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首页> 外文期刊>Boreas >Late Holocene high precipitation events recorded in lake sediments and catchment geomorphology, Lake Vuoksjavratje, NW Sweden
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Late Holocene high precipitation events recorded in lake sediments and catchment geomorphology, Lake Vuoksjavratje, NW Sweden

机译:瑞典西北部Vuoksjavratje湖沉积物和集水地貌记录的全新世晚期高降水事件

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摘要

In this paper, we show the potential of combining multi-proxy analysis of lake sediments with catchment geomorphology to better understand palaeoenvironmental changes. Previous studies have suggested that alpine lakes in N Sweden may be highly sensitive to variations in catchment erosion and precipitation, and that this sensitivity may influence ecologically based reconstructions of past temperature changes. We analysed lake sediments covering the last 5100 years from the alpine Lake Vuoksjavratje in NW Sweden in order to identify different erosional regimes in the lake catchment, sediment sources and lake sedimentary processes, which ultimately affect the palaeoecological record. The measured proxies include elemental geochemistry from XRF core scanning, grain size, sediment accumulation rates, fraction of terrestrial organic carbon and geomorphological mapping, supported by previously published chironomid and total organic carbon data. From the integrated results we identified time intervals when increased intensity of precipitation altered sedimentation and lake catchment erosional processes. The most prominent event occurred c. 2900 cal. a BP and is interpreted to be the result of excessive precipitation, possibly related to the climatic shift towards cooler and wetter conditions referred to as the 2.8 ka event.
机译:在本文中,我们展示了将湖泊沉积物的多代理分析与流域地貌相结合以更好地理解古环境变化的潜力。先前的研究表明,瑞典北部的高山湖泊可能对集水区侵蚀和降水的变化高度敏感,而且这种敏感性可能会影响基于生态的过去温度变化的重建。我们分析了来自瑞典西北部高山Vuoksjavratje湖近5100年的湖泊沉积物,以确定湖泊集水区,沉积物来源和湖泊沉积过程的不同侵蚀方式,这些侵蚀方式最终影响了古生态记录。所测量的代理包括来自XRF岩心扫描的元素地球化学,晶粒大小,沉积物积累速率,陆地有机碳的比例和地貌图,并由先前发表的Chironomid和总有机碳数据提供了支持。从综合结果中,我们确定了增加降水强度改变沉积和湖泊流域侵蚀过程的时间间隔。最突出的事件发生在c。 2900卡路里BP,被解释为降水过多的结果,可能与气候向偏凉和潮湿的气候转变有关,这被称为2.8 ka事件。

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