印度东部Barakar-Damodar盆地晚第四纪沉积物包括74 ka Toba灰和17 ka微岩屑工具箱

IF 1.7 Q3 GEOSCIENCES, MULTIDISCIPLINARY Journal of Asian Earth Sciences: X Pub Date : 2023-06-01 DOI:10.1016/j.jaesx.2022.100135
Sourav Mukhopadhyay , Biswajit Roy , Satish J. Sangode , Manoj K. Jaiswal , Samiran Dutta
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引用次数: 1

摘要

最年轻的托巴塔夫火山(YTT,74ka前)被认为是第四纪最大的超级火山事件之一的产物,可能对气候和人类居住造成灾难性影响。在这里,我们报告了在印度东部Barakar Damodar晚第四纪沉积物中罕见出现的约2 cm YTT灰层,以及在灰层上方的沉积沉积物中发现的Microlith工具包。具有气泡壁、块状、杆状结构和浮石形态的玻璃碎片的二氧化硅含量较高,与其他YTT灰矿床相似。与灰层相关的沉积相显示出从湖泊沉积环境向河流沉积环境的转变。沉积学、岩石学、矿物学、地球化学和磁学性质表明,火山灰沉积在湖泊环境中。此外,Barakar Damodar山谷火山灰床的发现、Bovid物种的原位出现和微岩组合增加了我们对更新世晚期沉积环境、人类活动以及末次冰川盛期印度东部可能的局部迁移的了解。
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Late Quaternary sediments from Barakar-Damodar Basin, Eastern India include the 74 ka Toba ash and a 17 ka microlith toolkit

The Youngest Toba Tuff (YTT, 74 ka ago) is considered as the product of one of the largest super-volcanic events in the Quaternary period, which possibly caused a disastrous effect on the climate and hominid habitation. Here, we report a rare occurrence of an ∼ 2 cm YTT ash bed in the Barakar-Damodar Late Quaternary sediments, Eastern India, and the Microlith toolkits that were found in the sedimentary deposits above the ash layer. The high silica content of the glass shards with bubble walls, blocky, rod-shaped structures, and pumice morphology, are similar to other YTT ash deposits. The sedimentary facies associated with the ash layer show a transition from lacustrine to fluvial depositional environments. Sedimentological, petrographical, mineralogical, geochemical, and magnetic properties suggest the ash was deposited in a lacustrine environment. Moreover, the discovery of the ash bed, the occurrence of in-situ Bovid species, and microlith assemblages in the Barakar-Damodar Valley add to our understanding of late Pleistocene depositional environments, hominin occupations, and possible local migration across eastern India during the Last Glacial Maximum (LGM) period.

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来源期刊
Journal of Asian Earth Sciences: X
Journal of Asian Earth Sciences: X Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
3.40
自引率
0.00%
发文量
53
审稿时长
28 weeks
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