Comparison of High-Resolution 14C and Luminescence-Based Chronologies of the MIS 2 Madaras Loess/Paleosol Sequence, Hungary: Implications for Chronological Studies

IF 2.3 Q2 GEOSCIENCES, MULTIDISCIPLINARY
Quaternary Pub Date : 2022-11-10 DOI:10.3390/quat5040047
P. Sümegi, D. Molnár, S. Gulyás, T. Stevens, László Makó, P. Cseh, M. Molnár, K. Fitzsimmons, Janina J. Nett, D. Hlavatskyi, F. Lehmkuhl
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引用次数: 1

Abstract

Numerous loess/paleosol sequences (LPS) in the Carpathian Basin span the period of Marine Isotope Stage (MIS) 2 and the last glacial maximum (LGM). Nevertheless, only two known records—Madaras and Dunaszekcső—preserve highly resolved records with absolute chronologies with minimal uncertainties, which enable the meaningful assessment of feedbacks and short-term climatic fluctuations over this period. The Madaras profile is located at the northern margin fringe of the Bácska loess plateau; Dunaszekcső, located on the Danube to its west, yields a chronology built on over 100 14C dates yet spans only part of MIS 2, missing half of the LGM including its peak. Here, we add to the previously published 14C chronology for Madaras (15 dates) with an additional 17 14C and luminescence ages. Resulting age models built solely on quartz OSL and feldspar pIRIRSL data underestimate the 14C based chronology, which is likely based on inaccuracies related to luminescence signal behavior; we observe age underestimations associated with unusual quartz behavior and significant signal loss, a phenomenon also observed in Serbian and Romanian loess, which may relate to non-sensitized grains from proximal sources. Our new chronology provides higher resolution than hitherto possible, yielding consistent 2 sigma uncertainties of ~150–200 years throughout the entire sequence. Our study indicates that the addition of further dates may not increase the chronological precision significantly. Additionally, the new age model is suitable for tackling centennial-scale changes. The mean sedimentation rate based on our new age-depth model (10.78 ± 2.34 years/cm) is the highest yet recorded in the Carpathian Basin for MIS 2. The resolution of our age model is higher than that for the Greenland NGRIP ice core record. The referred horizons in our profile are all characterized by a drop in accumulation and a higher sand input, the latter most likely deriving from nearby re-exposed sand dunes.
匈牙利MIS 2 Madaras黄土/古土壤序列的高分辨率14C和发光年表的比较:对年表研究的启示
喀尔巴阡盆地大量的黄土/古土壤序列(LPS)跨越了海洋同位素阶段(MIS) 2和末次盛冰期(LGM)。然而,只有两个已知的记录——madaras和Dunaszekcső-preserve——具有高度分辨率的记录,具有最小不确定性的绝对年表,能够对这一时期的反馈和短期气候波动进行有意义的评估。马达拉斯剖面位于Bácska黄土高原北缘;dunaszekcsei,位于多瑙河以西,有超过100个14世纪的年代,但只涵盖了MIS 2的一部分,缺少了LGM的一半,包括它的顶峰。在这里,我们在之前发表的Madaras的14C年表(15个日期)中添加了额外的17个14C和发光年龄。仅基于石英OSL和长石pIRIRSL数据建立的年龄模型低估了基于14C的年表,这可能是基于与发光信号行为相关的不准确性;我们观察到年龄低估与不寻常的石英行为和显著的信号损失有关,在塞尔维亚和罗马尼亚的黄土中也观察到这种现象,这可能与来自近端来源的非敏化颗粒有关。我们的新年表提供了比迄今为止可能的更高的分辨率,在整个序列中产生了一致的2西格玛~ 150-200年的不确定性。我们的研究表明,增加更多的日期可能不会显著提高时间精度。此外,新的年龄模型适用于处理百年尺度的变化。基于新年龄-深度模型的平均沉积速率(10.78±2.34年/cm)是MIS 2在喀尔巴阡盆地有记录以来最高的。我们的年龄模型的分辨率高于格陵兰岛NGRIP冰芯记录的分辨率。我们的剖面中提到的层位都具有堆积量下降和砂量增加的特点,后者很可能来自附近重新暴露的沙丘。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Quaternary
Quaternary GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.30
自引率
4.30%
发文量
44
审稿时长
11 weeks
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