Last interglacial and MIS 9e relative sea-level highstands in the Central Mediterranean: a reappraisal from coastal cave deposits in the Cilento area, Southern Italy

IF 2.9 Q2 GEOGRAPHY, PHYSICAL
Ilaria Isola , Monica Bini , Andrea Columbu , Mauro Antonio Di Vito , Biagio Giaccio , Hsun-Ming Hu , Fabio Martini , Francesca Pasquetti , Lucia Sarti , Federica Mulè , Antonio Mazzoleni , Chuan-Chou Shen , Giovanni Zanchetta
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引用次数: 0

Abstract

A revaluation of the relative sea-level (RSL) indicators in the Baia di Infreschi (Cilento, Southern Italy) supported by new 30 U/Th dating on speleothems indicates that the upper level of Lithophaga burrows identified by Bini et al. (2020) at ∼9 m a.s.l. and correlated to the Last Interglacial (LIG) highstand should be referred to the highstand of the MIS 9e, whereas the local RSL for the highstand of the LIG is now reassessed at 5.3 ± 0.18 m a.s.l. The upper level of the Lithophaga marker can be followed for ∼12 km along the coast, suggesting a substantial absence of important relative tectonic movements. In the Baia di Infreschi an additional marine indicator, a notch sealed by a flowstone dated ∼110 ka, indicates several phases of RSL stationing below the maximum highstand of the LIG. The presence of flowstones as low as 2 m a.s.l. dated to the MIS 7 shows that the highstand of MIS 7 was probably below the present sea level. All these evidences allow us to reassess the stratigraphy of some archaeological caves in the area, indicating that the sedimentary successions preserved there are older than what was previously believed.

地中海中部的末次冰期和 MIS 9e 相对海平面高地:意大利南部 Cilento 地区沿海洞穴沉积物的再评价
通过对岩浆岩进行新的 30 U/Th 测定,对 Baia di Infreschi(意大利南部,Cilento)的相对海平面(RSL)指标进行了重新评估。与最后一个间冰期(LIG)高位相关联的 LITHOPAGA 洞穴上层应被归入 MIS 9e 高位,而当地 LIG 高位的 RSL 现在被重新评估为 5.3 ± 0.18 m a.s.l.。在因弗雷斯奇湾(Baia di Infreschi),还有一个海洋指标,即由一块流石封住的缺口,其年代为 110 ka 年,表明 RSL 有几个阶段位于 LIG 最高高点之下。年代为 MIS 7 的低至海拔 2 米的流石的存在表明,MIS 7 的高地可能低于现在的海平面。所有这些证据使我们能够重新评估该地区一些考古洞穴的地层学,表明那里保存的沉积序列比以前认为的要早。
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来源期刊
Quaternary Science Advances
Quaternary Science Advances Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
4.00
自引率
13.30%
发文量
16
审稿时长
61 days
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