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Decadal trends of pelagic algal biomass capacities in Lago Maggiore (N. Italy)

机译:Lago Maggiore(意大利北部)的浮游藻类生物量容量的年代际趋势

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During the last two decades Lago Maggiore, the second largest Italian lake, located in the subalpine lake district, moved from meso-eutrophy during the mid-1970s to an oligotrophic condition as a consequence of change in the nutrient load (Manca et al. 1992, De Bernardi et al. 1996). Following the decrease of in-lake TP concentration, notable changes in the plankton assemblages occurred (Manca & Ruggiu 1998, Ruggiu et al. 1998) after a period of resilience of the plankton communities against falling phosphorus. Different trophic states affect the capacity of a system and the biomass a lake can support (Reynolds 1997). This study evaluates algal levels, measured as chlorophyll a, in Lago Maggiore during its recent trophic evolution. We calculated potential algal carrying capacity based on phosphorus and solar radiation, representing nutrient and energy limitation, respectively. We analysed the relationship between these two resources during the lake's trophic evolution by dividing the data series into three periods corresponding to the response of the lake to decreasing phosphorus load.
机译:在过去的二十年中,位于亚高山湖区的第二大意大利湖泊拉各·马焦雷(Lago Maggiore)由于养分含量的变化而从1970年中期的中营养状态转变为贫营养状态(Manca等,1992)。 ,De Bernardi等,1996)。随着湖中TP浓度的降低,浮游生物群落对磷的下落具有一定的恢复力后,浮游生物的组合发生了显着变化(Manca&Ruggiu 1998,Ruggiu等1998)。不同的营养状态会影响系统的容量和湖泊可以支持的生物量(雷诺兹,1997年)。这项研究评估了Lago Maggiore在最近的营养进化过程中的藻类水平,以叶绿素a衡量。我们根据磷和太阳辐射计算了潜在的藻类承载能力,分别代表营养和能量限制。我们通过将数据序列划分为三个周期来分析湖泊营养演变过程中这两种资源之间的关系,这三个周期对应于湖泊对磷负荷降低的响应。

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