296 resultados para Alternância de temperatura


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RESUMO Eugenia dysenterica DC. (cagaiteira) destaca-se entre as espécies nativas do Cerrado por produzir frutos de sabor agradável, os quais podem ser consumidos tanto in natura quanto processados na forma de doces, compotas e geleias. Apesar do potencial econômico, é uma planta pouco explorada, principalmente devido à baixa durabilidade dos frutos. Assim, este trabalho teve como objetivo avaliar o efeito da embalagem e da temperatura sobre a conservação pós-colheita de frutos de E. dysenterica. Para isto, os frutos de cagaita foram coletados no estádio verde-maduro, ainda ligados à planta-mãe, e levados ao Laboratório de Botânica da Universidade Federal da Bahia, onde foram selecionados quanto à integridade física, ausência de danos mecânicos epatogênicos. Após lavagem em água corrente, os frutos foram secos e acondicionados em bandejas de poliestireno expandido, cobertas por filme de policloreto de vinila (PVC) de 10 micras, perfurados e sem perfuração, e em bandejas sem revestimento de PVC. A perfuração foi realizada visando a maior circulação de ar dentro das embalagens. Em seguida, foram armazenados em duas temperaturas, 5 e 25ºC. Para a avaliação da durabilidade dos frutos, foram realizadas avaliações diárias das características físicas e químicas, incluindo coloração, firmeza, pH, perda de massa, altura e diâmetro. O metabolismo de carboidratos também foi avaliado por meio da quantificação dos açúcares solúveis. Os frutos da cagaita apresentaram durabilidade de 5 dias, independentemente dos tratamentos utilizados, sendo que os submetidos à refrigeração apresentaram sintomas de injúria por frio, alteração da coloração e firmeza (25%), redução de pH e do consumo de carboidratos. Já em frutos mantidos a 25ºC, houve amarelecimento completo, perda de firmeza, aumento do pH e maior consumo de carboidratos. Verificou-se que o uso de embalagens, praticamente, não promoveu efeitos benéficos significativos. Desta forma, concluiu-se que o armazenamento dos frutos em temperatura de 25 e 5ºC não é aconselhável, sendo que esta última causa injúrias, e os frutos, por serem climatéricos, têm vida de prateleira curta.

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RESUMO Na pós-colheita do abacaxizeiro, a podridão-negra é considerada como um dos principais problemas na comercialização dos frutos. A doença é causada pelo fungoChalara paradoxa (De Seynes) Sacc.. Apesar da importância deste patógeno para a cultura, são poucas as informações relacionadas ao estudo do mesmo, com base em características fisiológicas in vitro. Assim, o objetivo do trabalho foi avaliar o crescimento micelial, a esporulação e a germinação de C. paradoxa, em diferentes condições de cultivo. A partir de placas contendo colônias puras do isolado de C. paradoxa, foram retirados individualmente discos para inoculação em diferentes meios. A incubação das placas foi feita em três diferentes regimes de luminosidade e em três diferentes temperaturas. Para o crescimento micelial, esporulação e germinação, as melhores condições de cultivo in vitro de C. paradoxa foram os meios aveia (OA) e batata (PDA) em alternância luminosa a 25°C, os meios batata (PDA) e abacaxi (PJA) no escuro contínuo, na mesma temperatura.

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RESUMO O armazenamento refrigerado pode induzir o desenvolvimento de danos por frio (caracterizado pelo escurecimento de polpa) em maçãs de algumas cultivares, mesmo quando mantidas em temperatura superior ao ponto de congelamento. O presente estudo avaliou o aumento da temperatura de armazenagem de maçãs clones de ‘Gala’ sob atmosfera controlada (AC), tratadas com 1-metilciclopropeno (1-MCP), como método para redução do desenvolvimento de escurecimento da polpa e do consumo de energia durante o armazenamento. Experimentos foram conduzidos em 2011, com maçãs produzidas em Fraiburgo (armazenadas em câmaras experimentais a -0,3 e 1,2 °C, e em câmaras comerciais a 0,7 e 2 °C) e em São Joaquim (armazenadas em câmaras comerciais a 0,8; 1,4 e 1,9 °C). Frutos de todos os tratamentos foram mantidos sob AC (1,8±0,2 kPa de O2 e 2,0±0,2 kPa de CO2/UR de 91±4%), sendo que metade dos frutos de cada temperatura de armazenamento foi tratada com 1-MCP. Os frutos foram analisados após o armazenamento em AC quanto à firmeza da polpa e incidência de escurecimento da polpa, rachaduras e podridões. De maneira geral, maçãs armazenadas em temperaturas mais elevadas mantiveram melhor firmeza da polpa e apresentaram menor incidência de escurecimento da polpa rachaduras e podridões, quando não tratadas com 1-MCP. O tratamento com 1-MCP retardou a perda de firmeza de polpa e reduziu a ocorrência de escurecimento de polpa e rachaduras. O aumento da temperatura de armazenagem em câmaras comerciais de AC em Fraiburgo, de 0,7 °C para 2,0 °C resultou em economia no consumo de energia em aproximadamente 21% para ventilação do ar da câmara e 50% para refrigeração.

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By using DSC data is shown that there are empirical correlations between lattice enthalpy, melting enthalpy and the temperature of melting for adducts, and that is possible, using only a single DSC curve, estimate the value of DM Hmq.

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The effect of casein concentration, Ca2+ concentration, temperature and pH on the amount and size of protein aggregates (fines) in the whey produced by enzimic coagulation of nonfat milk was studied in laboratory conditions. Casein concentrations about 0.3 g/L showed a minimal amount of caseins in the whey, with presence of small aggregates of casein micellles. Ca2+ concentrations higher than 5 mM were neccesary to reduce the whey protein to a minimum constituted by protein particles smaller than casein micelles. The coagulation temperature, in the 35 - 45oC range, produced almost no variations in the whey proteins. The obtention of a minimum amount of whey proteins was possible only in a narrow pH range around 6.4. These results pointed to casein concentration and pH as important variables to be controlled in connection with the process yield.

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The developments in stationary phase synthesis and capillary column technology, have opened new perspectives in analysis of high molecular mass compounds (³600 daltons) and thermolabile organic compounds by High Temperature High Resolution Gas Chromatography (HT-HRGC). HT-HRGC is a new analytical borderline and its application to the analysis of high molecular mass compounds is still in its infancy. The apolar and medium polar gum phases can now be operated at temperatures up to 400-480ºC, being used for the analysis of n-alcanes up to C-100, lipids, oligosaccharides, industrial resins, polyglycerols, cyclodextrins, porphyrins, etc. This technique should play a leading role as a powerful tool, for many different analysis types, in multidisciplinary fields of Science.

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The kinetic parameters for the CO oxidation reaction using copper/alumina-modified ceria as catalysts were determined. The catalysts with different concentrations of the metals were prepared using impregnation methods. In addition, the reduction-oxidation behaviour of the catalysts were investigated by temperature-programmed reduction. The activity results show that the mechanism for CO oxidation is bifunctional : oxygen is activated on the anionic vacancies of ceria surface, while carbon monoxide is adsorbed preferentially on the higher oxidation copper site. Therefore, the reaction occurs on the interfacial active centers. Temperatures-programmed Reduction patterns show a higher disperdion when cerium oxide is present.

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Aluminum and copper doped hematite was evaluated in the high temperature shift (HTS) reaction at several temperatures in order to find catalysts that can work in different operational conditions. It was found that the catalysts work in kinetic regime in the range of 300-400 ºC. Both copper and aluminum increases the activity and selectivity. Aluminum acts as textural promoter whereas copper acts as structural one. The most promising catalyst is that with both copper and aluminum which showed higher activity and selectivity than a commercial sample. This catalyst has the advantages of being non toxic and can work at low temperatures.

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Thermal baths to decrease ambient temperature are an indispensable tool for most research and teaching laboratories, especially those in tropical or equatorial regions. A simple and inexpensive thermal bath has been developed based on a scratched compressor. It has three possible setups for cooling: sample immersed into the bath, sample flowing through the bath, and cooling liquid flowing in a jacket around the sample. It has been tested for 40 months. The temperature ranges from room temperature to 0 °C, when using water. The repeatability is better than 3% and the precision varies from 0.5% to 2%.

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In this work was developed an alternative methodology to separation of aquatic organic matter (AOM) present in natural river waters. The process is based in temperature decreasing of the aqueous sample under controlled conditions that provoke the freezing of the sample and separation of the dark extract, not frozen and rich in organic matter. The results showed that speed of temperature decreasing exerts strongly influence in relative recovery of organic carbon, enrichment and time separation of the organic matter present in water samples. Elemental composition, infrared spectra and thermal analysis results showed that the alternative methodology is less aggressive possible in the attempt of maintaining the integrity of the sample.

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Cation exchange capabilities of a Brazilian natural zeolite, identified as scolecite, were evaluated for application in wastewater control. We investigated the process of sorption of chromium(III), nickel(II), cadmium(II) and manganese(II) in synthetic aqueous effluents, including adsorption isotherms of single-metal solutions. The natural zeolite showed the ability to take up the tested heavy metals in the order Cr(III) > Cd(II) > Ni(II) > Mn(II), and this could be related to the valence and the hydration radius of the metal cations. The influence of temperature (25, 40 and 60 ºC) and initial pH value (from 4 to 6) was also evaluated. It was found that the adsorption increased substantially when the temperature was raised to 60 ºC and that maximum adsorption capacity was observed at pH 6. These results demonstrate that scolecite can be used for removal of heavy metals from aqueous effluents, under optimized conditions.

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Leaves of Lippia alba were submitted to six different drying treatments, using air at ambient temperature and heated up to 80 °C. The essential oil was extracted by steam distillation and analyzed by GC-MS. For the dried leaves, the oil content was reduced by 12 to 17% when compared with the fresh plant (0.66%). The major oil component was citral, representing 76% for the fresh plant, and varying from 82 to 84% for the dried material. These results showed that L. alba can be submitted to a drying process of up to 80 ºC without degradation and/or loss of the major, [LC1] active component.

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Thermogravimetry was applied to investigate the effects of temperature and atmosphere on conversion of sulfur dioxide (SO2) absorbed by limestone. Ranges of temperature and particle size were studied, typical of fluidized-bed coal combustion. Isothermal experiments were performed at different temperatures (between 750 and 950 ºC) under local atmospheric pressure (~ 697 mmHg) in dynamic atmospheres of air and nitrogen. The maximum conversion was 29% higher in nitrogen atmosphere than in air atmosphere. The optimum conversion temperature was found at 831 ºC in air atmosphere and at 894 ºC in nitrogen atmosphere.

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The liquid-liquid extraction with the low temperature partition technique was developed for the analysis of four pyrethroids in water by CG. Using a factorial design the extraction technique was optimised evaluating the effect of the variables ionic strength, contact time and proportion between sample and solvent volumes. The validation parameters sensitivity, precision, accuracy and detection and quantification limits were evaluated. The LOD and LOQ of the method varied from 1.1 to 3.2 µg L-1 and 2.7 to 9.5 µg L-1, respectively.

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This work describes novel materials based on pure iron oxide and iron oxide/niobia composite to produce a magnetic adsorbent. These materials were prepared with synthetic iron oxide and characterized by powder XRD, SEM, FTIR, TPR and Mössbauer spectroscopy. Results showed that the main iron oxides formed were goethite (aFeOOH) and maghemite (gFe2O3) with small particle size. The iron oxide and iron oxide/niobia composite showed high adsorption ability for organic compounds. The positive enthalpy indicated an endothermic adsorption process suggesting physical adsorption.