408 resultados para trace mineral requirements


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In this study, the mineral composition of leaves and teas of medicinal plants was evaluated. Ca, Cu, Fe, Mg, Mn e Zn were determined in the samples using flame atomic absorption spectrometry. Principal component analysis was applied to discriminate the samples studied. The samples were divided within the 2 groups according to their mineral composition. Copper and iron were the variables that contributed most to the separation of the samples followed by Ca, Mg, Mn and Zn. The information in the principal component analysis was confirmed by the dendrogram obtained by hierarchical cluster analysis.

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Rising anthropogenic CO2 emissions are considered a major contributor to the greenhouse effect. There are several options for reducing atmospheric CO2 levels, and among these alternatives, Carbon Capture and Storage (CCS) has been identified as an effective and promising approach. This work investigated the feasibility of using serpentinite as a vehicle for carbon storage presenting a source-sink match. The main results of the work confirmed that serpentinite is appropriate for the carbonation process due to the high concentration of Mg in its composition.

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A new cloud point extraction (CPE) method was developed for the separation and preconcentration of copper (II) prior to spectrophotometric analysis. For this purpose, 1-(2,4-dimethylphenyl) azonapthalen-2-ol (Sudan II) was used as a chelating agent and the solution pH was adjusted to 10.0 with borate buffer. Polyethylene glycol tert-octylphenyl ether (Triton X-114) was used as an extracting agent in the presence of sodium dodecylsulphate (SDS). After phase separation, based on the cloud point of the mixture, the surfactant-rich phase was diluted with acetone, and the enriched analyte was spectrophotometrically determined at 537 nm. The variables affecting CPE efficiency were optimized. The calibration curve was linear within the range 0.285-20 µg L-1 with a detection limit of 0.085 µg L-1. The method was successfully applied to the quantification of copper in different beverage samples.

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The aim of this study was to investigate the sorption and desorption of thiamethoxam in contrasting soils under the effect of organic acids. The results showed that MTo sorption had higher Kd. The presence of organic acids increased sorption and reduced desorption of thiamethoxam at MTo. The opposite was observed for the LVdf where the presence of 400 µmol L-1 of acid reduced the sorption of thiamethoxam in a concentration of 20 µmol L-1, not influencing desorption. The dynamics of organic acids with minerals from the soil particles were clarified by infrared analysis.

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This aim of this work was to compare two methods for copper determination in insulating oils from power transformers by GFAAS. The first method was extraction induced by emulsion breaking, which determined the preconcentration of copper in an aqueous solution and exhibited a limit of quantification of 0.27 µg L-1. Also, a second method based on the direct introduction of samples into GFAAS in the form of detergent emulsions, prepared with Triton X-114 and HNO3, was investigated. In this case, the limit of quantification was 1.7 µg L-1. Seven samples of used oils were successfully analyzed by both methods.

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In this study, a procedure is developed for cloud point extraction of Pd(II) and Rh(III) ions in aqueous solution using Span 80 (non-ionic surfactant) prior to their determination by flame atomic absorption spectroscopy. This method is based on the extraction of Pd(II) and Rh(III) ions at a pH of 10 using Span 80 with no chelating agent. We investigated the effect of various parameters on the recovery of the analyte ions, including pH, equilibration temperature and time, concentration of Span 80, and ionic strength. Under the best experimental conditions, the limits of detection based on 3Sb for Pd(II) and Rh(III) ions were 1.3 and 1.2 ng mL-1, respectively. Seven replicate determinations of a mixture of 0.5 µg mL-1 palladium and rhodium ions gave a mean absorbance of 0.058 and 0.053 with relative standard deviations of 1.8 and 1.6%, respectively. The developed method was successfully applied to the extraction and determination of the palladium and rhodium ions in road dust and standard samples and satisfactory results were obtained.

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A simple preconcentration method of silicon based on coprecipitation with aluminum hydroxide prior to its flame atomic absorption (FAAS) determination was established. The recovery values of analyte ion was higher than 95%. The parameters including types of hydroxide ion source for precipitation, acid type for dissolution step, amount of aluminum ion as collector, pH, temperature, standing and centrifuge time, and sample volume were optimized for the quantitative recovery of the analyte. The influences of matrix ions were also examined. The relative standard deviation was found to be 3.2%. The limit of detection was calculated as (0.1 mg L-1). The preconcentration factor is 100 for (200 mL) solution. The proposed method was successfully applied for the determination of silicon in some water and alloy samples.

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In this study, dispersive liquid-liquid microextraction based on the solidification of floating organic droplets was used for the preconcentration and determination of thorium in the water samples. In this method, acetone and 1-undecanol were used as disperser and extraction solvents, respectively, and the ligand 1-(2-thenoyl)-3,3,3-trifluoracetone reagent (TTA) and Aliquat 336 was used as a chelating agent and an ion-paring reagent, for the extraction of thorium, respectively. Inductively coupled plasma-optical emission spectrometry was applied for the quantitation of the analyte after preconcentration. The effect of various factors, such as the extraction and disperser solvent, sample pH, concentration of TTA and concentration of aliquat336 were investigated. Under the optimum conditions, the calibration graph was linear within the thorium content range of 1.0-250 µg L-1 with a detection limit of 0.2 µg L-1. The method was also successfully applied for the determination of thorium in the different water samples.

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An activated carbon was obtained by chemical activation with phosphoric acid, CM, from a mineral carbon. Afterwards, the carbon was modified with 2 and 5 molL-1, CMox2 and CMox5 nitric acid solutions to increase the surface acid group contents. Immersion enthalpy at pH 4 values and Pb2+ adsorption isotherms were determined by immersing activated carbons in aqueous solution. The surface area values of the adsorbents and total pore volume were approximately 560 m².g-1 and 0.36 cm³g-1, respectively. As regards chemical characteristics, activated carbons had higher acid sites content, 0.92-2.42 meq g-1, than basic sites, 0.63-0.12 meq g-1. pH values were between 7.4 and 4.5 at the point of zero charge, pH PZC. The adsorbed quantity of Pb2+ and the immersion enthalpy in solution of different pH values for CM activated carbon showed that the values are the highest for pH 4, 15.7 mgg-1 and 27.6 Jg-1 respectively. Pb2+ adsorption isotherms and immersion enthalpy were determined for modified activated carbons and the highest values were obtained for the activated carbon that showed the highest content of total acid sites on the surface.

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National Health Surveillance Agency (ANVISA) established in the decree number 54 maximum allowed levels for Ni and Pb in mineral and natural waters at 20 µg L-1 and 10 µg L-1, respectively. For screening analysis purposes, the high-resolution continuum source flame atomic absorption spectrometry technique (HR-CS FAAS) was evaluated for the fast-sequential determination of nickel and lead in mineral waters.Two atomic lines for Ni (232.003 nm - main and 341.477 nm - secondary) and Pb (217.0005 nm - main and 283.306 nm - secondary) at different wavelength integrated absorbance (number of pixels) were evaluated. Sensitivity enhanced with the increase of the number of pixels and with the summation of the atomic lines absorbances. The main figures of merit associated to the HR-CS FAAS technique were compared with that obtained by line-source flame atomic absorption spectrometry (LS FAAS). Water samples were pre-concentrated about 5-fold by evaporation before analysis. Recoveries of Pb significantly varied with increased wavelength integrated absorbance. Better recoveries (92-93%) were observed for higher number of pixels at the main line or summating the atomic lines (90-92%). This influence was irrelevant for Ni, and recoveries in the 92-104% range were obtained in all situations.

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The aim of this study was to determine the minimum conditions of wetness duration and mean temperature required for Fusarium head blight infection in wheat. The weather model developed by Zoldan (2008) was tested in field experiments for two wheat cultivars grown in 2005 (five sowing dates) and 2006 (six sowing dates) in 10 m² plots with three replicates. The disease was assessed according to head incidence (HI), spikelet incidence (SI), and the interaction between these two methods was called head blight severity (HBS). Starting at the beginning of anthesis, air temperature and head wetness duration were daily recorded with an automatic weather station. With the combination of these two factors, a weather favorability table was built for the disease occurrence. Starting on the day of flowering beginning (1 - 5% fully exserted anthers), the sum of daily values for infection favorability (SDVIF) was calculated by means of a computer program, according to Zoldan (2008) table. The initial symptoms of the disease were observed at 3.7% spikelet incidence, corresponding to 2.6 SVDFI. The infection occurs in wheat due to rainfall which results in spike wetting of > 61.4 h duration. Rainfall events forecast can help time fungicide application to control FHB. The name of this alert system is proposed as UPF-scab alert.

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O preparo do solo para o plantio de espécies florestais visa disponibilizar água e nutrientes para o rápido estabelecimento das mudas. Apesar de recentemente técnicas menos intensivas de preparo serem preconizadas, há situações em que o preparo mais intensivo é necessário. Neste trabalho avaliou-se o efeito de quatro métodos de preparo nas propriedades físicas e químicas do solo, na produção de biomassa e na composição mineral de plantação reformada de Eucalyptus grandis. Os tratamentos T1) queima dos resíduos da floresta anterior, destoca e subsolagem; T2) queima e destoca; T3) somente queima; e T4) cultivo mínimo (coveamento manual) foram aplicados em área anteriormente usada com plantação de eucalipto manejado por talhadia, em terceira rotação, e situada em Latossolo Vermelho distrófico no município de Santa Bárbara-MG. Aos 38 meses após o plantio, a maior produção de biomassa (81,6 t/ha) foi verificada no tratamento com maior intensidade de preparo do solo, com decréscimo significativo à medida que o preparo era menos intenso. A menor produtividade (50,4 t/ha) foi obtida com o cultivo mínimo. Entretanto, o solo deste tratamento, na época de avaliação, apresentou melhores características químicas e maior acúmulo de manta orgânica. Portanto, o coveamento foi o método de preparo que levaria à maior sustentabilidade da produção florestal, em razão da menor exportação de nutrientes.

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O estudo objetivou investigar a concentração de zinco e manganês nos efluentes do beneficiamento de carvão e em Typha domingensis Pers. Amostras de sedimento, água, raízes, caules e folhas (n = 8 cada) foram coletadas no Lavador da Mina do Trevo, Siderópolis, SC, e em um banhado sem influência da mineração (área-controle). O conteúdo disponível dos metais no sedimento, dissolvido na água e total em T. domingensis, foi determinado por espectrofotometria de absorção atômica. Os dados de concentração de metais nos diferentes compartimentos e áreas foram submetidos ao teste "t", à análise de variância (ANOVA I) e à análise de correlação de Pearson (r). A significância estatística entre as diferenças verificadas na ANOVA foi avaliada por meio do teste SNK (Student-Newman-Keuls-Test), p < 0,05 e > 0,01. Zn e Mn apresentaram-se em concentrações mais elevadas no sedimento do que na água, nas duas áreas. Ambos os metais foram detectados na água em concentrações mais elevadas na área minerada do que na área-controle, enquanto no sedimento apenas o Zn seguiu essa tendência. T. domingensis concentrou Zn em valores mais elevados na raiz, enquanto o Mn, nas folhas, evidenciando, ainda, concentrações mais elevadas de Zn na área minerada do que na área-controle. A explotação do carvão, portanto, disponibilizou Zn e Mn em concentrações mais elevadas na área minerada do que aquelas verificadas na área não minerada, comprometendo, assim, a biota. T. domingensis comportouse como espécie concentradora de metais, o que comprova sua potencialidade para utilização na fitorremediação de áreas degradadas.

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Este trabalho teve como objetivo avaliar o incremento em diâmetro do tronco de árvores de Eucalyptus grandis por 24 meses e sua relação com as variáveis climáticas e fertilização mineral. As árvores foram plantadas no espaçamento de 3 x 2 m e fertilizadas com potássio e sódio (plantio, 6 e 12 meses). Foram selecionadas 20 árvores de eucalipto por tratamento, de acordo com a distribuição de área basal do povoamento e instaladas faixas dendrométricas na altura do DAP. Os resultados indicaram efeito da sazonalidade climática no incremento em diâmetro do tronco das árvores, com períodos de máximo e de mínimo crescimento e uma defasagem (lag) de 28 dias, em função da resposta da atividade cambial às variações climáticas. A aplicação de potássio em relação ao sódio e controle promoveu maior taxa de incremento acumulado do tronco das árvores, com valores de 4,14; 3,28; e 3,08 cm, respectivamente.

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Mesmo adaptadas à baixa fertilidade dos solos, acredita-se que as espécies de plantas do Cerrado seriam capazes de responder a uma maior disponibilidade de nutrientes e alterar sua produtividade. Este estudo teve por objetivo comparar a produção de frutos, massa de frutos e sementes, germinação e comprimento e biomassa das plântulas da espécie arbórea Dalbergia miscolobium entre áreas fertilizadas e não fertilizadas de Cerrado sensu stricto na Reserva Ecológica do IBGE, Distrito Federal, Brasil. Não houve aumento na produção de frutos, na massa de sementes e na biomassa das plântulas de D. miscolobium em resposta ao aumento da disponibilidade de nutrientes minerais no solo. A massa dos frutos e a porcentagem de germinação foram menores em resposta à fertilização, enquanto o comprimento radicular foi maior em plântulas de sementes fertilizadas. Plantas adaptadas aos solos oligotróficos do Cerrado são menos exigentes em nutrientes e possuem estratégias, como a retranslocação de elementos minerais e orgânicos de órgãos senescentes que podem suprir a demanda por nitrogênio, fósforo e potássio necessários para as atividades reprodutivas.