69 resultados para inter-organizational relationships
Resumo:
Para solos agregados, a envoltória da resistência ao cisalhamento pode ser dividida em dois segmentos, com declividades e interceptos diferentes. Um primeiro segmento mais inclinado e com intercepto menor representaria a envoltória de ruptura definida pelo atrito e coesão interagregados, enquanto o segundo segmento, menos inclinado e com intercepto maior, seria a envoltória definida pelo atrito e coesão intra-agregados. O presente estudo foi realizado com o objetivo de avaliar se a envoltória de resistência ao cisalhamento de agregados do horizonte superficial de um Nitossolo Vermelho pode ser subdividida em segmentos distintos, com coeficientes angulares diferentes, e se isso está relacionado à existência de agregados nele. Inicialmente, amostras coletadas na superfície de um Nitossolo Vermelho distrófico latossólico de textura argilosa foram submetidas ao ensaio de cisalhamento direto com pressões normais de 24,4; 48,9; 98,2; 196,4; 294,6; 392,8 e 491,8 kPa. Posteriormente, o ensaio foi realizado com amostras de agregados de cinco classes de diâmetro: < 0,25; 0,25-0,50; 0,50-1,00; 1,00-2,00 e 2,00-4,00 mm, empregando-se pressões normais de 24,4; 48,9; 73,5; 147,3; 294,6; 441,9; 589,2 e 736,6 kPa. Em todos os ensaios, verificou-se que as envoltórias obtidas podem ser divididas em dois segmentos de reta. Os resultados indicam que a agregação deve ser considerada na definição das cargas normais a serem utilizadas no ensaio de cisalhamento direto, bem como na análise dos resultados, pois ela tem efeitos sobre a envoltória de resistência ao cisalhamento. Para o Nitossolo Vermelho distrófico usado neste estudo, constatou-se que, na umidade em que as amostras foram ensaiadas, os agregados definem a resistência ao cisalhamento do solo para cargas normais de até 294,6 kPa.
Resumo:
O comportamento físico e hídrico do solo fundamenta as práticas de seu uso e manejo. O objetivo deste trabalho foi avaliar as inter-relações entre as propriedades físicas e os coeficientes da curva de retenção de água de um Latossolo Vermelho distrófico sob diferentes sistemas de uso. Em 2004, foram selecionadas três áreas contíguas utilizadas por mais de vinte anos com mata (nativa), pousio (Brachiaria decumbens) e cultivo (culturas anuais). Foram coletadas 25 amostras de solo com estrutura não deformada na camada de 0-0,15 m de profundidade, que foram utilizadas para determinação das curvas de retenção de água do solo. As curvas de retenção de água foram ajustadas pela equação de van Genuchten, obtendo-se os coeficientes qs, qr, a e n. Também foram mensuradas as variáveis densidade do solo, teor de C orgânico e teor de argila do solo (grupo I). Essas variáveis e os coeficientes das curvas de retenção do solo (grupo II) foram submetidos às análises de correlações canônicas. Verificou-se que a intensificação do uso do solo (mata, pousio e cultivo) resultou em maiores valores de densidade do solo e na redução dos teores de C orgânico e argila. O primeiro par das variáveis canônicas indicou dependência de qs em relação a densidade, e o segundo par distinguiu os sistemas de uso do solo verificado pela dependência de qr em relação aos teores de argila e de C orgânico. As modificações dos teores de C orgânico e da densidade do solo sugerem a degradação da qualidade física e hídrica do solo.
Resumo:
O aumento da biomassa vegetal subterrânea e da estabilidade dos agregados do solo pelo seu manejo adequado aumentam sua capacidade para infiltrar água da chuva e resistir à erosão hídrica. Baseado nesta premissa, foi realizado um estudo de erosão em campo, sob chuva simulada, na Estação Experimental Agronômica da Universidade Federal do Rio Grande do Sul - EEA/UFRGS, em Eldorado do Sul (RS), no verão de 2003/2004, utilizando um experimento de manejo do solo com 7,5 anos de duração. O objetivo da pesquisa foi investigar relações entre variáveis de manejo e de erosão, relacionadas à história de uso e manejo do solo e suas condições físicas superficiais momentâneas, criadas por tratamentos de seu preparo e de cobertura por resíduo cultural, os quais foram aplicados imediatamente antes da realização de testes de erosão com chuva simulada. Utilizou-se um Argissolo Vermelho distrófico típico, com textura superficial franco-argilo-arenosa e declividade média de 0,115 m m-1. Foram estudadas quatro seqüências culturais, com ou sem preparo (gradagem) e cobertura (resíduo cultural) do solo. Realizaram-se três testes de erosão com chuva simulada, cada um na intensidade de 64 mm h-1 e duração de 1,5 h, usando o aparelho simulador de braços rotativos. Avaliaram-se a massa de raízes mortas das plantas, o diâmetro médio ponderado de agregados do solo, a taxa constante de infiltração de água no solo e a perda total de água e de solo por erosão. A infiltração de água no solo foi maior e, inversamente, a perda de água menor no solo recém-mobilizado (superfície solta e rugosa) do que no solo não-mobilizado (superfície firme e praticamente lisa), mesmo o primeiro estando descoberto e o segundo tanto coberto quanto descoberto, com diferenças entre as seqüências culturais. No solo não-mobilizado e coberto, a perda foi pequena em todas as seqüências culturais, enquanto no solo descoberto, tanto não-mobilizado quanto recém-mobilizado, ela foi pequena somente naquelas seqüências culturais que propiciaram altos valores de massa de raízes mortas das plantas e de diâmetro médio ponderado de agregados do solo. No solo recém-mobilizado e descoberto, a diminuição da perda de solo também se deveu à rugosidade superficial criada pelo preparo. As relações da perda total de água e da perda total de solo, com a massa de raízes mortas das plantas e com o diâmetro médio ponderado de agregados do solo, foram significativas a 5 %.
Resumo:
Shoot biomass is considered a relevant component for crop yield, but relationships between biological productivity and grain yield in legume crops are usually difficult to establish. Two field experiments were carried out to investigate the relationships between grain yield, biomass production and N and P accumulation at reproductive stages of common bean (Phaseolus vulgaris) cultivars. Nine and 18 cultivars were grown on 16 m² plots in 1998 and 1999, respectively, with four replications. Crop biomass was sampled at four growth stages (flowering R6, pod setting R7, beginning of pod filling R8, and mid-pod filling R8.5), grain yield was measured at maturity, and N and P concentrations were determined in plant tissues. In both years, bean cultivars differed in grain yield, in root mass at R6 and R7 stages, and in shoot mass at R6 and R8.5, whereas at R7 and R8 differences in shoot mass were significant in 1998 only. In both years, grain yield did not correlate with shoot mass at R6 and R7 and with root mass at R6. Grain yield correlated with shoot mass at R8 in 1999 but not in 1998, with shoot mass at R8.5 and with root mass at R7 in both years. Path coefficient analysis indicated that shoot mass at R8.5 had a direct effect on grain yield in both years, that root mass at R7 had a direct effect on grain yield in 1998, and that in 1999 the amounts of N and P in shoots at R8.5 had indirect effects on grain yield via shoot mass at R8.5. A combined analysis of both experiments revealed that biomass accumulation, N and P in shoots at R6 and R7 as well as root mass at R6 were similar in both years. In 1998 however bean accumulated more root mass at R7 and more biomass and N and P in shoots at R8 and R8.5, resulting in a 57 % higher grain yield in 1998. This indicates that grain yield of different common bean cultivars is not intrinsically associated with vegetative vigor at flowering and that mechanisms during pod filling can strongly influence the final crop yield. The establishment of a profuse root system during pod setting, associated with the continuous N and P acquisition during early pod filling, seems to be relevant for higher grain yields of common bean.
Resumo:
The agricultural potential of Latosols of the Brazilian Cerrado region is high, but when intensively cultivated under inappropriate management systems, the porosity can be seriously reduced, leading to rapid soil degradation. Consequently, accelerated erosion and sedimentation of springs and creeks have been observed. Therefore, the objective of this study was to evaluate structural changes of Latosols in Rio Verde, Goiás, based on the Least Limiting Water Range (LLWR), and relationships between LLWR and other physical properties. Soil samples were collected from the B horizons of five oxidic Latosols representing the textural variability of the Latosols of the Cerrado biome. LLWR and other soil physical properties were determined at various soil compaction degrees induced by uniaxial compression. Soil compaction caused effects varying from enhanced plant growth due to higher water retention, to severe restriction of edaphic functions. Also, inverse relationships were observed between clay content and bulk density values (Bd) under different structural conditions. Bd values corresponding to critical soil macroporosity (BdcMAC) were more restrictive to a sustainable use of the studied Latosols than the critical Bd corresponding to LLWR (BdcLLWR). The high tolerable compression potential of these oxidic Latosols was related to the high aeration porosity associated to the granular structure.
Resumo:
The Cerrado (Brazilian Savannah) plays an important economic and financial role in the nation, since the pastures of this biome feed cattle for half of the domestic bovine meat productivity, and its agricultural fields produce a third of the country's grain. The variability and spatial dependence between the soil physical attributes and soybean yield were evaluated in a crop rotation planted on a degraded brachiaria pasture, on a dystroferric Red Latosol of an experimental farm of the State University of São Paulo (UNESP), in the 2005/2006 growing season. The linear and spatial correlations between these attributes were also studied, to determine conditions that would allow increased agricultural productivity. In the above pasture area, a grid was installed with 124 plots, spaced 10.0 x 10.0 m and 5.0 x 5.0 m apart, in a total area of 7,500 m². From the linear and spatial point of view, the high grain yield can be explained by the number of grains per plant and soil macroporosity. The high variability observed for most soil properties indicated that the crop - livestock integration system results in environmental heterogeneity of the soil.
Resumo:
Soil properties play an important role in spatial variability of crop yield. However, a low spatial correlation has generally been observed between maps of crop yield and of soil properties. The objectives of the present investigation were to assess the spatial pattern variability of soil properties and of corn yield at the same sampling intensity, and evaluate its cause-and-effect relationships. The experimental site was structured in a grid of 100 referenced points, spaced at 10 m intervals along four parallel 250 m long rows spaced 4.5 m apart. Thus, points formed a rectangle containing four columns and 25 rows. Therefore, each sampling cell encompassed an area of 45 m² and consisted of five 10 m long crop rows, in which the referenced points represented the center. Samples were taken from the layers 0-0.1 m and 0.1-0.2 m. Soil physical and chemical properties were evaluated. Statistical analyses consisted of data description and geostatistics. The spatial dependence of corn yield and soil properties was confirmed. The hypothesis of this study was confirmed, i.e., when sampling the soil to determine the values of soil characteristics at similar to sampling intensity as for crop yield assessments, correlations between the spatial distribution of soil characteristics and crop yield were observed. The spatial distribution pattern of soil properties explained 65 % of the spatial distribution pattern of corn yield. The spatial distribution pattern of clay content and percentage of soil base saturation explained most of the spatial distribution pattern of corn yield.
Resumo:
The purpose of this study was to adjust equations that establish relationships between rainfall events with different duration and data from weather stations in the state of Santa Catarina, Brazil. In this study, the relationships between different duration heavy rainfalls from 13 weather stations of Santa Catarina were analyzed. From series of maximum annual rainfalls, and using the Gumbel-Chow distribution, the maximum rainfall for durations between 5 min and 24 h were estimated considering return periods from 2 to 100 years. The data fit to the Gumbel-Chow model was verified by the Kolmogorov-Smirnov test at 5 % significance. The coefficients of Bell's equation were adjusted to estimate the relationship between rainfall duration t (min) and the return period T (y) in relation to the maximum rainfall with a duration of 1 hour and a 10 year return period. Likewise, the coefficients of Bell's equation were adjusted based on the maximum rainfall with a duration of 1 day and a 10 year return period. The results showed that these relationships are viable to estimate short-duration rainfall events at locations where there are no rainfall records.
Resumo:
Araucaria angustifolia (Bert.) O. Kuntze is the main component of the Mixed Ombrophilous forest and, in the State of São Paulo, it is associated with a high diversity of soil organisms, essential for the maintenance of soil quality, making the conservation of this ecosystem a major and pressing challenge. The objective of this study was to identify the physical and chemical properties that are most closely correlated with dehydrogenase enzyme activity, basal respiration and microbial biomass under native (NF) and replanted (RF) Araucaria angustifolia forests in three regions of the state of São Paulo, in winter and summer. The main differentiating factors between the areas were also determined. Each forest was represented by three true replications; at each site, from around the araucaria trees, 15 soil samples (0-20 cm) were collected to evaluate the soil physical, chemical and microbiological properties. At the same points, forest litter was sampled to assess mass and chemical properties. The following microbiological properties were evaluated: microbial biomass carbon (MBC), basal respiration (CO2-C), metabolic quotient (Q: CO2), dehydrogenase enzyme activity (DHA) as well as the physical properties (moisture, bulk density, macroporosity and total porosity), soil chemical properties [pH, organic carbon (org-C), P, Ca, K, Mg, Al, H+Al], litter dry mass, and C, N and S contents. The data were subjected to analysis of variance (TWO-WAY: ANOVA). A Canonical Discriminant Analysis (CDA) and a Canonical Correlation Analysis (CCA) were also performed. In the soil under NF, the values of K, P, soil macroporosity, and litter dry mass were higher and Q: CO2 and DHA lower, regardless of the sampling period, and DHA was lower in winter. In the RF areas, the levels of moisture, porosity and Q: CO2 were higher in both sampling periods, and DHA was higher in winter. The MBC was only higher under NF in the summer, while the litter contents of C, N and S were greater in winter. In winter, CCA showed a high correlation of DHA with CO2-C, pH and H+Al, while in the summer org-C, moisture, Mg, pH and litter C were more associated with DHA and CO2-C. The CDA indicated H+Al, available P, total porosity, litter S content, and soil moisture as the most discriminating variables between NF and RF, but moisture was the most relevant, in both seasons and CO2-C only in winter. The combined analysis of CCA and CDA showed that the contribution of the microbiological variables to a differentiation of the areas was small at both samplings, which may indicate that the period after reforestation was long enough to allow an almost complete recovery of the microbial activity.