利用石英中的原位宇宙成因 14C 对瑞典中东部最后一次冰盖衰退和海平面以上地貌的出现进行评估

IF 2.7 Q2 GEOCHEMISTRY & GEOPHYSICS
B. Goodfellow, A. Stroeven, N. Lifton, J. Heyman, Alexander Lewerentz, K. Hippe, J. Näslund, M. Caffee
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引用次数: 0

摘要

摘要。石英中的原位宇宙成因 14C(原位 14C)是最近开发的一种工具,可用于确定基岩表面暴露的年代,最长可达 25000 年。我们从瑞典中东部的露头岩层中测试了原位 14C 测定的准确性:(i) 根据孤立盆地中有机物质的放射性碳年代测定法构建的相对海平面 (RSL) 曲线;(ii) 根据粘土变粒年代测定法和传统的放射性碳年代测定法构建的当地脱冰期。从福斯马克附近的波罗的海沿岸向西南延伸的海拔横断面上采集了五个花岗岩基岩样本。由于这些样本来自冰川期后最高海岸线以下的基岩露头,因此它们针对的是海平面以上地貌逐渐出现的时间。相比之下,另外五个样本的原位 14C 浓度应能反映当地的冰川消融年龄,这些样本取自位于福斯马克以西 100 公里处冰川后最高海岸线上方的花岗岩露头。这 10 个原位 14C 测量值提供了可靠的年龄约束,在不确定范围内,与 RSL 曲线和当地的冰川消融年代学相比毫不逊色。这些数据表明,在宇宙成因 10Be 和 26Al 经常返回复杂暴露结果的地区,原位 14C 可以准确地确定冰盖消融的日期和冰盖后暴露的持续时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Last ice sheet recession and landscape emergence above sea level in east-central Sweden, evaluated using in situ cosmogenic 14C from quartz
Abstract. In situ cosmogenic 14C (in situ 14C) in quartz provides a recently developed tool to date exposure of bedrock surfaces of up to ∼ 25 000 years. From outcrops located in east-central Sweden, we tested the accuracy of in situ 14C dating against (i) a relative sea level (RSL) curve constructed from radiocarbon dating of organic material in isolation basins and (ii) the timing of local deglaciation constructed from a clay varve chronology complemented with traditional radiocarbon dating. Five samples of granitoid bedrock were taken along an elevation transect extending southwestwards from the coast of the Baltic Sea near Forsmark. Because these samples derive from bedrock outcrops positioned below the highest postglacial shoreline, they target the timing of progressive landscape emergence above sea level. In contrast, in situ 14C concentrations in an additional five samples taken from granitoid outcrops above the highest postglacial shoreline, located 100 km west of Forsmark, should reflect local deglaciation ages. The 10 in situ 14C measurements provide robust age constraints that, within uncertainties, compare favourably with the RSL curve and the local deglaciation chronology. These data demonstrate the utility of in situ 14C to accurately date ice sheet deglaciation, and durations of postglacial exposure, in regions where cosmogenic 10Be and 26Al routinely return complex exposure results.
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来源期刊
Geochronology
Geochronology Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
0.00%
发文量
35
审稿时长
19 weeks
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