985 resultados para Water season
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Shipboard measurements of organohalogen compounds in air and surface seawater were conducted in the Canadian Arctic in 2007-2008. Study areas included the Labrador Sea, Hudson Bay, and the southern Beaufort Sea. High volume air samples were collected at deck level (6 m), while low volume samples were taken at 1 and 15 m above the water or ice surface. Water samples were taken within 7 m. Water concentration ranges (pg/L) were as follows: alpha-hexachlorocyclohexane (alpha-HCH) 465-1013, gamma-HCH 150-254, hexachlorobenzene (HCB) 4.0-6.4, 2,4-dibromoanisole (DBA) 8.5-38, and 2,4,6-tribromoanisole (TBA) 4.7-163. Air concentration ranges (pg/m**3) were as follows: alpha-HCH 7.5-48, gamma-HCH 2.1-7.7, HCB 48-71, DBA 4.8-25, and TBA 6.4-39. Fugacity gradients predicted net deposition of HCB in all areas, while exchange directions varied for the other chemicals by season and locations. Net evasion of alpha-HCH from Hudson Bay and the Beaufort Sea during open water conditions was shown by air concentrations that averaged 14% higher at 1 m than 15 m. No significant difference between the two heights was found over ice cover. The alpha-HCH in air over the Beaufort Sea was racemic in winter (mean enantiomer fraction, EF = 0.504 ± 0.008) and nonracemic in late spring-early summer (mean EF = 0.476 ± 0.010). This decrease in EF was accompanied by a rise in air concentrations due to volatilization of nonracemic alpha-HCH from surface water (EF = 0.457 ± 0.019). Fluxes of chemicals during the southern Beaufort Sea open water season (i.e., Leg 9) were estimated using the Whitman two-film model, where volatilization fluxes are positive and deposition fluxes are negative. The means ± SD (and ranges) of net fluxes (ng/m**2/d) were as follows: alpha-HCH 6.8 ± 3.2 (2.7-13), gamma-HCH 0.76 ± 0.40 (0.26-1.4), HCB -9.6 ± 2.7 (-6.1 to -15), DBA 1.2 ± 0.69 (0.04-2.0), and TBA 0.46 ± 1.1 ng/m**2/d (-1.6 to 2.0).
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The relationship between sexual reproduction of littoral chydorid cladocerans (Anomopoda, Chydoridae) and environmental factors in aquatic ecosystems has been rarely studied, although the sexual behavior of some planktonic cladocerans is well documented. Ecological monitoring was used to study the relationship between climate-related and non-climatic environmental factors and chydorid sexual reproduction patterns in nine environmentally different lakes that were closely situated to each other in southern Finland. Furthermore, paleolimnological ephippium analysis was used to clarify how current sexual reproduction is reflected in surface sediments of the same nine lakes. Additionally, short sediment cores from two of the lakes were studied with ephippium analysis to examine how recent climate-related and non-climatic environmental changes were reflected in chydorid sexual reproduction. Ephippium analysis uses the subfossil shells of asexual individuals to represent asexual reproduction and the shells of sexual females, i.e. ephippia, to represent sexual reproduction. The relative proportion of ephippia of all chydorid species, i.e. total chydorid ephippia (TCE) indicates the relative proportion of sexual reproduction during the open-water season. This thesis is part of the EPHIPPIUM-project which aims to develop ephippium analysis towards a quantitative climate reconstruction tool. To be able to develop a valid climate model, the influence of the environmental stressors other than climate on contemporary sexual reproduction and its reflection in sediment assemblages must be clarified so they can be eliminated from the model. During contemporary monitoring a few sexual individuals were observed during summer, apparently forced to sexual reproduction by non-climatic local environmental factors, such as crowding or invertebrate predation. Monitoring also revealed that the autumnal chydorid sexual reproduction period was consistent between the different lakes and climate-related factors appeared to act as the main inducers and regulators of autumnal sexual reproduction. However, during autumn, chydorid species and populations among the lakes exhibited a wide variation in the intensity, induction time, and length of autumnal sexual reproduction. These variations apparently act as mechanisms for local adaptations due to the genetic variability provided by sexual reproduction that enhance the ecological flexibility of chydorid species, allowing them to inhabit a wide range of environments. A large variation was also detected in the abundance of parthenogenetic and gamogenetic individuals during the open-water season among the lakes. On the basis of surface sediment samples, the general level of the TCE is ca. 3-4% in southern Finland, reflecting an average proportion of sexual reproduction in this specific climate. The variation in the TCE was much lower than could be expected on the basis of the monitoring results. This suggests that some of the variation detected by monitoring may derive from differences between sampling sites and years smoothed out in the sediment samples, providing an average of the entire lake area and several years. The TCE is always connected to various ecological interactions in lake ecosystems and therefore is always lake-specific. Hypothetically, deterioration of climate conditions can be detected in the TCE as an increase in ephippia of all chydorid species, since a shortening open-water season is reflected in the relative proportions of the two reproduction modes. Such an increase was clearly detected for the time period of the Little Ice Age in a sediment core. The paleolimnological results also indicated that TCE can suddenly increase due to ephippia of one or two species, which suggests that at least some chydorids can somehow increase the production of resting eggs under local environmental stress. Thus, some environmental factors may act as species-specific environmental stressors. The actual mechanism of the increased sexual reproduction seen in sediments has been unknown but the present study suggests that the mechanism is probably the increased intensity of gamogenesis, i.e. that a larger proportion of individuals in autumnal populations reproduce sexually, which results in a larger proportion of ephippia in sediments and a higher TCE. The results of this thesis demonstrate the utility of ephippium analysis as a paleoclimatological method which may also detect paleolimnological changes by identifying species-specific environmental stressors. For a quantitative TCE-based climate reconstruction model, the natural variation in the TCE of surface sediments in different climates must be clarified with more extensive studies. In addition, it is important to recognize the lakes where the TCE is not only a reflection of the length of the open-water season, but is also non-climatically forced. The results of ephippium analysis should always be interpreted in a lake-specific manner and in the context of other paleoecological proxies.
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The hydrology of the Ebrie coastal lagoon in Abidjan area is summarized. The authors describe the oxygenation in that area during the two extreme seasons of the hydrological cycle: the low-water season (March-April) and the high-water season (Sept-Oct). The influences of the continental and oceanic waters, photosynthesis, exchanges with the atmosphere and pollution are considered. The oxigen consumption of primary organic pollution represents from 9 to 12% of the content of the waters that circulates in the area. It is geographically very heterogeneous. The central basin, swept by strong marine and fresh water currents, shows a rather high level of water oxygenation. In the peripheric bays, water circulation and mixing are less important and pollution accelerates the natural eutrophic processes. During the low-water season, a vertical stratification is responsible for a bottom anoxic layer and the deposit of reduced organic silts. On the contrary, supersaturations, up to 200%, are recorded on the surface layer. During the high-water season the break of the vertical stratification sets the loose reduced silts into suspension and partly reoxygenates the bottom waters. A classification of the different areas, based on the oxygen vertical profiles is proposed.
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This paper describes fishing activities of households in four communities located in a floodplain lake system of the lower Amazon river. An average of 42 households were interviewed about their fishing activity on a monthly basis. The fishery is a typical multi-gear, multi-specific artisanal fishery. Approximately ten types of fishing gear are utilized, of which the three main types of gillnets account for 51% of the total catch. The catch per trip averaged 15 kg, for an annual total of 2,295 kg per household. Some 40 species or groups of species are caught, although four species account for 50% of the total. There is a strong seasonal pattern to the fishery, with catch per trip and catch per unit effort (CPUE) highest in the low water season (September-November). While there are marked differences between subsistence and commercially oriented fishing strategies, these differences are more in degree than in type, since fishers use the same types of gear and most fishers regularly sell part of their catch.
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Moina minuta, a tropical species of Cladocera, was selected for the study of medium size at maturity and female egg production, due to its abundance and frequency in samples during low-water season in 1997 and high-water season in 1998, in Amapá Lake, Western Amazônia. The primiparous female had a size of 330 μm and 340 μm in low and high water, respectively. Moina individuals reached maximum size during high water (595μm). The medium size of the ovigerous females, in low water was 501 μm, producing an average of 4.41 eggs/female, while in high water, it was 533μm, with an average egg production of 4.84 eggs/female. The results, analyzed by the t test and Fischer's F test, showed that there were no statistical differences in size among individuals (t= -10.69, F=1.20 and P>0.1227), nor among ovigerous females (t= -4.45, F=1.02 and P>0.8906), considering the two seasons.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Agronomia (Proteção de Plantas) - FCA
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Estudei, entre abril e junho de 2004, o consumo de proteína animal em sete aldeias de terra firme e oito aldeias de várzea na Terra Indígena (TI) Uaçá utilizando calendários diários de consumo. A TI Uaçá localiza-se no município de Oiapoque, no extremo norte do Estado do Amapá, e faz divisas com as Terras Indígenas Juminã e Galibi e com o Parque Nacional de Cabo Orange. A TI Uaçá é habitada por aproximadamente 4.500 índios das etnias Palikur, Karipuna e Galibi-Marworno em uma área de 470.164 ha, onde ocorrem grandes porções de campos sazonalmente alagados (várzeas), terra firme e pequenas manchas de cerrado. Durante o período de estudo, que na região corresponde à época de cheias, foram distribuídos 243 calendários em 83 casas das aldeias de terra firme e em 160 casas das aldeias de várzea. Cada calendário era composto por um conjunto de desenhos representando as diferentes fontes de proteína animal disponíveis para o consumo e os moradores marcavam em cada dia o que haviam consumido. Nas análises, foram utilizados somente 55 calendários das aldeias de terra firme e 113 de várzea que tinham mais de 40% do total de dias disponíveis preenchidos. A carne de fauna e o pescado foram as fontes de proteína animal mais frequentemente utilizadas na alimentação dos moradores tanto de terra firme como de várzea. Itens comercializados, como a carne de frango, conservas enlatadas e carne de gado foram menos consumidos pelos índios, sendo porém, mais utilizados nas aldeias de terra firme do que na várzea. Os mamíferos foram a classe de vertebrados silvestres mais consumida na terra firme, seguido pelos répteis e pelas aves. Na várzea, não foram encontradas diferenças significativas entre o consumo de mamíferos e répteis, que foram mais consumidos do que as aves. Dentre os grupos de vertebrados consumidos, os ungulados foram os mais freqüentes na dieta dos habitantes da TI Uaçá, sendo os mais consumidos na terra firme e, juntamente com os crocodilianos, os mais consumidos também na várzea. Este estudo será a base para um futuro plano de manejo de fauna para a TI Uaçá, visto a importância da carne de fauna para a alimentação dos moradores da área, que em breve sofrerá os impactos causados pelo asfaltamento de uma rodovia que corta seu território e pela construção de uma linha de energia ligando Oiapoque à Macapá e que também passará por dentro da área.
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O presente estudo descreve, registra e compara estratégias de pesca e manejo comunitário de quelônios aquáticos em três comunidades da várzea de Santarém. Avaliou-se também o consumo de quelônios, incluindo preferências, rejeições e tabus alimentares, e uso destes como recursos terapêuticos na medicina popular. As técnicas de pesca de quelônios empregadas foram descritas, compreendendo variações espacial e sazonal de uso e espécies capturadas e seletividade das técnicas fundamentadas nos saberes locais. Analisaram-se ainda o rendimento das pescarias e as relações entre investimento e retorno das mesmas. Os dados foram coletados entre junho de 2007 a julho de 2008. Realizaram-se conversas informais, acompanhamento das atividades pesqueiras e observação participante nas comunidades. Entrevistas semi-estruturadas também foram realizadas adotando-se o método recordatório alimentar, monitoramento do consumo anual de quelônios e recordações das últimas pescarias de quelônios. Os primeiros relatos de manejo de quelônios na Amazônia são datados da época do contato entre populações ameríndias e europeias. Na década de 70 ações do governo brasileiro foram implementadas fundamentadas no gerenciamento centralizado no poder do Estado. Hoje, práticas de comanejo de quelônios ocorrem em vários lugares na Amazônia, como nas comunidades Ilha de São Miguel, Costa do Aritapera e Água Preta. Mesmo pautados na demanda comunitária os manejos dessas três comunidades apresentam perspectivas diferenciadas em virtude do variado grau de experiência com sistemas de manejo comunitário. A Ilha de São Miguel já realiza o manejo de quelônios há cerca de 40 anos com certo grau de sucesso, enquanto na Água Preta o co-manejo vem sendo estabelecido há 22 anos de forma menos rigorosa e na Costa do Aritapera não se obteve êxito em sua recente implementação. De modo geral, a inclusão dos principais usuários dos recursos naturais em seu manejo ainda se constitui uma tarefa de difícil execução. O grande desafio para o manejo de quelônios e outros recursos da fauna cinegética na Amazônia é o reconhecimento legal de seu uso. O consumo de quelônios é uma tradição enraizada na cultura amazônica, entretanto é criminalizado, constrangendo a maior parte da população a assumir seu uso. Por ser considerada atividade ilegal não há estimativas da quantidade de animais explorados, tornando difícil a implantação de formas de manejo comunitário sustentáveis. Percebeu-se na dieta dos ribeirinhos desse estudo a participação de peixe como principal fonte de proteína animal, enquanto o consumo de quelônios registrado foi relativamente pequeno. Constataram-se diferenças quanto às espécies de quelônios consumidas. Em geral, tracajá (Podocnemis unifilis) (carne e ovos) configura-se como quelônio mais consumido nas três comunidades, sendo a pitiu (Podocnemis sextuberculata) (carne e ovos) consumida principalmente na Costa do Aritapera. As tartarugas (Podocnemis expansa) são pouco utilizadas, não houve registros de coleta de seus ovos, sendo sua carne consumida principalmente na Ilha de São Miguel. Tais variações podem estar relacionadas à combinação de fatores ecológicos e ao histórico do manejo presentes em cada comunidade. Não foram observadas diferenças culturais nas comunidades estudadas quanto ao uso de quelônios. Tartaruga é a espécie mais rejeitada, usada principalmente na medicina popular; tracajá e pitiu em geral são os quelônios preferidos, sendo os três considerados reimosos (animais sujeitos a tabus alimentares em algumas circunstâncias, como doenças, menstruação, gravidez e pós-parto). A espécie mais capturada foi o tracajá, seguindo-se a pitiu e em menor proporção a tartaruga. O tracajá é encontrado em vários ambientes, sendo coletado durante o ano todo nas três comunidades; pitius são capturadas principalmente na Costa do Aritapera no período da seca e da vazante, quando estão concentradas durante a migração ao saírem das áreas inundáveis em direção aos rios e às praias de desova, enquanto tartarugas são pescadas nos lagos protegidos da Ilha de São Miguel, na enchente e na cheia. As técnicas de pesca apresentam uso diferenciado em função do nível do rio. Os pescadores reconhecem tais variações sazonais, as quais aliadas a um conjunto de saberes locais são utilizadas na seleção das técnicas de pesca de quelônios. A pesca de quelônios é realizada em geral de modo oportuno, durante as pescarias de peixes. O rendimento das pescarias de quelônio foi maior quando estas não incluíram a captura de peixes e quando realizadas com uso da mão. O rendimento com base na CPUEN diferiu entre as comunidades estudadas e entre os períodos de pesca, porém não houve diferença significativa no rendimento das pescarias entre esses parâmetros quando a biomassa foi utilizada nos cálculos de CPUE. O pescador, em geral, não está preocupado em maximizar seu rendimento, já que a maior parte das pescarias não se destina a comercialização. O rendimento, desta forma, acaba refletindo mais o acerto de um bom local de pesca do que o esforço de deslocamento empregado na mesma.Quando a mancha era boa os pescadores gastavam pouco tempo, enquanto em manchas menos produtivas gastavam mais tempo. Alguns pontos a serem adotados com vistas à concretização e sucesso do manejo comunitário são sugeridos nesse estudo: (1) definição clara dos direitos de acesso aos recursos e das sanções em caso de infração dos acordos; (2) estabelecimento de programas de capacitação de lideranças comunitárias; (3) criação de um fundo comunitário para desenvolvimento de outras atividades econômicas e investimento na melhoria da qualidade de vida dos moradores e nas próprias ações envolvidas no manejo; (4) reconhecimento e uso do conhecimento ecológico local e do direito de se utilizar o recurso; (5) ampliação regional do modelo comunitário para outras áreas, considerando que algumas espécies realizam grandes migrações; (6) monitoramento das populações exploradas; (7) avaliação periódica da efetivação do manejo e seu papel para os moradores locais; (8) repartição dos benefícios entre os comunitários. No caso específico dos quelônios recomendam-se também a proteção de outros ambientes além das áreas de nidificação e a determinação de um sistema de cotas voltado ao aproveitamento de ovos que seriam perdidos com possibilidade de comercialização para criadores.
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Pós-graduação em Agronomia (Proteção de Plantas) - FCA
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Sediment cores spanning the last two centuries were taken in Hagelseewli, a high-elevation lake in the Swiss Alps. Contiguous 0.5 cm samples were analysed for biological remains, including diatoms, chironomids, cladocera, chrysophyte cysts, and fossil pigments. In addition, sedimentological and geochemical variables such as loss-on-ignition, total carbon, nitrogen, sulphur, grain-size and magnetic mineralogy were determined. The results of these analyses were compared to a long instrumental air temperature record that was adapted to the elevation of Hagelseewli by applying mean monthly lapse rates. During much of the time, the lake is in the shadow of a high cliff to the south, so that the lake is ice-covered during much of the year and thus decoupled from climatic forcing. Lake biology is therefore influenced more by the duration of ice-cover than by direct temperature effects during the short open-water season. Long periods of ice-cover result in anoxic water conditions and dissolution of authigenic calcites, leading to carbonate-free sediments. The diversity of chironomid and cladoceran assemblages is extremely low, whereas that of diatom and chrysophyte cyst assemblages is much higher. Weak correlations were observed between the diatom and chrysophyte cyst assemblages on the one hand and summer or autumn air temperatures on the other, but the proportion of variance explained is low, so that air temperature alone cannot account for the degree of variation observed in the paleolimnological record. Analyses of mineral magnetic parameters, spheroidal carbonaceous particles and lead suggest that atmospheric pollution has had a significant effect on the sediments of Hagelseewli, but little effect on the water quality as reflected in the lake biota.
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Time series of brightness temperatures (T(B)) from the Advanced Microwave Scanning Radiometer-Earth Observing System (AMSR-E) are examined to determine ice phenology variables on the two largest lakes of northern Canada: Great Bear Lake (GBL) and Great Slave Lake (GSL). T(B) measurements from the 18.7, 23.8, 36.5, and 89.0 GHz channels (H- and V- polarization) are compared to assess their potential for detecting freeze-onset/melt-onset and ice-on/ice-off dates on both lakes. The 18.7 GHz (H-pol) channel is found to be the most suitable for estimating these ice dates as well as the duration of the ice cover and ice-free seasons. A new algorithm is proposed using this channel and applied to map all ice phenology variables on GBL and GSL over seven ice seasons (2002-2009). Analysis of the spatio-temporal patterns of each variable at the pixel level reveals that: (1) both freeze-onset and ice-on dates occur on average about one week earlier on GBL than on GSL (Day of Year (DY) 318 and 333 for GBL; DY 328 and 343 for GSL); (2) the freeze-up process or freeze duration (freeze-onset to ice-on) takes a slightly longer amount of time on GBL than on GSL (about 1 week on average); (3) melt-onset and ice-off dates occur on average one week and approximately four weeks later, respectively, on GBL (DY 143 and 183 for GBL; DY 135 and 157 for GSL); (4) the break-up process or melt duration (melt-onset to ice-off) lasts on average about three weeks longer on GBL; and (5) ice cover duration estimated from each individual pixel is on average about three weeks longer on GBL compared to its more southern counterpart, GSL. A comparison of dates for several ice phenology variables derived from other satellite remote sensing products (e.g. NOAA Interactive Multisensor Snow and Ice Mapping System (IMS), QuikSCAT, and Canadian Ice Service Database) show that, despite its relatively coarse spatial resolution, AMSR-E 18.7 GHz provides a viable means for monitoring of ice phenology on large northern lakes.
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Thesis (Master's)--University of Washington, 2016-06
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The sea state of the Beaufort and Chukchi seas is controlled by the wind forcing and the amount of ice-free water available to generate surface waves. Clear trends in the annual duration of the open water season and in the extent of the seasonal sea ice minimum suggest that the sea state should be increasing, independent of changes in the wind forcing. Wave model hindcasts from four selected years spanning recent conditions are consistent with this expectation. In particular, larger waves are more common in years with less summer sea ice and/or a longer open water season, and peak wave periods are generally longer. The increase in wave energy may affect both the coastal zones and the remaining summer ice pack, as well as delay the autumn ice-edge advance. However, trends in the amount of wave energy impinging on the ice-edge are inconclusive, and the associated processes, especially in the autumn period of new ice formation, have yet to be well-described by in situ observations. There is an implicit trend and evidence for increasing wave energy along the coast of northern Alaska, and this coastal signal is corroborated by satellite altimeter estimates of wave energy.