101 resultados para Solid material


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Os levantamentos de solos são na maioria antigos e pouco detalhados, geralmente nos níveis exploratório e de reconhecimento. Isso pode ser explicado pelo fato de que o método tradicional de levantamento de solos é lento e caro, requerendo grande número de observações de campo. Assim, o presente trabalho teve como objetivo caracterizar unidades de mapeamento de solos das regiões de Ibaté e São Carlos, SP, desenvolvidos de materiais basálticos e areníticos em função da declividade e altitudes correspondentes, com base em modelo digital de elevação (MDE). Primeiramente, foi feito um mapa de solos semidetalhado pelo método tradicional. Posteriormente, utilizando-se curvas de nível da região, foi elaborado o MDE, do qual foram extraídos mapas com diferentes classes de declividade e elevação. Por meio da tabulação cruzada, foi determinada a incidência de cada solo nas respectivas classes de declives e altitudes. Cada solo apresentou comportamento diferenciado em relação às classes de declive. Contudo, nas faixas limítrofes de declividade pode ocorrer sobreposição de dois ou mais solos. Na referida região, o Latossolo Amarelo encontra-se predominantemente nas regiões mais altas e de relevo plano; entretanto, solos pouco intemperizados, como os Neossolos Litólicos, aparecem em diferentes faixas de declividade. Conclui-se que o conhecimento da distribuição dos solos no relevo é de grande importância, pois facilita a execução do levantamento de solos. O modelo de elevação apresenta semelhanças com o mapa de solos, podendo auxiliar na sua determinação. As variações de solo, no entanto, são mais complexas, não dispensando as observações de campo.

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The new techniques proposed for agriculture in the Amazon region include rotational fallow systems enriched with leguminous trees and the replacement of biomass burning by mulching. Decomposition and nutrient release from mulch were studied using fine-mesh litterbags with five different leguminous species and the natural fallow vegetation as control. Samples from each treatment were analyzed for total C, N, P, K, Ca, Mg, lignin, cellulose content and soluble polyphenol at different sampling times over the course of one year. The decomposition rate constant varied with species and time. Weight loss from the decomposed litter bag material after 96 days was 30.1 % for Acacia angustissima, 32.7 % for Sclerolobium paniculatum, 33.9 % for Iinga edulis and the Fallow vegetation, 45.2 % for Acacia mangium and 63.6 % for Clitoria racemosa. Immobilization of N and P was observed in all studied treatments. Nitrogen mineralization was negatively correlated with phenol, C-to-N ratio, lignin + phenol/N ratio, and phenol/phosphorus ratios and with N content in the litterbag material. After 362 days of field incubation, an average (of all treatments), 3.3 % K, 32.2 % Ca and 22.4 % Mg remained in the mulch. Results confirm that low quality and high amount of organic C as mulch application are limiting for the quantity of energy available for microorganisms and increase the nutrient immobilization for biomass decomposition, which results in competition for nutrients with the crop plants.

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Phosphogysum (PG) or agricultural gypsum, a solid waste from the phosphate fertilizer industry, is used as soil amendment, especially on soils in the Cerrado region, in Brazil. This material may however contain natural radionuclides and metals which can be transferred to soils, plants and water sources. This paper presents and discusses the results of physical and chemical analyses that characterized samples of PG and compares them to the results found in two typical soils of the Cerrado, a clayey and sandy one. These analyses included: solid waste classification, evaluation of organic matter content and of P, K, Ca, Mg, and Al concentrations and of the mineralogical composition. Natural radionuclides and metal concentrations in PG and soil samples were also measured. Phosphogypsum was classified as Class II A - Not Dangerous, Not Inert, Not Corrosive and Not Reactive. The organic matter content in the soil samples was low and potential acidity high. In the mean, the specific 226Ra activity in the phosphogypsum samples (252 Bq kg-1) was below the maximum level recommended by USEPA, which is 370 Bq kg-1 for agricultural use. In addition, this study verified that natural radionuclides and metals concentrations in PG were lower than in the clayey Oxisol of Sete Lagoas, Minas Gerais, Brazil. These results indicated that the application of phosphogypsum as soil amendment in agriculture would not cause a significant impact on the environment.

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No tillage systems significantly influence the soil system, but knowledge about the effects on the mineralogy of tropical and subtropical soils is limited. This study evaluated the long-term effects (26 years) of no-tillage (NT) on aluminum hydroxy-interlayered minerals of a subtropical Oxisol in Southern Brazil (Guarapuava, PR), compared to the same soil under conventional tillage (CT). The clay fraction (< 2 µm) in soil samples of the surface horizons of a field experiment under both management systems was analyzed by X-ray diffraction (XRD) to identify and characterize Al hydroxy-interlayered minerals before and after treatment with sodium citrate to remove intra-layer material. Soil liquid (solution) and solid phases were also characterized. The contents of total organic C, exchangeable cations, P, and the values of extractable acidity and cation exchange capacity as well as electrical conductivity and levels of dissolved organic C, basic cations, aluminum, Si, and sulfur in the soil solution were higher in the NT soil. Under both soil management systems, more than 90 % of the total soluble Al was complexed with organic compounds, with similar Al activity. No significant changes were detected by 2:1 clay mineral XRD analyses in terms of extension or intercalation of Al-hydroxy-polymers in the no-tilled in comparison to the conventionally tilled soil. In both soil management systems, Al and Si activities in the soil solution indicated thermodynamic stability of 2:1 clay minerals with partially occupied by hydroxy-Al, suggesting deceleration in the intercalation process and a tendency of transforming clay minerals from extensive into partial intercalation.

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Acid Mine Drainage (AMD) is one of the main environmental impacts caused by mining. Thus, innovative mitigation strategies should be exploited, to neutralize acidity and prevent mobilization of trace elements in AMD. The use of industrial byproducts has been considered an economically and environmentally effective alternative to remediate acid mine drainage. Therefore, the objective of this study was to evaluate the use of steel slag to mitigate acid mine drainage in a sulfidic material from a uranium mine, as an alternative to the use of limestone. Thus, increasing doses of two neutralizing agents were applied to a sulfidic material from the uranium mine Osamu Utsumi in Caldas, Minas Gerais State. A steel slag from the company ArcelorMittal Tubarão and a commercial limestone were used as neutralizing agents. The experiment was conducted in leaching columns, arranged in a completely randomized, [(2 x 3) + 1] factorial design, consisting of two neutralizing agents, three doses and one control, in three replications, totaling 21 experimental units. Electrical conductivity (EC), pH and the concentrations of Al, As, Ca, Cd, Cu, Fe, Mn, Ni, S, Se, and Zn were evaluated in the leached solutions. The trace element concentration was evaluated by ICP-OES. Furthermore, the CO2 emission was measured at the top of the leaching columns by capturing in NaOH solution and titration with HCl, in the presence of BaCl2. An increase in the pH of the leachate was observed for both neutralizing agents, with slightly higher values for steel slag. The EC was lower at the higher lime dose at an early stage of the experiment, and CO2 emission was greater with the use of limestone compared to steel slag. A decrease in trace element mobilization in the presence of both neutralizing agents was also observed. Therefore, the results showed that the use of steel slag is a suitable alternative to mitigate AMD, with the advantage of reducing CO2 emissions to the atmosphere compared to limestone.

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Ironstones or petroplinthites are common materials in soils under humid tropical climate, generally defined as the result of Fe oxide accumulation in areas where the water table oscillates, and may exhibit considerable morphological variability. The aim of this study was to examine the internal structure and porosity of an ironstone fragment from a Petroferric Acrudox in Minas Gerais, Brazil, by computed tomography (CT) and conventional techniques. The sample analyzed had total porosity of 59.5 %, with large macropores in the form of tubular channels and irregular vughs, the latter with variable degrees of infilling by material released from the ironstone walls or the soil matrix. The CT scan also showed that the ironstone has wide variation in the density of the solid phase, most likely due to higher concentrations or thick intergrowths of hematite and magnetite/maghemite, especially in its outer rims. The implications of these results for water retention and soil formation in ironstone environments are briefly discussed.

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The Diagnosis and Recommendation System (DRIS) was applied to eucalypt trees (hybrids of Eucalyptus grandis x E. urophylla) with different ages and growing under different environmental conditions for three different clones. The basic data were obtained from 1,986 trees of commercial stands cultivated in the states of Espírito Santo and south Bahia, Brazil. The DRIS indices were calculated using the Beaufils' Range formula and grouped according to the Nutrient Application Potential Response method. The objective of this paper was to evaluate the N, P and Ca status in eucalypt trees, regarding the tree ages and genetic materials. The DRIS indices discriminated differences in the nutritional status of the trees, both in relation to age and the genetic materials (clones). The results indicated that the deficiency of N and Ca tended to decrease with tree age, whereas the P deficiency tended to increase. Furthermore, of the three evaluated clones, those numbered 00014 and 00034 showed opposite trends regarding to N, P, and Ca nutrition, and the clone numbered 00021, in general, presented the highest degree of unbalanced nutrition of N, P and Ca.

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The aim of these studies was to investigate whether residual toxic effects of exposing soybean root nodule bacteria to Al in a solid defined media (SDM) alter tolerance to Al, survival, sensitivity to antibiotics, N2 fixation effectiveness and genetic diversity of Bradyrhizobium strains. After being exposed four times to Al, strains showed variation in Al tolerance but there was no evidence of change in their original Al tolerance, sensitivity to the antibiotics or genetic diversity. Exposure of Bradyrhizobium strains to SDM plus Al did not alter biological N2 fixation effectiveness of five strains. Strain SEMIA 587 showed a reduction in its N2 fixation effectiveness but it seems that it was just a superficial toxic effect because one single passage through the plant eliminated this effect. Residual Al did not cause increases in Al tolerance and reductions in the survival and N2 fixation effectiveness of Bradyrhizobium strains USDA 143, SEMIA 586, SEMIA 5019, SEMIA 5039 and SEMIA 5073. It also did not alter the resistance to antibiotics of strains USDA 143, SEMIA 5039 and SEMIA 5073, and the genetic diversity of the strains SEMIA 587 and SEMIA 5019.

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Os meios semi-sólidos são os mais utilizados em trabalhos de micropropagação, mas há indícios de que o estado físico dos meios de cultura influencia a multiplicação dos cultivos. O objetivo deste trabalho foi estabelecer um protocolo para a multiplicação de material propagativo de batata em meio de cultura líquido. Explantes de batata da cultivar Eliza, com uma gema axilar, foram cultivados em seis diferentes meios de cultura, com (semi-sólido) ou sem (líquido) a adição do solidificante ágar. Após 21 dias de cultivo, o meio de cultura que proporcionou os melhores resultados para crescimento e taxa de multiplicação teve sua composição modificada com o objetivo de melhorar a eficiência de multiplicação de cinco cultivares em meio líquido. Foi também avaliada a necessidade de agitação dos cultivos em meio líquido. Houve ganho na eficiência de multiplicação in vitro da batata, quando se utiliza meio de cultura líquido. Os melhores resultados são obtidos quando o material é cultivado em meio constituído pelos sais de MS na concentração plena, acrescido de ácido pantotênico (5,0 mg L-1), tiamina (1,0 mg L-1), ácido giberélico (0,25 mg L-1) e sacarose (20 g L-1), sob agitação constante.

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A ocorrência do distúrbio fisiológico conhecido como "Mancha Fisiológica do Mamão" (MFM) tem comprometido a qualidade do mamão (Carica papaya L.) produzido no Brasil. A obtenção de material genético tolerante à MFM faz parte das estratégias de ação de médio a longo prazo para minimizar os prejuízos decorrentes da ocorrência desse distúrbio. No presente trabalho, buscou-se avaliar a tolerância de vinte e dois híbridos de mamão à ocorrência da MFM, na região norte do Estado do Rio de Janeiro. Os frutos foram colhidos de um ensaio de competição instalado na Estação Experimental da PESAGRO-Rio, no município de Macaé-RJ. O ensaio consistiu de quatro repetições, num delineamento em blocos ao acaso, sendo que cada parcela foi constituída de oito plantas. Os dados foram submetidos a uma análise de variância e teste de média. Efetuou-se, inicialmente, uma análise conjunta, envolvendo os dois estádios de maturação avaliados - verde-maduro e ¾ maduro; considerando a significância da interação Estádio x Genótipo, procedeu-se a uma análise específica, por estádio de desenvolvimento do fruto. Em função da análise de variância, também, foi calculado o coeficiente de determinação genotípica (H²) para o caráter em estudo, o qual demonstrou que a avaliação do nível de severidade da MFM, no estádio ¾ maduro, caracteriza melhor as diferenças genotípicas. Com base nesses resultados, inferimos que há uma expressiva variabilidade genética, para o caráter MFM, dentre os genótipos avaliados. Isto sugere um bom potencial em se obter, através do melhoramento genético, material vegetal (híbridos e variedades) com maior tolerância à MFM. O melhoramento genético associado ao manejo do ambiente poderá permitir o cultivo do mamoeiro sem as limitações advindas da ocorrência da MFM.

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A pitaya vermelha é uma cactácea cujos frutos são de interesse comercial crescente por produtores e consumidores. No entanto, ainda há diversos aspectos sobre seu cultivo que precisam ser elucidados, proporcionando rentabilidade ao produtor. Diante disso, realizou-se o presente trabalho, que teve como objetivo obter informações quanto à propagação vegetativa desta fruteira, utilizando-se de diferentes fontes de material em função do tempo de cura. O experimento foi realizado no Ripado de Fruticultura, pertencente ao Departamento de Produção Vegetal da Faculdade de Ciências Agrárias e Veterinárias - Unesp - Câmpus de Jaboticabal-SP, utilizando estacas de plantas de pitaya de diferentes origens (planta adulta, estacas de brotações de plantas adultas recém-enraizadas e planta em início de desenvolvimento, originária de semente), submetidas a 3 períodos de cura: 0; 7 e 14 dias. As avaliações foram quanto a: enraizamento; volume de raiz; comprimento da maior raiz (cm); massas fresca e seca das raízes (gramas); número e tamanho das brotações nas estacas (cm). Foram realizadas 5 repetições, com 10 estacas cada, totalizando 150 estacas de cada material. Nas condições em que o experimento foi realizado, pode-se concluir que a estaquia deve ser realizada tão logo feita a segmentação dos cladódios e que as estacas obtidas de brotações de plantas recém-enraizadas apresentam melhores resultados.