoriais. Os resultados foram analisados estatisticamente, em delineamento experimental inteiramente casualizado para os produtos alternativos e em fatorial (4x2) para a combinação com a climatização. Concluiu-se que o tratamento pós-colheita das ameixas com vapor de etanol reduz a população microbiana, bem como proporciona incremento dos sólidos solúveis. As ameixas ‘Reubennel’ podem ser armazenadas por até 33 dias sob refrigeração (0ºC/95%UR), seguindo-se a climatização com etileno e,imediatamente, comercializadas.
Resumo:
This work investigates the reaction parameters of an immobilized lipase in the esterification reaction of n-butanol and butyric acid. Microbial lipase from Candida rugosa was immobilized onto styrene-divinylbenzene copolymer (STY-DVB) and subsequently introduced in an organic medium containing substrates in appropriate concentrations. Heptane was selected as solvent on the basis of its compatibility with the resin and the enzyme. The influence of molar ratio of acid to alcohol, amount of immobilized lipase and temperature on the butyl butyrate formation was determined. The results were compared with those achieved with free lipase and Lipozyme (commercially immobilized lipase) under the same operational conditions.
Resumo:
Poly (ethylene) glycol (PEG) and bovine serum albumin (BSA), as additive agents, were used to enhance the activity of immobilized microbial lipase in organic solvent. Controlled pore silica (CPS) was selected as matrix and different immobilization procedures were evaluated: directly lipase binding on CPS and simultaneous addition of lipase and additive agent on the same support. The highest coupling yield (59.6%) was attained when the immobilization procedure was performed at lipase loading of 150 U/g support in the presence of PEG-1.500. This immobilized system was used in esterification reactions under repeated batch cycles and the biocatalyst half-life was found to increase 2.7 times when compared with the control.
Resumo:
Isomaltulose, a functional isomer of sucrose, is a non-cariogenic reducing disaccharide; has a low glycemic index; selectively promotes growth of beneficial bifidobacteria in the human intestinal microflora; and has greater stability than sucrose in some foods and beverages. Isomaltulose is a nutritional sugar that is digested more slowly than sucrose, and has health advantages for diabetics and nondiabetics. Immobilization techniques, especially entrapment of the cells, are widely used for conversion of sucrose into isomaltulose. Immobilization offers advantages such as minimum downstream processing, continuous operation and reusability of cells. Isomaltulose is currently considered to be a promising sugar substitute.
Resumo:
Ozonation tests with and without prior filtration by means of a 50 micron mesh cartridge filter were conducted with primary sanitary effluents. Filtration led to increased inactivation efficiencies with regard to total and thermotolerant coliforms but it did not seem to influence heterotrophic plate count (HPC) bacteria inactivation efficiencies significantly. Application of the Chick-Watson model to experimental data obtained in the situation of constant inactivation showed that the ozone dosage was more important to bacterial inactivation than the contact time with regard to the cases of thermotolerant coliform inactivation in filtered samples and HPC bacteria and total coliform inactivation in non-filtered samples.
Resumo:
Increased production of biomass is currently the only immediately accessible alternative for large-scale carbon sequestration and it can produce large amounts of food, fuel and raw materials for the chemical industry that can in turn growingly replace oil as a source of organic building blocks and also of hydrogen and sulfur. Development of processes for biomass and abundant minerals transformation into chemical raw materials should now benefit from large inputs from nanotechnologies, biotechnologies, information and micro-reactor technologies. Success in R&D&Innovation along this line can yield new products and processes needed to perform desirable functions within a sustainable development paradigm.
Resumo:
Biomass was the dominating source of energy for human activities until the middle 19th century, when coal, oil, gas and other energy sources became increasingly important but it still represents ca. 10% of the worldwide energy supply. The major part of biomass for energy is still "traditional biomass" used as wood and coal extracted from native forests and thus non-sustainable, used with low efficiency for cooking and home heating, causing pollution problems. This use is largely done in rural areas and it is usually not supported by trading activities. There is now a strong trend to the modernization of biomass use, especially making alcohol from sugar cane thus replacing gasoline, or biodiesel to replace Diesel oil, beyond the production of electricity and vegetable coal using wood from planted forests. As recently as in 2004, sustainable "modern biomass" represented 2% of worldwide energy consumption. This article discusses the perspectives of the "first" and "second" technology generations for liquid fuel production, as well as biomass gaseification to make electricity or syngas that is in turn used in the Fischer-Tropsch process.
Resumo:
Natural peptides are outstanding as the most promising macromolecules in the search for new drugs, especially those of cyclic nature. The higher plants revealed a very peculiar composition of their cyclic peptides, which distinguish themselves by a "head-to-tail" cyclization. It is possible to define two groups of cyclic peptides from plant biomass. Those called in this review as Eucyclopeptides formed by 2-12 amino acid, and Cyclotides considered as circular polypeptides, composed of 29-37 amino acid that retain three disulfides bridges in an arrangement known as cyclic cystine knot. Searching for plant peptides should form into a subject for scientific research in the forefront of great importance for bioprospecting natural products macromolecular.
Resumo:
Activities related to nuclear industry, production of phosphoric acid and hospitals have generated considerable volumes of radioactive waste containing uranyl ions. Banana pith was characterized by Scanning Electron Microscopy and Fourier Transform Infrared Spectroscopy and was investigated as a biosorbent for uranyl ions from nitric solutions by batch experiments. Influences of adsorbent size, kinetics and equilibrium adsorption were studied. The biosorption of the uranyl ions followed pseudo-second-order kinetics. The adsorption isotherm data were closely fitted to the Freundlich equation.
Resumo:
A biofuel was prepared from acid aqueous fraction (pH = 2) of bio-oil produced by fast pyrolysis (Bioware Technology) of lignocellulosic biomass (sugar cane residue) and tested in blends (2, 5, 10 e 20% v/v) with gasoline type C (common) marketed in Brazil. The specification tests made in the Refinery President Getúlio Vargas (PETROBRAS) showed increasing in the octane number (MON) and antiknock index (AKI) with reduction in the residue generation during the combustion. The physicochemical characteristics of the biofuel were similar that combustible alcohol allowing its use as gasoline additive.
Resumo:
Production of ethanol from biomass fermentation has gained much attention recently. Biomass cellulosic material is first converted into glucose either by chemical or by enzymatic process, and then glucose is fermented to ethanol. Considering the current scenario, where many efforts are devoted for the search of green routes to obtaining ethanol from renewable sources, this review presents the relationship between structure and properties of cellulosic material, pre-treatments and hydrolysis of cellulosic material, and structure and function of cellulase enzyme complex.
Resumo:
Lipase from Candida rugosa was immobilized by covalent attachment on hybrid SiO2-chitosan obtained by sol-gel technique. A comparative study between free and immobilized lipase was provided in terms of pH, temperature, kinetic parameters and thermal stability on the olive oil hydrolysis. The pH and temperature for maximum activity shifted from 7.0 and 45 ºC for the free lipase to 7.5 and wide range of temperature (40-50 ºC) after immobilization. Kinetics parameters were found to obey Michaelis-Menten equation and K M values indicated that immobilization process reduced the affinity of enzyme-substrate; however Kd values revealed an increase of thermal stability of lipase.