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首页> 外文期刊>Journal of Paleolimnology >Five thousand years of sediment transfer in a high arctic watershed recorded in annually laminated sediments from Lower Murray Lake, Ellesmere Island, Nunavut, Canada
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Five thousand years of sediment transfer in a high arctic watershed recorded in annually laminated sediments from Lower Murray Lake, Ellesmere Island, Nunavut, Canada

机译:从加拿大努纳武特埃勒斯米尔岛下穆里湖每年积层沉积物中记录的高层北极流域中的沉积物转移已有五千年

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摘要

Sediments in Lower Murray Lake, northern Ellesmere Island, Nunavut Canada (81°21′ N, 69°32′ W) contain annual laminations (varves) that provide a record of sediment accumulation through the past 5000+ years. Annual mass accumulation was estimated based on measurements of varve thickness and sediment bulk density. Comparison of Lower Murray Lake mass accumulation with instrumental climate data, long-term records of climatic forcing mechanisms and other regional paleoclimate records suggests that lake sedimentation is positively correlated with regional melt season temperatures driven by radiative forcing. The temperature reconstruction suggests that recent temperatures are ~2.6°C higher than minimum temperatures observed during the Little Ice Age, maximum temperatures during the past 5200 years exceeded modern values by ~0.6°C, and that minimum temperatures observed approximately 2900 varve years BC were ~3.5°C colder than recent conditions. Recent temperatures were the warmest since the fourteenth century, but similar conditions existed intermittently during the period spanning ~4000–1000 varve years ago. A highly stable pattern of sedimentation throughout the period of record supports the use of annual mass accumulation in Lower Murray Lake as a reliable proxy indicator of local climatic conditions in the past.
机译:加拿大努纳武特北部Ellesmere岛北部Murray湖的沉积物(北纬81°21′,西经69°32′)中含有年叠层(脉),记录了过去5000多年的沉积物积累情况。基于瓣膜厚度和沉积物堆积密度的测量值来估算年累积质量。下穆雷湖的物质积累与仪器气候数据,长期气候强迫机制记录以及其他区域古气候记录的比较表明,湖泊沉积与辐射强迫驱动的区域融化季节温度呈正相关。温度重建表明,最近的温度比小冰河时期观测到的最低温度高约2.6°C,过去5200年的最高温度比现代值高出约0.6°C,并且观测到的最低温度大约是公元前2900年比最近的温度低〜3.5°C。最近的温度是自14世纪以来最热的,但是类似的条件在大约4000-1000年前的断断续续的时期内存在。在整个记录期间内,高度稳定的沉积模式支持使用下墨累湖中的年度质量累积作为过去当地气候条件的可靠替代指标。

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