159 resultados para GW-mill


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RESUMO A atemoia desperta cada vez mais interesse devido ao seu aroma, sabor e valor de mercado. Porém, como a maioria das frutas, é bastante perecível, fazendo-se necessária a aplicação de métodos de conservação, a exemplo da secagem por aspersão, que prolonga a vida de prateleira, reduz a atividade de água e obtém como produto final o alimento em pó. Com isso, o objetivo deste trabalho foi desidratar a formulação elaborada com 50% de polpa de atemoia + 50% de água destilada, adicionada de 25% de maltodextrina em secador por aspersão, com temperatura de entrada do ar de 180 oC, vazão de alimentação da bomba de 0,5 L h-1, pressão do ar de 30 kgf cm-2 e bico aspersor de 1,2 mm de diâmetro. Como produto final, foram obtidas duas amostras em pó, uma coletada na câmara de secagem e outra no ciclone, sendo estas caracterizadas física, físico-químicamente e morfologicamente. Os dados experimentais foram analisados por delineamento inteiramente casualizado. Avaliando-se os resultados, observa-se que a cor da amostra em pó coletada na câmara de secagem foi mais escura do que a do ciclone; as amostras de atemoia em pó, coletadas na câmara de secagem, apresentaram maior teor de água, pH, ácido ascórbico, cinzas, açúcares redutores e proteínas em relação às amostras em pó coletadas no ciclone e menor atividade de água, densidade absoluta e aparente; além disso, o pó da câmara de secagem é mais solúvel, apresenta maior porosidade e partículas maiores do que o pó do ciclone, e ambas formaram aglomerados.

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Rare earth elements supported in zeolites are the most important catalysts in the fluid cracking of petroleum. The solid state ion exchange of Eu3+ in Y zeolite was investigated. First of all, the hydrated EuCl3 was well mixed in a ball mill and was then heated at 300ºC for different times. The quantitative determination of Eu3+ showed that the degree of ion exchange depends on the reaction time at constant temperature, being ~95% in 4 h. The X-ray study showed that the crystallinity of the zeolite is little affected by the exchange procedure. The study of spectroscopic properties of Eu3+, emission spectra and lifetime, give information about the migration and position of the ion in the zeolite cages.

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Organic compounds responsible for the color of wastewaters are usually refractory to biological digestion. In this paper the photo-assisted electrolysis process is used for color removal from three of the most colored wastewaters, which are daily generated in large amounts: the E1 bleach Kraft mill effluent, a textile reactive dye effluent and a landfill leachate. Electrolysis was carried out at 26,5 mA cm-2 in a flow reactor in which the anode surface was illuminated by a 400 W high pressure Hg bulb. In all experiments 70-75% of color reduction was observed which was also followed by a net organic load oxidation.

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Coal ashes produced in coal-fired power plant could be converted into zeolites and can be used as low-cost adsorbents for the treatment of effluents contaminated with high levels of toxic metals. The capacity of synthetic zeolites for the removal of cadmium, zinc and copper ions from aqueous solutions has been investigated under different operating conditions. Zeolite from bottom chimney showed higher removal efficiency for metals ions than zeolite from feed hopper and mixing mill. The results indicated that the treated bottom ash could be applied in environmental technology as an immobilizer of pollutants.

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Composting of sawdust and paper mill sludge, using a "Kneer" process reactor, was studied in an attempt to elaborate upon organic matter (OM) transformation during the process and to define parameters to measure the compost maturity level. Temperature, electron paramagnetic resonance (EPR) data, ash and C, H, N and S contents, and a spectroscopic method using ultraviolet-visible (UV-VIS) for alkaline (pH = 8.5) and solid samples was used to study the maturity of the compost samples. These parameters were measured in 6 humic acids (HA) extracted from the compost samples during 29 days. The results of this work show that the "Kneer" process is efficient in transforming ligno-celulitic residues in a short time (29 days), into an organic fertilizer material with application perspectives.

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Anthropogenic pollution of groundwater and surface water has become a very serious environmental problem around the world. A wide range of toxic pollutants is recalcitrant to the conventional treatment methods, thus there is much interest in the development of more efficient remediation processes. Degradation of organic pollutants by zero-valent iron is one of the most promising approaches for water treatment, mainly because it is of low cost, easy to obtain and effective. After a general introduction to water pollution and current treatments, this work highlights the advances, applications and future trends of water remediation by zero-valent iron. Special attention is given to degradation of organochloride and nitroaromatic compounds, which are commonly found in textile and paper mill effluents.

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This work describes a systematic study for bovine liver sample preparation for Cd and Pb determination by solid sampling electrothermal atomic absorption spectrometry. Samples were prepared using different procedures: (1) drying in a household microwave oven followed by drying in a stove at 60 ºC until constant mass, and (2) freeze-drying. Ball and cryogenic mills were used for grinding. Particle size, sample size and micro sample homogeneity were investigated. All prepared samples showed good homogeneity (He < 10) even for low sample mass, but samples dried in a microwave oven/stove and ground in a ball mill presented the best homogeneity.

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Pb/Ti, Sn and Mg-based nanocomposite materials were prepared by the high-energy mechanical milling of commercial powders. The surface of these ceramic compounds was strongly influenced by the doping, diameter of the milling spheres and time of the mechanical milling (amorphization process). Such milling leads to the formation of nanocrystalline materials. The mechanical processing parameters of these compounds were investigated through Brunauer, Emmett and Teller isotherms, wide angle X-ray diffraction, transmission electron microscopy and CO2 adsorption.

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Optimum conditions to run the P Mo stage for bleaching eucalyptus kraft pulp were 90 ºC, pH 3.5, 2 h, 0.1 kg/t Mo and 5 kg/t H2O2. The P Mo stage efficiency increased with decreasing pH (1.5-5.5) and increasing temperature (75-90 ºC), time (2-4 h), and hydrogen peroxide (3-10 kg/t) and molybdenum concentration (0.1-0.4 kg/t). The implementation of the P Mo stage, as replacement for the A stage, decreased total active chlorine demand of the OAZDP sequence by 6 kg/t to reach 90% ISO, both in laboratory and mill scale. Such practice resulted in decreased bleaching chemical costs to produce fully bleached pulp of 90% ISO.

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The variability in aflatoxin B1 concentration among peanut subsamples of 4 sample preparation procedures was evaluated. For each procedure, 18 samples were prepared involving dry comminuting/homogenization or dry roughly comminuting followed by the preparation of a aqueous slurry. Ten analytical samples were withdrawn from each sample/procedure and analyzed by thin layer chromatography. The coefficient of variation (CV%) among each set of 10 analytical samples was assumed to be associated with the sample preparation procedure. The procedure that made use of a subsample mill and preparation of a subsample slurry, showed lower variability (CV%) among the analytical subsamples.

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An evaluation was made of the properties of sugarcane bagasse during the storage process for subsequent burning in a boiler. Samples of bagasse were collected over a period of 150 days from the Caeté sugar mill (MG) at various points of the stockpile soon after the sugarcane was pressed to extract its juice, as well as from natural bagasse, dry and damp. Thermal analyses of the samples were carried out and the results indicated that, during the storage of bagasse, dry or damp, the biomass loses up to 32% of its calorific power, due to decomposition of the hemicellulose.

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A sugar cane mill is at the present moment a modest biorefinery producing few products such as sugar, ethanol and polyhydroxybutyrate (PHB). In the near future, this mill can expand its production using several renewable feedstock's to produce biofuels and high value biobased chemicals. However, the choice of appropriate products for addition to the portfolio is challenged by a lack of broad-based conversion technology coupled with a plethora of potential targets. The intent of this revision was to catalyze research efforts to expand the list of products and to present an updated evaluation of potential target structures for chemical production.

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Laccase from Aspergillus sp was immobilized on glutaraldehyde-activated chitosan beads. A comparative study between free and immobilized laccase was conducted and the potential of the resulting immobilized derivative in the biodegradation of pulp and paper mill effluent was evaluated. The immobilized laccase is more resistant to various denaturing conditions, which allows for the reduction of 65% of the phenols (total and low molecular weight) and loss of 60% of total color in the effluent. These results show the potential of the immobilized laccase in the biodegradation of phenols, the chemical agents responsible for the high toxicity of the effluent generated in cellulose pulp industries.

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In this paper, we show the construction of a low-cost, high-quality ball mill for obtaining finely divided powders, with the goal of presenting guidelines for achieving the best results for the milling process. This equipment allows for the adjustment of the size of the mill in order to process different quantities of material. The construction of mechanical and electrical components that provide increased efficiency, the choice of milling medium, and frequent problems experienced with homemade ball mills are discussed.

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O presente trabalho foi conduzido com o objetivo de avaliar o efeito dos extratos aquosos dos cogumelos Lentinula edodes e Agaricus blazei e do indutor de resistência acibenzolar-S-metil (ASM) no controle da murcha bacteriana em tomate (Lycopersicon esculentum Mill.), bem como investigar o modo de ação destes produtos na atividade protetora, através de alterações na atividade de determinadas enzimas. Extratos aquosos dos cogumelos e o ASM foram testados na inibição do crescimento da bactéria in vitro. Em casa-de-vegetação, plantas foram tratadas com diferentes doses dos extratos e com ASM (0,05 g/L), dois dias antes da inoculação. As avaliações foram efetuadas com base na severidade da doença e determinação da atividade de algumas enzimas. Os isolados de A. blazei e L. edodes, bem como o ASM, não exerceram efeito inibitório direto no crescimento da bactéria. Quanto à indução de resistência, o isolado Le-96/17 de L. edodes na concentração de 10 % (v/v) e o ASM reduziram significativamente a ocorrência de murcha. As atividades de quitinase, fenilalanina amônia-liase e polifenoloxidase não foram alteradas para a maioria dos tratamentos, porém foi constatado um aumento na atividade de quitinase nas plantas tratadas com ASM. Para a peroxidase, os tratamentos ASM, Abl-26 e Le-96/17 ocasionaram aumentos na atividade da enzima e, com base nos resultados, o cogumelo L. edodes e o ASM apresentam potencial para reduzir a murcha bacteriana provavelmente através da indução de resistência.