Southern Hemisphere Westerly Winds have modulated the formation of laminations in sediments in Lago Fagnano (Tierra del Fuego, Argentina) over the past 6.3 ka

IF 2.4 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Boreas Pub Date : 2022-09-18 DOI:10.1111/bor.12600
Alexis Vizcaino, Francisco J. Jimenez-Espejo, Robert B. Dunbar, David Mucciarone, Antonio García-Alix, Ina Neugebauer, Daniel Ariztegui
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引用次数: 0

Abstract

Tierra del Fuego in Argentina is a unique location to examine past Holocene wind variability since it intersects the core of the Southern Hemisphere Westerly Winds (SHWW). The SHWW are the most powerful prevailing winds on Earth. Their variation plays a role in regulating atmospheric CO2 levels and rainfall amounts and distribution, both today and in the past. We obtained a piston core (LF06-PC8) from Bahía Grande, a protected sub-basin at the southern margin of Lago Fagnano, the largest lake in Tierra del Fuego. This article focuses on the uppermost 185 cm of this core, corresponding to laminated sediment from the last ~6.3 ka. Laminations consist of millimetre-scale paired dark and light layers. Previous studies and new geochemical analysis show that the dark and light layers are characterized by differing concentrations of Mn and Fe. We attribute the distribution of Mn and Fe to episodic hypolimnic oxic–anoxic variations. The age model suggests an approximately bidecadal timescale for the formation of each layer pair. We propose a new model of these redox changes with the SHWW variations. The most likely phenomenon to produce complete water-column mixing is thermobaric instability, which occurs in colder winters with low-intensity SHWW (El Niño-like conditions). In contrast, windier winters are characterized by higher temperatures and reduced mixing in the water column, facilitating a decline in oxygen concentration. Laminations, and the inferred presence of periodic hypolimnion redox changes, are common features of the past ~6.3 ka. Geochemical proxy variability is compatible with an intensification of El Niño/Southern Oscillation activity during the past ~2 ka.

Abstract Image

在过去的6.3年里,南半球的西风调节了法尼亚诺湖(阿根廷火地岛)沉积物中叠层的形成 ka
阿根廷的火地岛是研究过去全新世风变化的独特地点,因为它与南半球西风(SHWW)的核心相交。SHWW是地球上最强大的盛行风。无论是今天还是过去,它们的变化都在调节大气中的二氧化碳水平、降雨量和分布方面发挥着作用。我们从巴伊亚格兰德获得了一个活塞岩心(LF06-PC8),巴伊亚Grande是火地岛最大的湖泊Lago Fagnano南缘的一个受保护的次盆地。本文关注最上面的185 cm,对应于最后~6.3的层状沉积物 ka。层压板由毫米级的成对暗层和亮层组成。先前的研究和新的地球化学分析表明,暗层和亮层的特征是Mn和Fe的浓度不同。我们将Mn和Fe的分布归因于幕式的低湖氧-缺氧变化。年龄模型为每一层对的形成提供了一个近似的双年代时间尺度。我们提出了一个新的模型,这些氧化还原变化与SHWW的变化。最有可能产生完全水柱混合的现象是温压不稳定,这种现象发生在寒冷的冬季,具有低强度的SHWW(类似厄尔尼诺的条件)。相比之下,风大的冬天的特点是温度更高,水柱中的混合减少,有助于氧气浓度的下降。层压,以及推断出的周期性亚锂离子氧化还原变化的存在,是过去~6.3的共同特征 ka。地球化学代理变化与过去2~2年厄尔尼诺/南方涛动活动的增强相一致 ka。
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来源期刊
Boreas
Boreas 地学-地球科学综合
CiteScore
5.90
自引率
4.50%
发文量
36
审稿时长
>12 weeks
期刊介绍: Boreas has been published since 1972. Articles of wide international interest from all branches of Quaternary research are published. Biological as well as non-biological aspects of the Quaternary environment, in both glaciated and non-glaciated areas, are dealt with: Climate, shore displacement, glacial features, landforms, sediments, organisms and their habitat, and stratigraphical and chronological relationships. Anticipated international interest, at least within a continent or a considerable part of it, is a main criterion for the acceptance of papers. Besides articles, short items like discussion contributions and book reviews are published.
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