934 resultados para Paraiba do Sul and Guandu river basins


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A ETA Guandu é de vital importância para o estado do Rio de Janeiro por ser responsável pelo abastecimento de 8,5 milhões de pessoas na Região Metropolitana. Este trabalho tem como objetivo efetuar uma análise qualitativa de sua vulnerabilidade, em relação à qualidade e quantidade de água captada, perante diversos fatores de estresse, visando dimensionar a importância da variabilidade climática na composição de sua vulnerabilidade. Adotou-se o conceito de vulnerabilidade como função da exposição (grau em que um sistema experimenta estresses), da sensibilidade (grau em que um sistema é afetado pelo estresse) e capacidade adaptativa (capacidade de um sistema de se ajustar, moderar ou lidar com as conseqüências de um estresse). Dessa forma, foi possível desenvolver uma metodologia de análise qualitativa de vulnerabilidade, específica ao caso da ETA Guandu, perante quatro fatores de estresse considerados como os mais determinantes para a vulnerabilidade atual: i) variabilidade climática; ii) transposição; iii) condições ambientais e qualidade da água e iv) acidentes ambientais. Os resultados evidenciaram que o maior grau de vulnerabilidade da ETA Guandu se relaciona à transposição, já que diversas partes de sua infraestrutura não dispõem de ações de manutenção preventiva. A vulnerabilidade devido às condições ambientais é também intensa, principalmente a turbidez no período chuvoso; entre 2000 e 2010, a ETA Guandu foi parcialmente paralisada 22 vezes em função do grande aporte de sedimentos. Não identificamos nenhum registro de paralisação total da ETA Guandu em função de acidentes ambientais, embora algumas vezes estes tenham imposto a paralisação da transposição. O componente variabilidade climática (intensificação de eventos hidrológicos extremos) revelou-se como o estressor menos determinante da vulnerabilidade atual.

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"The fourth of a series of publications giving hydrologic data in the State of North Carolina."

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Mode of access: Internet.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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This work assesses the efficiency of polyacrylamides for natural organic matter (NOM) removal from Paraiba do Sul River (Brazil) raw water for drinking purposes. Jar tests were performed following an experimental design protocol. Three kinds of polyacrylamides (anionic, cationic, and non-ionic) at 0.2 mg L(-1) were tested. After coagulation, turbidity, DOC, UVA(254) and SCAN (UV-absorbing material) were determined. Color and pH were also measured. It was found that polyacrylamides did not reduce the amounts of alum and lime needed in the process and that the amount of alum alone for removing UV-absorbing organic matter is significantly higher. Efficiency of the coagulation process decreased as follows: non-ionic -> cationic -> anionic -> no polyacrylamide. Removal efficiencies for the best case were: 100%, 90%, 83%, and 68% for turbidity, DOC, UVA(254), and SCAN, respectively.

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Peat palynomorphs from Eugenio de Melo, middle valley of Paraiba do Sul River, Sao Paulo, Brazil. This paper presents palynomorphs identified in the peats of the Eugenio de Melo region, the middle valley of the Paraiba do Sul River, Sao Paulo State. The samples were collected at intervals of 10 cm from a core with 3.90 m deep, aged between 11400-11220 and 490-290 cal. years B.P. Three types of algae were identified and presented, and ten spores, two gymnosperm pollen grains and thirty-nine angiosperms were described, with their own ecological information.

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Land-use changes influence local biodiversity directly, and also cumulatively, contribute to regional and global changes in natural systems and quality of life. Consequent to these, direct impacts on the natural resources that support the health and integrity of living beings are evident in recent times. The Western Ghats being one of the global biodiversity hotspots, is reeling under a tremendous pressure from human induced changes in terms of developmental projects like hydel or thermal power plants, big dams, mining activities, unplanned agricultural practices,monoculture plantations, illegal timber logging, etc. This has led to the once contiguous forest habitats to be fragmented in patches, which in turn has led to the shrinkage of original habitat for the wildlife, change in the hydrological regime of the catchment, decreased inflow in streams,human-animal conflicts, etc. Under such circumstances, a proper management practice is called for requiring suitable biological indicators to show the impact of these changes, set priority regions and in developing models for conservation planning. Amphibians are regarded as one of the best biological indicators due to their sensitivity to even the slightest changes in the environment and hence they could be used as surrogates in conservation and management practices. They are the predominating vertebrates with a high degree of endemism (78%) in Western Ghats. The present study is an attempt to bring in the impacts of various land-uses on anuran distribution in three river basins. Sampling was carried out for amphibians during all seasons of 2003-2006 in basins of Sharavathi, Aghanashini and Bedthi. There are as many as 46 species in the region, one of which is new to science and nearly 59% of them are endemic to the Western Ghats. They belong to nine families, Dicroglossidae being represented by 14 species,followed by Rhacophoridae (9 species) and Ranidae (5 species). Species richness is high in Sharavathi river basin, with 36 species, followed by Bedthi 33 and Aghanashini 27. The impact of land-use changes, was investigated in the upper catchment of Sharavathi river basin. Species diversity indices, relative abundance values, percentage endemics gave clear indication of differences in each sub-catchment. Karl Pearson’s correlation coefficient (r) was calculated between species richness, endemics, environmental descriptors, land-use classes and fragmentation metrics. Principal component analysis was performed to depict the influence of these variables. Results show that sub-catchments with lesser percentage of forest, low canopy cover, higher amount of agricultural area, low rainfall have low species richness, less endemic species and abundant non-endemic species, whereas endemism, species richness and abundance of endemic species are more in the sub-catchments with high tree density, endemic trees, canopy cover, rainfall and lower amount of agriculture fields. This analysis aided in prioritising regions in the Sharavathi river basin for further conservation measures.

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No Estado do Rio de Janeiro, a atividade de transporte rodoviário de produtos perigosos foi responsável por aproximadamente 40% dos atendimentos a emergências realizados pela FEEMA (hoje INEA) nos últimos anos. Dentre as diversas rotas de tráfego desses produtos, destaca-se a rodovia Presidente Dutra que percorre as imediações dos rios Paraíba do Sul e Guandu, e seus principais afluentes. A exposição a riscos ambientais da ETA Guandu é, portanto, bastante alta, pois compreende a Bacia do rio Paraíba do Sul, a montante da transposição, bem como a Bacia do rio Guandu, a montante do ponto de captação da Cedae (área de influência da ETA Guandu). Este trabalho identifica riscos de acidentes ambientais associados ao transporte terrestre de produtos perigosos em parte da área territorial de influência da ETA Guandu, buscando fornecer subsídios para a elaboração de um plano de contingência das Bacias dos rios Paraíba do sul e Guandu. A ETA Guandu, que abastece cerca de 9 milhões de habitantes da RMRJ, capta águas do rio Guandu que, por sua vez, depende principalmente das águas transpostas do rio Paraíba do Sul e do rio Piraí, situados em outra bacia hidrográfica. Além de um mapeamento de pontos de alta e média gravidade das principais rodovias e ferrovias na área de influência da ETA Guandu, a principal contribuição deste estudo foi a identificação de vários trechos de alto risco de acidentes ambientais ao longo da rodovia Presidente Dutra, em território fluminense, que podem efetivamente comprometer a qualidade das águas dos rios Paraíba do Sul e Guandu.

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The objective of this paper is to outline how stable isotope techniques can contribute to the elucidation of the sources and the fate of riverine nitrate and sulphate in watershed studies. The example used is the Oldman River Basin (OMRB), located in southern Alberta (Canada). Increasing sulphate concentrations and decreasing d34S values along the flowpath of the Oldman River indicate that oxidation of pyrite in tills is a major source of riverine sulphate in the agriculturally used portion of the OMRB. Chemical and isotopic data showed that manure-derived nitrogen contributes significantly to the increase in nitrate concentrations in the Oldman River and its tributaries draining agricultural land. It is suggested that hydrological conditions control agricultural return flows to the surface water bodies in southern Alberta and impart significant seasonal variations on concentrations and isotopic compositions of riverine nitrate. Combining isotopic, chemical, and hydrometric data permitted us to estimate the relative contribution of major sources to the total solute fluxes. Hence, we submit that isotopic measurements can make an important contribution to the identification of nutrient and pollutant sources and to river basin management.

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The INtegrated CAtchment (INCA) model has been developed to simulate the impact of mine discharges on river systems. The model accounts for the key kinetic chemical processes operating as well as the dilution, mixing and redistribution of pollutants in rivers downstream of mine discharges or acid rock drainage sites. The model is dynamic and simulates the day-to-day behaviour of hydrology and eight metals (cadmium, mercury, copper, zinc, lead, arsenic, manganese and chromium) as well as cyanide and ammonia. The model is semi-distributed and can simulate catchments, sub-catchment and in-stream river behaviour. The model has been applied to the Roia Montan Mine in Transylvania, Romania, and used to assess the impacts of old mine adits on the local catchments as well as on the downstream Aries and Mures river system. The question of mine restoration is investigated and a set of clean-up scenarios investigated. It is shown that the planned restoration will generate a much improved water quality from the mine and also alleviate the metal pollution of the river system.

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The Tropical Rainfall Measuring Mission 3B42 precipitation estimates are widely used in tropical regions for hydrometeorological research. Recently, version 7 of the product was released. Major revisions to the algorithm involve the radar refl ectivity - rainfall rates relationship, surface clutter detection over high terrain, a new reference database for the passive microwave algorithm, and a higher quality gauge analysis product for monthly bias correction. To assess the impacts of the improved algorithm, we compare the version 7 and the older version 6 product with data from 263 rain gauges in and around the northern Peruvian Andes. The region covers humid tropical rainforest, tropical mountains, and arid to humid coastal plains. We and that the version 7 product has a significantly lower bias and an improved representation of the rainfall distribution. We further evaluated the performance of versions 6 and 7 products as forcing data for hydrological modelling, by comparing the simulated and observed daily streamfl ow in 9 nested Amazon river basins. We find that the improvement in the precipitation estimation algorithm translates to an increase in the model Nash-Sutcliffe effciency, and a reduction in the percent bias between the observed and simulated flows by 30 to 95%.

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Samples of the muscle of two species of tilapia (Oreochromis mossambicus and O. niloticus; 17-20 cm length) were obtained from at least one reservoir in each of the six river basins (Aruvi Aru, Kala Oya, Kirindi Oya, Ma Oya, Mahaweli, and Walawe Ganga catchments) in Sri Lanka. The metals Ca, Cu, Fe, K, Mg, Mn, Na, and Zn were consistently detected in the muscle tissue. Overall, there were few differences in the concentration of metals between the two species of fish, although there were also some statistically significant differences (p < 0.05) in the concentrations of some metals in fish obtained from some of the reservoirs. Aruvi Aru stands out as a river basin in which the two fish species have significantly lower concentration of metals when compared to other river basins. The concentration of the metals studied were below WHO and FSANZ guideline values for fish, suggesting that the consumption of the metals found in tilapia from these reservoirs poses little risk to human health.