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High-precision age determination of Holocene samples by radiocarbon dating with accelerator mass spectrometry at Nagoya University

机译:名古屋大学用放射性碳测年和加速器质谱法高精度测定全新世样品

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Age determination with high accuracy as well as high resolution is a principal procedure in the research of Quaternary processes, such as volcanic eruptions, lacustrine and ocean sedimentation, and recent fault activation, for investigating past global environmental changes and predicting the realistic changes in the near future. Among several dating techniques applicable to late Quaternary samples, radiocarbon dating has been commonly used since 1950, although its application is limited to ages younger than ca. 50 cal ka BP. In particular, recent developments of accelerator mass spectrometry (AMS)-related techniques have opened a variety of applications. A Tandetron AMS system (Model 4130-AMS, HVE, B.V., the Netherlands) introduced in 1996/97 at Nagoya University, still has excellent performance, and this device has been used frequently for C-14 dating of late Quaternary samples. Here, we describe briefly the AMS C-14-measurement system of Nagoya University and then focus on the following four applications for Japanese Holocene samples: i) C-14 dating and dendrochronological analysis of wood samples excavated from archeological sites; ii) C-14 dating analysis of individual annual rings of a huge tree to compare the C-14 age variations with the IntCal13 dataset; iii) research on the carbon reservoir effects of marine samples around the Japanese Archipelago; iv) potential application of a new C-14 landmark for precise calendar age estimation of tree rings. (C) 2015 Elsevier Ltd and INQUA. All rights reserved.
机译:高精度和高分辨率的年龄确定是研究第四纪过程(如火山喷发,湖相和海洋沉积以及最近的断层活动)的主要程序,用于调查过去的全球环境变化并预测附近的实际变化。未来。自1950年以来,在适用于晚第四纪样品的几种测年技术中,放射性碳测年法一直被广泛使用,尽管它的应用仅限于小于ca.的年龄。 50 cal ka BP。特别地,与加速器质谱(AMS)相关的技术的最新发展已经打开了各种应用。名古屋大学于1996/97年推出的Tandetron AMS系统(型号4130-AMS,HVE,荷兰B.V.)仍然具有出色的性能,并且该设备已被频繁用于后期第四纪样品的C-14测年。在此,我们简要介绍名古屋大学的AMS C-14测量系统,然后重点介绍日本全新世样品的以下四个应用:i)对考古遗址出土的木材样品进行C-14年代测定和树木年代学分析; ii)对一棵大树的单个年轮进行C-14年代分析,以将C-14年龄变化与IntCal13数据集进行比较; iii)研究日本群岛周围海洋样本的碳储量效应; iv)潜在应用新的C-14地标来精确估算树木年轮的日历年龄。 (C)2015 Elsevier Ltd和INQUA。版权所有。

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