Molecular to macrofossils indicating last millennium sea level in Lavsa saltpans, Croatia

IF 1.9 3区 地球科学 Q3 GEOGRAPHY, PHYSICAL Quaternary International Pub Date : 2024-10-15 DOI:10.1016/j.quaint.2024.10.002
Benny Bechor , Martina Conti , Brendan Keely , Simona Avnaim-Katav , Steffen Mischke , Slobodan Miko , Ozren Hasan , Maja Grisonic , Irena Radić Rossi , Naomi Porat , Yael Edelman-Furstenberg , Dorit Sivan
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Abstract

Intertidal salt production sites existed continuously around the Mediterranean since classical antiquity, and their remains are present in large numbers along the Dalmatian (east Adriatic) coast. Most of them are preserved and dated to medieval times. This study aims to develop complementary proxies identifying the salt production layer in submerged ancient saltpans of Lavsa, a remote island on the central Dalmatian coast, to date the saltwork units by optically stimulated luminescence (OSL) and use them to infer changes in sea level. The significance of the study is in the application of molecular fossil analyses identifying the hypersaline layer in the sediments from a core drilled in the saltpan's site. The molecular fossil analyses correlate with the results of micro and macrofossil analyses and geochemical findings, all representing the saltwork unit. The depth of the hypersaline layers and the OSL dates provide relative sea level (RSL) lower limiting points of −145 ± 5 cm at 1309 ± 33 CE, probably the time when salt production started in Lavsa, and −115 ± 5 cm at 1364 ± 52 CE when saltwork activities ended. These limiting points extend the known RSL index point in Lavsa Island of −92 ± 8 cm, with an updated average age of 1337 ± 62 CE, correlating with the historical records. Medieval lower sea levels were also observed in the northern and southern parts of the east Adriatic coast as well as in other parts of the Mediterranean, probably driven by climate-related events, generating centennial-scale fluctuations in past sea levels that cannot be predicted by glacial isostatic adjustment (GIA) models.
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显示克罗地亚拉夫萨盐盘上千年海平面的分子到大型化石
自古以来,地中海沿岸一直存在潮间带盐田,达尔马提亚(东亚得里亚海)沿岸有大量盐田遗迹。这些遗址大多保存完好,年代可追溯到中世纪。本研究旨在开发补充代用指标,确定达尔马提亚海岸中部偏远岛屿拉夫萨水下古盐田的产盐层,通过光学激发发光(OSL)确定盐田单元的年代,并利用它们推断海平面的变化。这项研究的重要意义在于应用分子化石分析鉴定了盐田遗址钻探岩芯沉积物中的超盐层。分子化石分析结果与微化石和大化石分析结果以及地球化学研究结果相互关联,这些结果都代表了盐业单元。超盐层的深度和 OSL 日期提供了相对海平面(RSL)的下限点,分别为公元 1309±33 年的 -145±5 厘米(可能是拉夫萨开始制盐的时间)和公元 1364±52 年的 -115±5 厘米(制盐活动结束的时间)。这些极限点扩展了拉夫萨岛已知的 RSL 指数点 -92 ± 8 厘米,更新后的平均年龄为西元 1337 ± 62 年,与历史记录相符。在东亚得里亚海沿岸的北部和南部地区以及地中海的其他地区也观测到了中世纪海平面较低的现象,这可能是由与气候相关的事件驱动的,在过去的海平面上产生了百年尺度的波动,而冰川等静力调整(GIA)模型无法预测这种波动。
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来源期刊
Quaternary International
Quaternary International 地学-地球科学综合
CiteScore
5.60
自引率
4.50%
发文量
336
审稿时长
3 months
期刊介绍: Quaternary International is the official journal of the International Union for Quaternary Research. The objectives are to publish a high quality scientific journal under the auspices of the premier Quaternary association that reflects the interdisciplinary nature of INQUA and records recent advances in Quaternary science that appeal to a wide audience. This series will encompass all the full spectrum of the physical and natural sciences that are commonly employed in solving Quaternary problems. The policy is to publish peer refereed collected research papers from symposia, workshops and meetings sponsored by INQUA. In addition, other organizations may request publication of their collected works pertaining to the Quaternary.
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