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Reservoirs have a wide variety of uses that have led to frequent conflicts over ecological conservation and contamination, especially as land management has intensified. Oligotrophication must be implemented in numerous tropical reservoirs that experience advanced eutrophication to maintain aquatic ecosystem functions. To quantify impacts on ecosystem functions and to develop an adaptive management policy, multiple studies have been conducted on the Itaparica Reservoir, São Francisco River, in the semi-arid north-eastern region of Brazil. Here, we add to that existing body of knowledge through investigating how nutrient accumulation is affected by water exchange between the main river flow and Icó-Mandantes Bay. Operational water-level fluctuations in the reservoir create large desiccated littoral areas that release high amounts of nutrients when they are rewetted. In particular, water-level variation promotes proliferation of Egeria densa, a noxious weed, thus elevating trophic levels of the Itaparica Reservoir and Icó-Mandantes Bay. Analysis with a P efficiency model determined 25 μg P L?1 to be the critical concentration and further indicated that the critical load in both bodies of water have been exceeded. Moreover, intensive fish aquaculture using net cages has led to further overtaxing of the reservoir. We conclude that an effective ecological reservoir management policy must involve oligotrophication, harvesting of noxious water weeds for use as soil amendment in agriculture or biogas production, “blue” aquaculture, and limiting hydroelectric power production based on current water availability.  相似文献   
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Herbarium plants were used as a material to study possible long-term changes in mineral elements of forest plants. Plants from South Norway collected in the period 1870 to 1930 were compared to plants collected in 1982. Relative to mineral contents in plants from 1870 to 1930, the 1982 material showed elevated levels of Zn, Cd, Rb, K, Mn and Ti and decreased levels of Sr, B, Ca and Mo in some of the plant species analysed. Most of these differences may be explained by changes in the environmental conditions, due to differences in chemical composition of precipitation, accelerated soil acidification and subsequent increasing mineral weathering. Consequently analysis of herbarium plants seems to provide valuable information about preindustrial levels of mineral elements and seems to detect changes in mineral elements brought about by recent anthropogenic activity.  相似文献   
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进行大面积荒漠蝗虫的化学防治涉及各种景观区和生态系统,在环境敏感地区或其周边地区,农药喷撒没有严格的限制,作业者往往忽视这些地区的敏感性.人们对荒漠蝗虫控制所带来的环境问题的关注程度与日俱增,因而有必要制定明确的指导性防治原则.本文旨在确定和描绘非洲东北部对杀虫剂污染特别敏感的区域,如保护区、湿地、人口居住区、绿洲,以及候鸟集中分布的地区,这些区域与1986~1998年间实际进行的荒漠蝗虫防治区域相对比.结果表明,环境脆弱地区,特别是湿地,如临时性水域和红树林,以及人类居住区附近都进行过化学防治,而且一定程度上还涉及到保护区和候鸟大量聚集区.  相似文献   
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Chinese life cycle impact assessment factors   总被引:5,自引:0,他引:5  
IntroductionLifecycleassessment(LCA)isanenvironmentalmanagementtoolthatisusedtoexamineandevaluatetheenvironmentalimpactsassociatedwiththeexistenceofproducts(Jensen,1998;Weidema,1997;Wenzel,1997).ThefocusofLCAisontheentirelifecycleoftheproduct,i.e.fromtheextracti…  相似文献   
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退化的半干旱农业生态系统土壤碳的积累--危险和潜力   总被引:4,自引:0,他引:4  
<京都议定书>意味着新的可能性:人类将把生物圈作为碳库进行管理.无论从环境还是社会经济的观点来看,把农业生态系统作为碳库是最合适可行的.非洲地区退化的生态系统显著受益于土地管理的改善(碳积累计划的一部分).在非洲有大面积的这样的农业生态系统,对它们的恢复是一个亟待解决的问题.我们同意UNEP的观点:<气候变化公约>、<联合国防治沙漠化公约>以及<联合国生物多样性公约>相互之间将会产生潜在而重要的促进作用.我们调查了苏丹半干旱农业生态系统土壤碳含量增加的潜力,发现延长休耕期将使土壤碳增加,而农业边缘区转变成牧场后碳储量将在100年内恢复到天然萨王纳的80%.碳增汇带来的经济收益将会对这些农业生态系统的家庭经济产生显著的贡献.  相似文献   
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Climate change generally requires species to migrate northward or to higher elevation to maintain constant climate conditions, but migration requirement and migration capacity of individual species can vary greatly. Individual populations of species occupy different positions in the landscape that determine their required range shift to maintain similar climate, and likewise the migration capacity depends on habitat connectivity. Here, we demonstrate an approach to quantifying species vulnerabilities to climate change for 419 rare vascular plants in Alberta, Canada, based on a multivariate velocity of climate change metric, local habitat fragmentation, and migration capacity. Climate change velocities indicated that future migration requirements ranged from 1 to 5 km/year in topographically complex landscapes, such as the Alberta Foothills and Rocky Mountains. In contrast, migration requirements to maintain constant climate in relatively flat Boreal Plains, Parkland, and Grassland ranged from 4 to 8 km/year. Habitat fragmentation was also highest in these flat regions, particularly the Parkland Natural Region. Of the 419 rare vascular plants assessed, 36 were globally threatened (G1–G3 ranking). Three globally threatened species were ranked as extremely vulnerable and five species as highly vulnerable to the interactions among climate change velocity, habitat fragmentation, and migration capacity. Incorporating dispersal characteristics and habitat fragmentation with local patterns in climate change velocity improves the assessment of climate change threats to species and may be applied to guide monitoring efforts or conservation actions.  相似文献   
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Regional Environmental Change - Traditional farming landscapes in the temperate zone that have persisted for millennia can be exceptionally species-rich and are therefore key conservation targets....  相似文献   
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