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首页> 外文期刊>Quaternary Research: An Interdisciplinary Journal >Holocene paleoenvironmental changes inferred from diatom assemblages in sediments of Kusawa Lake, Yukon Territory, Canada
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Holocene paleoenvironmental changes inferred from diatom assemblages in sediments of Kusawa Lake, Yukon Territory, Canada

机译:由加拿大育空地区草泽湖沉积物中的硅藻组合推断出的全新世古环境变化

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摘要

The southwest Yukon Territory, Canada, is an important region for recovering sensitive records of Holocene paleoclimatic change. More information is needed, however, to constrain the timing of the major Holocene climatic transitions, and to understand associated impacts on different ecosystems. For example, paleolimnological studies have focused on small lakes and ponds, but the history of large lakes has received little study. We analyzed diatom assemblages, species richness, valve concentrations, and biogenic silica, in the sediments of Kusawa Lake (60°16.5'N; 136°10.9'W; 671ma.s.l.) to reconstruct the responses of this large (surface area=142km~2), deep (Z_(max)=135m) freshwater ecosystem to Holocene climatic transitions. Diatoms colonized the lake soon after ice retreat, around 11,000calyr BP; assemblages throughout the record were dominated by planktonic types. Diatom concentrations and biogenic silica were high during the Holocene Thermal Maximum between 10,700 and 7300calyr BP, then began to decrease in response to cooling associated with orbitally driven reductions in insolation. Diatom assemblages shifted towards taxa with lower surface water temperature optima after 8300calyr BP, perhaps in response to abrupt and progressive cooling. Our study confirms that diatom assemblages in large lakes are sensitive to regional-scale paleoclimatic changes.
机译:加拿大育空地区西南部是恢复全新世古气候变化敏感记录的重要地区。但是,需要更多信息来限制全新世主要气候变化的时间,并了解对不同生态系统的相关影响。例如,古湖泊学的研究集中在小型湖泊和池塘,但是大型湖泊的历史却鲜有研究。我们分析了草泽湖(60°16.5'N; 136°10.9'W; 671ma.sl)沉积物中的硅藻组合,物种丰富度,阀门浓度和生物硅,以重建这一大区域(表面积= 142km)的响应。 〜2),深水(Z_(max)= 135m)淡水生态系统向全新世气候过渡。冰撤退后不久,硅藻就在湖中定居,大约11,000calyr BP。整个记录中的组合以浮游类型为主。在10700到7300calyr BP之间的全新世热最大值期间,硅藻浓度和生物硅含量较高,然后响应于与轨道驱动的日照减少相关的冷却而开始降低。在8300calyr BP之后,硅藻组合物向具有较低地表水温最佳状态的类群转移,这可能是由于突然和逐渐的冷却所致。我们的研究证实,大型湖泊中的硅藻组合对区域尺度的古气候变化敏感。

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