Luminescence dating study of eruptions and baked sediments from Changbaishan volcano, Northeastern China

IF 1.9 3区 地球科学 Q3 GEOGRAPHY, PHYSICAL
Huili Yang , Bo Pan , Jie Chen , Jinfeng Liu , Hui Liang , Ning Di , Jinhua Du , Shenghua Li
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Abstract

Accurate dating of Quaternary eruptions is crucial for understanding volcanic histories, geo-dynamics, volcanic hazards, and the development and evolution of magmatic systems. However, determining the age of young volcanic eruptions remains a very challenging task. In this study, optically stimulated luminescence (OSL) dating is applied to fine-grained quartz (FQ) and polymineral (FM) materials sampled from the tephra deposit and its baked layers from the Heishigou section of the Changbaishan volcano, China. Adiocarbon dating obtained from a charcoal sample adjacent to the tephra layer yields an age of 876–994 cal. AD, referred to as the millennium eruption. OSL dating results show that FQ is the suitable material for dating young volcanic deposits. The OSL ages are in good agreement with both the radiocarbon dating of the tephra layer charcoal and the ages of over 27 tree rings modeled with Oxcal. The FQ in tephra layer displays the highest sensitivity of the OSL signal and the 110 °C thermoluminescence (TL) peak to dose of ionizing radiation, compared to the baked layer and unbaked sediments. Moreover, the heavily baked layers, closest to tephra, exhibit greater sensitivity to dose compared to other less baked layers. The unbaked sediments show lowest sensitivity to dose. Tephra experienced the highest temperatures heating, as suggested by the increase of the sensitivity to dose at increasing baking temperatures, up to ∼800 °C. The quartz grains in the tephra and the baked layers were heated to temperatures of at least 500 °C, sufficient to completely reset their luminescence signals. However, caution is necessary when using OSL dating for pyroclastic flow deposits and quartz from volcanic fields older than 10,000 years due to the potential instability of the medium component in OSL signals and/or incomplete bleaching prior to deposition.
长白山火山喷发和烘烤沉积物的发光测年研究
第四纪火山喷发的准确定年对于了解火山历史、地球动力学、火山灾害以及岩浆系统的发育和演化至关重要。然而,确定年轻火山喷发的年龄仍然是一项非常具有挑战性的任务。本文采用光学激发发光(OSL)测年技术对长白山火山黑石沟剖面的细粒石英(FQ)和多矿物(FM)样品进行了测年。从靠近火山层的木炭样本中获得的碳定年法显示,它的年龄在公元876-994年,也就是千禧年喷发。OSL测年结果表明,FQ是测定年轻火山沉积物测年的合适材料。OSL年龄与tephra层木炭的放射性碳定年以及用Oxcal模拟的27个以上树木年轮的年龄都符合得很好。与烘烤层和未烘烤层相比,烘烤层的FQ显示出最高的OSL信号和110℃热释光峰对电离辐射剂量的敏感性。此外,与其他较不烘烤的层相比,最接近tephra的重度烘烤层对剂量表现出更大的敏感性。未焙烤的沉积物对剂量的敏感性最低。Tephra经历了最高温度的加热,这表明在增加烘烤温度时对剂量的敏感性增加,最高可达~ 800°C。将炉内的石英颗粒和烘烤层加热到至少500℃,足以完全重置其发光信号。然而,在对火山碎屑流沉积物和来自超过1万年的火山场的石英进行OSL测年时,由于OSL信号中介质成分的潜在不稳定性和/或沉积前的不完全漂白,因此必须谨慎。
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 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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