First insights into the Late Quaternary fluvial history of the Nan River, northern Thailand

IF 2.8 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Prapawadee Srisunthon, Mubarak Abdulkarim, Alexander Berger, Damien Ertlen, Alexander Fülling, Lea Kirch, Daniela Mueller, Meike Reubold, Frank Preusser
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Abstract

Reconstructing fluvial dynamics is a fundamental requirement for understating the interaction between past environmental changes and human adaptation. This study focuses on the central part of the floodplain of the Nan River in northern Thailand that likely played a role in the catastrophic flood of 1818 CE, which damaged the ancient of Nan city and forced its relocation. We investigated nine sediment cores from the floodplain and from the eastern tributaries of the Nan River, to identify the potential source of floods in the past. By combining the analyses of sedimentary characteristics and provenance, the study reveals that the eastern tributaries were the dominant sediment source for most areas, with the Nan River only influencing areas close to its channel. According to optically stimulated luminescence dating, the highest sediment accumulation occurred during the eleventh to thirteenth centuries CE, coinciding with agricultural expansion and deforestation, suggesting increased erosion in the catchment of the tributaries. These findings challenge the assumption that the main Nan River has been the primary contributor to flooding catastrophes in the region and highlights the potential crucial role of smaller tributaries in similar settings in other parts of the globe.

对泰国北部南河晚第四纪河流历史的首次研究
重建河流动力学是理解过去环境变化与人类适应之间相互作用的基本要求。本研究的重点是泰国北部南河漫滩的中心部分,该漫滩可能在1818年的灾难性洪水中发挥了作用,这场洪水破坏了南城的古城并迫使其搬迁。研究了南江东部支流和泛滥平原的9个沉积物岩心,以确定过去洪水的潜在来源。结合沉积特征和物源分析,研究发现大部分地区以东部支流为主,南江仅影响其河道附近地区。根据光学刺激发光测年法,最高的沉积物堆积发生在公元11至13世纪,与农业扩张和森林砍伐相吻合,表明支流集水区的侵蚀加剧。这些发现挑战了主要的南河是该地区洪水灾害的主要原因的假设,并强调了在全球其他地区类似情况下较小支流的潜在关键作用。
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来源期刊
Environmental Earth Sciences
Environmental Earth Sciences 环境科学-地球科学综合
CiteScore
5.10
自引率
3.60%
发文量
494
审稿时长
8.3 months
期刊介绍: Environmental Earth Sciences is an international multidisciplinary journal concerned with all aspects of interaction between humans, natural resources, ecosystems, special climates or unique geographic zones, and the earth: Water and soil contamination caused by waste management and disposal practices Environmental problems associated with transportation by land, air, or water Geological processes that may impact biosystems or humans Man-made or naturally occurring geological or hydrological hazards Environmental problems associated with the recovery of materials from the earth Environmental problems caused by extraction of minerals, coal, and ores, as well as oil and gas, water and alternative energy sources Environmental impacts of exploration and recultivation – Environmental impacts of hazardous materials Management of environmental data and information in data banks and information systems Dissemination of knowledge on techniques, methods, approaches and experiences to improve and remediate the environment In pursuit of these topics, the geoscientific disciplines are invited to contribute their knowledge and experience. Major disciplines include: hydrogeology, hydrochemistry, geochemistry, geophysics, engineering geology, remediation science, natural resources management, environmental climatology and biota, environmental geography, soil science and geomicrobiology.
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