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首页> 外文期刊>Journal of paleolimnology >Recent and historic eutrophication of an island lake in northern Lake Michigan, USA
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Recent and historic eutrophication of an island lake in northern Lake Michigan, USA

机译:美国密歇根湖北部岛屿湖的近期和历史富营养化

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Lake Geneserath is located on Beaver Island in northern Lake Michigan, USA. It exhibits evidence of recent eutrophication, despite limited anthropogenic activity in the watershed. The primary goal of this study was to determine the time scale of trophic state change in Lake Geneserath and the influence of multiple stressors. Sediment cores from the shallow northern and deep southern basins of Lake Geneserath were collected and sectioned at 0.5-cm intervals over the topmost 10 cm and at 1.0-cm intervals for the remainder of the core. Total phosphorus, percent organic matter, and chlorophyll derivative concentrations were measured in each section, and core chronology was established using 210 Pb. Diatom assemblages were quantified from evenly distributed sections in each core. Geochemical variables in the southern basin core indicate historic (AD similar to 1450-1650) and modern (1848-present) periods of eutrophication, coincident with human disturbance and climate warming events. Geochemical variables in the northern basin core confirm accelerating eutrophication after 1950. The fossil diatom assemblages in both basins shifted from species favoring low nutrients to more nutrient-tolerant taxa. A change from periphytic to planktonic diatom species, concurrent with reduced percent organic matter in the northern basin core, indicates rising water level during the second half of the twentieth century. Lake Geneserath was subject to multiple stressors and its trophic status increased with recent residential development and climate warming.
机译:Geneserath湖位于美国密歇根湖北部的海狸岛上。尽管流域的人为活动有限,但它仍显示出近期富营养化的迹象。这项研究的主要目的是确定吉纳塞拉特湖营养状态变化的时间尺度以及多种压力源的影响。收集来自Geneserath湖北部和南部较浅盆地的沉积物芯,并在最上面的10 cm处以0.5 cm的间隔进行切片,其余部分以1.0 cm的间隔进行切片。在每个部分中测量总磷,有机质百分比和叶绿素衍生物的浓度,并使用210 Pb建立岩心年代。从每个核心中均匀分布的部分对硅藻组件进行了定量。南部盆地核心的地球化学变量指示了富营养化的历史时期(AD类似于1450-1650)和现代富营养化时期(1848年至今),与人类干扰和气候变暖事件相吻合。 1950年后,北部盆地核心地区的地球化学变量证实了富营养化的加速发展。两个盆地的化石硅藻组合体从偏爱低养分的物种转移到了更耐养分的类群。从盆生硅藻到浮游硅藻物种的变化,同时北部盆地核心的有机物百分比降低,表明二十世纪下半叶水位上升。 Geneserath湖受到多种压力,其营养状况随着近期住宅开发和气候变暖而增加。

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