Holocene lake shrinkage on the northwestern Tibetan Plateau revealed by K-feldspar single-grain pIRIR dating of paleo-shorelines

IF 1.7 2区 地球科学 Q3 GEOGRAPHY, PHYSICAL Quaternary Geochronology Pub Date : 2024-06-27 DOI:10.1016/j.quageo.2024.101583
Shuai Zhang , Hui Zhao , Leibin Wang , Fahu Chen
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Abstract

As a vital component of the “Asian water tower”, lakes on the Tibetan Plateau (TP) significantly influence the regional ecosystems and economies and they are also an effective sentinel of climate change. However, the temporal and spatial patterns of lakes and the related hydroclimatic evolution on the northwestern TP (NWTP) remain unclear. We reconstructed the lake level variations of a non-glacier-fed lake, Longjue Co, on the NWTP, using optical dating of paleo-shorelines. The optically stimulated luminescence signals of quartz grains were unsuitable for dating due to high contributions of the medium component, and thus the post-infrared infrared stimulated luminescence signals (pIR50IR170, pIR50IR225) of K-feldspar single grains were used. Internal checks including dose recovery tests, residual dose tests, and anomalous fading tests showed that the pIR50IR170 signal was suitable for paleo-shoreline dating in Longjue Co. However, some of the samples were affected by the incomplete bleaching of pIRIR signals before deposition, and in this case the Minimum Age Model was used to constrain the ages. We also examined the dependence of the K-feldspar equivalent dose (De) on grain brightness and explored the possible mechanisms, and the brightest grains were then used for De calculations. The results show that Longjue Co reached its maximum Holocene level (+34 m) during the early Holocene (10.06 ± 1.39 ka), and then after ∼5 ka it commenced a shrinking trend, punctuated by two rapid lake level decreases. Reference to independent paleoclimate records suggests that the Holocene lake level variations of Longjue Co and the regional hydroclimate were mainly controlled by the Indian summer monsoon.

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通过对古海岸线的 K 长石单颗粒 pIRIR 测年揭示青藏高原西北部全新世湖泊萎缩现象
作为 "亚洲水塔 "的重要组成部分,青藏高原(TP)上的湖泊对区域生态系统和经济有着重要影响,同时也是气候变化的有效哨兵。然而,青藏高原西北部湖泊的时空格局及相关的水文气象演变仍不清楚。我们利用古岸线光学测年重建了西北大裂谷中一个非冰川湖泊龙居湖的湖面变化。石英颗粒的光激发发光信号由于介质成分的高贡献率而不适合测年,因此我们使用了钾长石单颗粒的后红外红外激发发光信号(pIR50IR170、pIR50IR225)。内部检验包括剂量恢复检验、残余剂量检验和异常衰减检验,结果表明 pIR50IR170 信号适用于龙居公司的古海岸线年代测定,但部分样品在沉积前受到 pIRIR 信号不完全漂白的影响,在这种情况下,采用最小年龄模型来限制年龄。我们还研究了钾长石当量剂量(De)与晶粒亮度的关系,并探讨了可能的机制,然后采用最亮的晶粒进行 De 计算。结果表明,龙居湖在全新世早期(10.06 ± 1.39 ka)达到了全新世的最高水位(+34 m),然后在 ∼5 ka 之后开始呈萎缩趋势,并出现了两次湖面快速下降。参考独立的古气候记录表明,龙居湖全新世的湖面变化和区域水文气候主要受印度夏季季风的控制。
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来源期刊
Quaternary Geochronology
Quaternary Geochronology 地学-地球化学与地球物理
CiteScore
4.40
自引率
22.20%
发文量
130
审稿时长
20 weeks
期刊介绍: Quaternary Geochronology is an international journal devoted to the publication of the highest-quality, peer-reviewed articles on all aspects of dating methods applicable to the Quaternary Period - the last 2.6 million years of Earth history. Reliable ages are fundamental to place changes in climates, landscapes, flora and fauna - including the evolution and ecological impact of humans - in their correct temporal sequence, and to understand the tempo and mode of geological and biological processes.
期刊最新文献
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