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首页> 外文期刊>Journal of paleolimnology >Lake superior sedimentary diatom profiles from the Medieval Climate Anomaly and twentieth century suggest recent assemblage changes reflect novel environmental conditions
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Lake superior sedimentary diatom profiles from the Medieval Climate Anomaly and twentieth century suggest recent assemblage changes reflect novel environmental conditions

机译:来自中世纪气候异常和二十世纪的湖泊卓越的沉积硅藻概况表明最近的集会变更反映了新的环境条件

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We examined diatom assemblages in a sediment core from Lake Superior (Canada/USA) that spans the interval similar to 500-1350 CE and includes the Medieval Climate Anomaly (MCA), 950-1250 CE. We sought to determine whether diatom assemblages responded to climate change during that warm, dry period. From 500 to 1350 CE, diatom assemblages were dominated by Lindavia ocellataand Lindavia comensis and there were no significant changes in the diatom community during the MCA. In another core from Lake Superior, which spans the period similar to 1815-2010 CE, we documented significant changes in diatom assemblages, which began ca. 1940. We used recently established relationships between planktonic diatom taxa and climate and lake physicochemical variables from monitoring data, to assess the drivers of change in diatom assemblages during the past century. Results from the two cores suggest that multiple environmental drivers, including both climate change and human-mediated influences on nutrient cycling, led to shifts in recent diatom communities in Lake Superior. The lack of change in diatom assemblages during the MCA supports the conclusion that environmental changes in Lake Superior during the past century are novel and were driven largely by human activities.
机译:我们检查了来自湖泊的沉积物核心(加拿大/美国)的沉积物核心,跨越与500-1350 CE相似的间隔,包括中世纪气候异常(MCA),950-1250 CE。我们试图确定硅藻综合组织是否在温暖,干燥期间响应了气候变化。从500到1350 CE,硅藻综合组织由Lindavia Ocellataand Lindavia Comensis主导,并且在MCA期间硅藻群体没有显着变化。在苏必利湖的另一个核心中,它跨越了类似于1815-2010 CE的时期,我们记录了硅藻综合组件的重大变化,该股东开始了加利福尼亚州。 1940年,我们在监测数据中使用了浮游硅藻分类群和气候和湖泊物理化学变量之间的关系,以评估过去世纪硅藻综合组织变革的驱动因素。两座核心的结果表明,多种环境司机,包括气候变化和人类介导对营养循环的影响,导致湖泊优越的湖泊近距离社区的转变。在MCA期间,硅藻汇演中缺乏变化支持结论,过去的世纪湖泊湖的环境变化是新颖的,并且在很大程度上受到人类活动的推动。

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