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Late Holocene air temperature variability reconstructed from the sediments of Laguna Escondida, Patagonia, Chile (45°30′S)

机译:从Laguna Escondida,巴塔哥尼亚,智利(45°30的沉积物)重建沉积物的全新世空气温度变异性

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摘要

Climate and environmental reconstructions from natural archives are important for the interpretation of current climatic change. Few quantitative high-resolution reconstructions exist for South America which is the only land mass extending from the tropics to the southern high latitudes at 56°S. We analyzed sediment cores from two adjacent lakes in Northern Chilean Patagonia, Lago Castor (45°36′S, 71°47′W) and Laguna Escondida (45°31′S, 71°49′W). Radiometric dating (210Pb, 137Cs, 14C-AMS) suggests that the cores reach back to c. 900 BC (Laguna Escondida) and c. 1900 BC (Lago Castor). Both lakes show similarities and reproducibility in sedimentation rate changes and tephra layer deposition. We found eight macroscopic tephras (0.2–5.5 cm thick) dated at 1950 BC, 1700 BC, at 300 BC, 50 BC, 90 AD, 160 AD, 400 AD and at 900 AD. These can be used as regional time-synchronous stratigraphic markers. The two thickest tephras represent known well-dated explosive eruptions of Hudson volcano around 1950 and 300 BC. Biogenic silica flux revealed in both lakes a climate signal and correlation with annual temperature reanalysis data (calibration 1900–2006 AD; Lago Castor r = 0.37; Laguna Escondida r = 0.42, seven years filtered data). We used a linear inverse regression plus scaling model for calibration and leave-one-out cross-validation (RMSEv = 0.56 °C) to reconstruct sub decadal-scale temperature variability for Laguna Escondida back to AD 400. The lower part of the core from Laguna Escondida prior to AD 400 and the core of Lago Castor are strongly influenced by primary and secondary tephras and, therefore, not used for the temperature reconstruction. The temperature reconstruction from Laguna Escondida shows cold conditions in the 5th century (relative to the 20th century mean), warmer temperatures from AD 600 to AD 1150 and colder temperatures from AD 1200 to AD 1450. From AD 1450 to AD 1700 our reconstruction shows a period with stronger variability and on average higher values than the 20th century mean. Until AD 1900 the temperature values decrease but stay slightly above the 20th century mean. Most of the centennial-scale features are reproduced in the few other natural climate archives in the region. The early onset of cool conditions from c. AD 1200 onward seems to be confirmed for this region.
机译:来自自然档案的气候和环境重建对于对当前气候变化的解释很重要。南美存在少数数量的高分辨率重建,这是在56°S的唯一从热带地区延伸到南方高纬度的唯一陆地。我们分析了来自智利巴塔哥尼亚北部的两个相邻湖泊的沉积物核心,Lago Castor(45°36°,71°47'W)和Laguna Escondida(45°31,71°49'w)。辐射测定约会(210pb,137cs,14c-ams)表明核心达到C. 900年(Laguna Escondida)和C. 1900年BC(Lago Castor)。湖泊均显示沉积率变化和Tephra层沉积中的相似之处和再现性。我们发现了八个宏观Tephras(0.2-5.5厘米厚),在1950年,1700年,公元前1700年,在300年,50年,90公元前90张,160广告,400广告和900广告。这些可以用作区域时间同步地层标记。两个最厚的Tephras代表了1950年和300年左右的哈德森火山的已知良好的爆炸性爆发。生物原硅通量在湖泊中揭示了气候信号和与年温再分析数据的相关性(校准1900-2006广告; Lago Castor R = 0.37; Laguna escondida r = 0.42,七年过滤数据)。我们使用了线性反回归加上校准和留下交叉验证(Rmsev = 0.56°C)的缩放模型,以重建Laguna Escondida的副数尺度温度变化,然后返回广告400.核心的下部Laguna Escondida在广告400之前,Lago Castor的核心受到初级和继发性Tephras的强烈影响,因此,不用于温度重建。 Laguna Escondida的温度重建在5世纪(相对于20世纪的意思)显示了寒冷的条件,从AD 600到AD 1150的温暖温度,从AD 1200到AD 1450到AD 1450。来自AD 1750至AD 1700我们的重建显示变异性更强,平均值高于20世纪的意思。直到AD 1900,温度值降低但保持略高于20世纪的意思。大多数百年级特征在该地区的其他几个自然气候档案中转载。来自C的凉爽条件的早期发作。此区域似乎已确认广告1200。

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